JP2004315517A - Ophthalmologic composition - Google Patents
Ophthalmologic composition Download PDFInfo
- Publication number
- JP2004315517A JP2004315517A JP2004103479A JP2004103479A JP2004315517A JP 2004315517 A JP2004315517 A JP 2004315517A JP 2004103479 A JP2004103479 A JP 2004103479A JP 2004103479 A JP2004103479 A JP 2004103479A JP 2004315517 A JP2004315517 A JP 2004315517A
- Authority
- JP
- Japan
- Prior art keywords
- monocyclic
- monoterpene
- acid
- ophthalmic composition
- weight
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
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Landscapes
- Medicinal Preparation (AREA)
Abstract
Description
本発明は、官能特性が改善された眼科用組成物、および眼科用組成物の官能特性の改善方法に関する。 The present invention relates to an ophthalmic composition having improved organoleptic properties and a method for improving the organoleptic properties of an ophthalmic composition.
医薬品等にはいわゆる薬効面からのアプローチではなく、適用時に爽快感、清涼感を付与することで、製剤の官能性を向上させ、効き目をより実感できることを目的として、清涼化剤として、精油や精油成分が配合されることが多い。なかでもメントール、カンフル、ボルネオールなどの化合物は強い清涼化作用(冷感作用)を有することが知られており、点眼剤等の眼科用組成物をはじめ、各種製剤に配合されている。これら清涼化剤が有する清涼化作用は眼の疲れを解消する効果に加えて、眼の不快感を改善し、リラックス感、リフレッシュ感を付与する効果も期待されている。しかしながら、これらの清涼化作用は、蒸発や血管拡張によるものではなく、冷感神経が関わっているとの報告があるが、詳細は明らかではない。一方で、眼の疲れを解消する方法として目枕などで眼部を冷却する用品が販売されていたり、眼およびその周辺部位の温度を下げることで、眼の乾燥やほてり、眼の酷使によるストレス、不眠等を癒す技術(特許文献1)が開示されているが、用時手軽に利用できるものではないし、また、清涼感は得られないため眼の不快感の改善は十分ではない。 Pharmaceuticals, etc. are not based on the so-called medicinal approach, but by applying a refreshing feeling and a refreshing feeling at the time of application, to improve the functionality of the preparation and to be able to realize the effect more, as a refreshing agent, essential oils and Essential oil components are often included. Among them, compounds such as menthol, camphor and borneol are known to have a strong cooling effect (cooling effect), and are compounded in various preparations including ophthalmic compositions such as eye drops. The cooling effect of these cooling agents is expected to have an effect of improving the discomfort of the eyes and providing a relaxing feeling and a refreshing feeling, in addition to the effect of relieving eye fatigue. However, these cooling effects are not due to evaporation or vasodilation, but are reported to involve the cold-sensing nerve, but details are not clear. On the other hand, as a method of relieving eye fatigue, products that cool the eye with eye pillows are sold, or by lowering the temperature of the eye and its surrounding parts, the stress caused by dryness, hot flashes, and overuse of the eyes Although a technique for healing insomnia and the like (Patent Document 1) is disclosed, it is not easy to use at the time of use, and a refreshing sensation cannot be obtained.
一方、清涼化剤として汎用されているメントール等は、清涼化作用が強い反面、高濃度で眼粘膜等に適用された場合には、刺激を感じることがある。点眼薬や洗眼薬等の眼科用組成物においても、清涼化剤を数種類配合して、適用時の清涼感や冷感をより求めたいわゆる「清涼系」の組成物があるが、最近では使用者は清涼系の眼科用組成物に対し、より強い清涼感やその持続性、または適用時に冷たさを実感できるようなより強い冷却作用を求める傾向にある。しかしながらその要求を満たすために、組成物中の清涼化剤の配合量を増やすと、眼に適用した場合に眼刺激が現われる場合がある。眼刺激の中でもとりわけ適用した直後に一時的に強く感じる灼熱感、痛み等のいわゆる初期刺激は使用者のコンプライアンスの低下に繋がることもあり、初期刺激性が抑制されているとともに、より優れた清涼感を有する製剤が求められている。 On the other hand, menthol or the like, which is widely used as a cooling agent, has a strong cooling effect, but may be irritating when applied to the ocular mucosa at a high concentration. In ophthalmic compositions such as eye drops and eyewashes, there are so-called `` cooling-type '' compositions in which several types of cooling agents are blended to obtain a more refreshing or cooling sensation when applied. There is a tendency for a refreshing ophthalmic composition to demand a stronger cooling sensation and its persistence, or a stronger cooling effect such that a cooler sensation can be realized upon application. However, if the amount of the cooling agent in the composition is increased to satisfy the demand, eye irritation may appear when applied to the eyes. The so-called initial stimulus, such as burning sensation or pain, which is felt strongly immediately after application, especially among eye irritation, may lead to a decrease in user compliance. There is a need for a formulation having a feeling.
メントール類を清涼化剤として配合した眼科用組成物の適用時における刺激を低減するために、特定量のメントール類と、このメントール類に対して特定割合のカンフル類とボルネオール類を組み合わせて配合することにより、冷感が強く、清涼感の持続性を高め、かつ眼刺激を低減することができる技術(特許文献2)や、メントール類とシクロデキストリン類とを組み合わせて点眼剤に配合することにより、強い清涼感が得られ、眼刺激を低減できる技術(特許文献3)が知られている。 In order to reduce irritation during application of an ophthalmic composition containing menthol as a cooling agent, a specific amount of menthol and a specific ratio of camphors and borneols to this menthol are combined and combined. In this way, a strong cooling sensation, a technique that can enhance the persistence of a refreshing sensation and reduce eye irritation (Patent Document 2), or by combining menthols and cyclodextrins into eye drops A technique that can provide a strong refreshing feeling and reduce eye irritation (Patent Document 3) is known.
しかし、カンフル類やボルネオール類も清涼化作用を持つとともに刺激性もあり、各成分の量や配合比をコントロールしても、その刺激性の低減効果は十分とはいえない。一方でシクロデキストリンはメントール類を包接することにより、メントール類の刺激が低減されるが、有用な清涼化作用までマスクされてしまい、十分な清涼感は得られない。また冷たさを実感できるような冷却作用については触れられていない。 However, camphors and borneols also have a cooling effect and are also irritating, and even if the amounts and blending ratios of the respective components are controlled, their irritating effect is not sufficient. On the other hand, cyclodextrin, by including menthol, reduces the irritation of menthol, but masks a useful cooling effect and does not provide a sufficient refreshing feeling. No mention is made of a cooling function that allows the user to feel cold.
本発明の目的は、メントール、ボルネオール等のモノテルペン系アルコールを含有する眼科用組成物の冷却作用を強化し、適用時の初期刺激性を抑制することができる眼科用組成物を提供すること、さらにモノテルペン系アルコールを含有する眼科用組成物の冷却作用を強化し、初期刺激性を抑制する方法を提供することである。 An object of the present invention is to provide an ophthalmic composition capable of enhancing the cooling effect of an ophthalmic composition containing a monoterpene alcohol such as menthol or borneol and suppressing initial irritation upon application. It is another object of the present invention to provide a method for enhancing the cooling effect of an ophthalmic composition containing a monoterpene-based alcohol and suppressing initial irritation.
本発明者らは、上記課題を解決するべく、鋭意研究を重ねた結果、 A)単環性モノテルペン系炭化水素、単環性モノテルペン系ケトンおよび単環性モノテルペン系オキシドからなる群から選択される1種以上の単環性モノテルペノイドと、A)少なくとも1種以上のモノテルペン系アルコールとを、重量比でA)が1重量部に対してB)が0.01〜2000重量部の範囲で配合する眼科用組成物とすることで、眼部に適用した際に眼球表面の温度が低下し、より冷たさが持続し、一方で初期刺激が抑制されることを見出し、本発明を完成するに至った。 The present inventors have conducted intensive studies in order to solve the above-mentioned problems, and as a result, A) a monocyclic monoterpene-based hydrocarbon, a monocyclic monoterpene-based ketone, and a monocyclic monoterpene-based oxide One or more selected monocyclic monoterpenoids and A) at least one or more monoterpene-based alcohols in a weight ratio of A) to 1 part by weight and B) of 0.01 to 2000 parts by weight. By using an ophthalmic composition formulated in the range of, the temperature of the eyeball surface is reduced when applied to the eye, and the coldness is sustained, while the initial stimulus is suppressed, and the present invention is found. Was completed.
すなわち、本発明は、下記(1)〜(5)に掲げる眼科用組成物である。
(1) A)単環性モノテルペン系炭化水素、単環性モノテルペン系ケトンおよび単環性モノテルペン系オキシドからなる群から選択される1種以上の単環性モノテルペノイドと、B)少なくとも1種以上のモノテルペン系アルコールとを、重量比でA)が1重量部に対してB)が0.01〜2000重量部の範囲で含有することを特徴とする眼科用組成物。
(2) さらに、低級アルコール類および多価アルコール類からなる群から選択される1種以上のアルコールを含有することを特徴とする(1)に記載の眼科用組成物。
(3) 液状組成物であることを特徴とする(1)または(2)のいずれかに記載の眼科用組成物。
(4) 液状組成物が点眼薬、洗眼薬、コンタクトレンズ装着液又はコンタクトレンズ用剤である(3)に記載の眼科用組成物。
(5) さらに、粘稠化剤を含有し、20℃における絶対粘度が2〜200mPa・sである(1)〜(4)のいずれかに記載の眼科用組成物。
また、本発明は下記(6)、(7)に掲げる方法である。
(6) A)単環性モノテルペン系炭化水素、単環性モノテルペン系ケトンおよび単環性モノテルペン系オキシドからなる群から選択される1種以上の単環性モノテルペノイドと、B)少なくとも1種以上のモノテルペン系アルコールを、重量比でA)が1重量部に対してB)が0.01〜2000重量部の範囲で含有させ、眼科用組成物の冷却作用を強化する方法。
(7) A)単環性モノテルペン系炭化水素、単環性モノテルペン系ケトンおよび単環性モノテルペン系オキシドからなる群から選択される1種以上の単環性モノテルペノイドと、B)少なくとも1種以上のモノテルペン系アルコールを、重量比でA)が1重量部に対してB)が0.01〜2000重量部の範囲で含有させ、眼科用組成物の初期刺激性を抑制する方法。
That is, the present invention is an ophthalmic composition described in the following (1) to (5).
(1) A) one or more monocyclic monoterpenoids selected from the group consisting of monocyclic monoterpene hydrocarbons, monocyclic monoterpene ketones and monocyclic monoterpene oxides, and B) at least An ophthalmic composition comprising at least one monoterpene alcohol in a weight ratio of A) to 1 part by weight and B) in a range of 0.01 to 2,000 parts by weight.
(2) The ophthalmic composition according to (1), further comprising at least one alcohol selected from the group consisting of lower alcohols and polyhydric alcohols.
(3) The ophthalmic composition according to any one of (1) and (2), which is a liquid composition.
(4) The ophthalmic composition according to (3), wherein the liquid composition is an eye drop, an eyewash, a contact lens mounting solution or a contact lens agent.
(5) The ophthalmic composition according to any one of (1) to (4), further comprising a thickening agent and having an absolute viscosity at 20 ° C of 2 to 200 mPa · s.
The present invention is a method described in the following (6) and (7).
(6) A) one or more monocyclic monoterpenoids selected from the group consisting of monocyclic monoterpene hydrocarbons, monocyclic monoterpene ketones and monocyclic monoterpene oxides, and B) at least A method in which one or more monoterpene alcohols are contained in a weight ratio of A) to 1 part by weight and B) in a range of 0.01 to 2000 parts by weight to enhance the cooling effect of the ophthalmic composition.
(7) A) one or more monocyclic monoterpenoids selected from the group consisting of monocyclic monoterpene hydrocarbons, monocyclic monoterpene ketones and monocyclic monoterpene oxides, and B) at least A method of containing one or more monoterpene alcohols in a weight ratio of A) to 1 part by weight and B) in a range of 0.01 to 2000 parts by weight to suppress the initial irritation of the ophthalmic composition. .
本発明により、適用部位に対し、より強化された冷却作用を示し、また初期刺激を抑制することができ、使用感に優れた眼科用組成物の提供が可能になった。 Advantageous Effects of Invention According to the present invention, it has become possible to provide an ophthalmic composition that exhibits an enhanced cooling effect on an application site, suppresses initial irritation, and has an excellent feeling in use.
本明細書中、特に言及しない限り、%はw/v%を意味するものとする。また、コンタクトレンズ(CL)という語句は、特記しない限り、ハード、酸素透過性ハード、ソフト等のあらゆるタイプのコンタクトレンズを包含する意味で用いる。また、本明細書において、眼科用組成物を単に「組成物」又は「製剤」という場合がある。 In this specification, unless otherwise specified,% means w / v%. The term contact lens (CL) is used to mean any type of contact lens, such as hard, oxygen-permeable hard, and soft, unless otherwise specified. In this specification, the ophthalmic composition may be simply referred to as “composition” or “formulation”.
本発明において冷却作用の強化には、適用部位の冷却温度を低くすることや、冷却作用を持続させることを含む。またこれらの強化された作用を両方示す場合、あるいはいずれか一方の作用のみ示す場合、いずれの場合においても、本発明の範囲内である。 In the present invention, the enhancement of the cooling action includes lowering the cooling temperature of the application site and maintaining the cooling action. The case where both of these enhanced actions are exhibited, or the case where only one of these actions is exhibited, is within the scope of the present invention.
また本発明において初期刺激とは、眼科用組成物を適用した直後に眼部に対し一時的に強く感じる灼熱感、違和感、痛み等の刺激のことを意味するものとする。 In the present invention, the initial stimulus means a stimulus such as a burning sensation, an uncomfortable sensation, and a pain that is temporarily strongly felt on the eye immediately after the application of the ophthalmic composition.
本発明の単環性モノテルペン系炭化水素としては、リモネン、テルピネン、フェランドレン、ピネン等が例示でき、また、単環性モノテルペン系ケトンとしては、メントン、イソメントン、カルボン、ピペリトン、プレゴン等が例示でき、また、単環性モノテルペン系オキシドとしては、シネオール等が例示できる。これらは、1種又は2種以上を組み合わせて適宜添加することができ、α、β、γ、d、l、dl体等のいずれも使用することができる。好ましいのは、メントン、カルボン、リモネン、フェランドレン、ピネン、シネオール、ピペリトンであり、特に好ましいのはメントン、カルボン、ピネン、リモネン、シネオールである。またこれらの化合物は、眼刺激を生じることのない濃度で配合されることが好ましく、0.0001〜0.1%の範囲で使用する。より好ましくは0.0005〜0.05%、特に好ましくは、0.0005〜0.01%である。なお、この濃度範囲から著しく低濃度に外れると、本発明における冷却作用の強化がはかりにくくなり、高濃度に外れると本発明における初期刺激性の抑制効果が得られにくい傾向にある。 Examples of the monocyclic monoterpene-based hydrocarbon of the present invention include limonene, terpinene, ferrandrene, pinene, and the like, and examples of the monocyclic monoterpene-based ketone include mentone, isomentone, carvone, piperidone, plegone, and the like. Examples of the monocyclic monoterpene-based oxide include cineol and the like. These can be appropriately added alone or in combination of two or more, and any of α, β, γ, d, l, dl and the like can be used. Preferred are menthone, carvone, limonene, ferrandrene, pinene, cineole, piperiton, and particularly preferred are menthone, carvone, pinene, limonene, cineole. Further, these compounds are preferably blended at a concentration that does not cause eye irritation, and are used in the range of 0.0001 to 0.1%. It is more preferably 0.0005 to 0.05%, particularly preferably 0.0005 to 0.01%. If the concentration deviates significantly from this concentration range, it becomes difficult to enhance the cooling effect in the present invention, and if the concentration deviates from a high concentration, the effect of suppressing the initial irritation in the present invention tends to be hardly obtained.
また、本発明のモノテルペン系アルコールとしては、メントール、ゲラニオール、ボルネオール、ネロール、シトロネロール、リナロール、チモール、テルピネオール、イソプレゴール等が例示でき、これらは、1種又は2種以上を組み合わせて適宜添加することができ、α、β、γ、d、l、dl体等のいずれも使用することができる。好ましいのは、メントール、イソプレゴール、リナロール、ゲラニオール、ボルネオールであり、特に好ましいのはメントール、ボルネオールである。 Examples of the monoterpene alcohol of the present invention include menthol, geraniol, borneol, nerol, citronellol, linalool, thymol, terpineol, isopulegol, and the like. These may be used alone or in combination of two or more. And any of α, β, γ, d, l, dl and the like can be used. Preferred are menthol, isopulegol, linalool, geraniol, borneol, and particularly preferred are menthol and borneol.
モノテルペン系アルコールは、眼刺激を生じることのない濃度で配合されることが好ましく、0.0001〜0.1%の範囲で使用する。より好ましくは0.001〜0.05%、特に好ましくは、0.005〜0.05%である。なお、この濃度範囲から著しく低濃度に外れると、本発明における冷却作用の強化がはかりにくくなり、高濃度に外れると本発明における初期刺激性の抑制効果が得られにくい傾向にある。 The monoterpene alcohol is preferably blended at a concentration that does not cause eye irritation, and is used in the range of 0.0001 to 0.1%. It is more preferably 0.001 to 0.05%, particularly preferably 0.005 to 0.05%. If the concentration deviates significantly from this concentration range, it becomes difficult to enhance the cooling effect in the present invention, and if the concentration deviates from a high concentration, the effect of suppressing the initial irritation in the present invention tends to be hardly obtained.
なお、前記単環性モノテルペノイド類は精油に含有した状態でも使用でき、精製あるいは合成した成分として使用することもできる。かかる精油としては、ハッカ油、ペパーミント油、ローズ油、ウイキョウ油、ユーカリ油、ベルガモット油、クールミント等が使用できる。 The monocyclic monoterpenoids can be used in a state where they are contained in essential oils, and can also be used as purified or synthesized components. As such essential oils, mint oil, peppermint oil, rose oil, fennel oil, eucalyptus oil, bergamot oil, cool mint and the like can be used.
本発明の組成物において、A)単環性モノテルペン系炭化水素、単環性モノテルペン系ケトンおよび単環性モノテルペン系オキシドの単環性モノテルペノイドと、B)モノテルペン系アルコールとの割合は、A)が1重量部に対し、B)は0.01〜2000重量部、好ましくは、0.05〜1000重量部、さらに好ましくは0.05〜500重量部である。なお、この範囲を著しく外れると、本発明により得られる効果は低減する傾向にある。 In the composition of the present invention, the ratio of A) monocyclic monoterpenoids of monocyclic monoterpene hydrocarbons, monocyclic monoterpene ketones and monocyclic monoterpene oxides, and B) monoterpene alcohols The amount of A) is 1 part by weight, and the amount of B) is 0.01 to 2000 parts by weight, preferably 0.05 to 1000 parts by weight, and more preferably 0.05 to 500 parts by weight. If the value is significantly out of this range, the effect obtained by the present invention tends to decrease.
さらに、本発明の眼科用組成物にアルコール類を配合することで、本組成物が発揮できる冷却作用をさらに強化させることができる。本発明におけるアルコール類とは、低級アルコール類および多価アルコール類からなる群から選択される少なくとも1種以上のアルコール類である。低級アルコール類としては、炭素数2〜5のアルコールがあげられ、例えば、エタノール、プロパノール、ブタノール、ペンタノールや種々の変性アルコール等があげられ、また多価アルコールとしては、プロピレングリコール、グリセリン等があげられ、なかでもプロピレングリコールが好ましい。アルコール類の眼科用組成物中の濃度としては、本発明の眼科用組成物が本発明の効果を有することを限度として特に制限されるものではないが、0.001〜2%が好適であり、0.01〜2%がより好適であり、特に0.05〜1%が好適である。0.001%未満では、本発明における冷却作用の増強効果が得られにくく、2%を超えると眼刺激が生じる傾向にある。 Furthermore, by adding alcohols to the ophthalmic composition of the present invention, the cooling effect that the present composition can exert can be further enhanced. The alcohol in the present invention is at least one or more alcohols selected from the group consisting of lower alcohols and polyhydric alcohols. Examples of lower alcohols include alcohols having 2 to 5 carbon atoms, for example, ethanol, propanol, butanol, pentanol and various modified alcohols. Examples of polyhydric alcohols include propylene glycol and glycerin. Among them, propylene glycol is preferred. The concentration of the alcohol in the ophthalmic composition is not particularly limited as long as the ophthalmic composition of the present invention has the effects of the present invention, but is preferably 0.001 to 2%. , 0.01 to 2% is more preferable, and particularly 0.05 to 1% is preferable. If it is less than 0.001%, the effect of enhancing the cooling effect in the present invention is hardly obtained, and if it exceeds 2%, eye irritation tends to occur.
さらに、本発明の眼科用組成物に粘稠化剤として高分子化合物を配合することで、本発明によるところの冷却作用が持続し、冷却作用がさらに強化されることに加え、前記A)およびB)のモノテルペノイド類を含有する眼科用組成物の経時的な安定性が確保できる。また眼に適用した際の製剤のねばつきが生じることなく、使用感を向上させることができる。 Furthermore, by blending the ophthalmic composition of the present invention with a polymer compound as a thickening agent, the cooling action according to the present invention is maintained, and the cooling action is further strengthened. The stability over time of the ophthalmic composition containing the monoterpenoids B) can be ensured. In addition, the feeling of use can be improved without stickiness of the preparation when applied to the eye.
本発明における粘稠化剤とは、高分子化合物、好ましくはセルロース類又はその誘導体又はそれらの塩、高分子多糖類およびそれらの塩又はその誘導体又はそれらの塩等で、これを配合した製剤の20℃における絶対粘度が2〜200mPa・sであることを特徴とする。なお、高分子化合物としては、メチルセルロース、カルボキシメチルセルロース及びその塩、ポリアクリル酸及びその塩、エチルセルロース、ヒドロキシエチルセルロース、ヒドロキシプロピルメチルセルロース、ポリビニルアルコール(完全又は部分ケン化物)、ポリビニルピロリドン、カルボキシビニルポリマー、ヒアルロン酸及びその塩、デキストラン、ポリオキシエチレンポリオキシプロピレンブロックコポリマーなどが例示でき、少なくとも1種が含有されていればよい。 The thickening agent in the present invention is a polymer compound, preferably a cellulose or a derivative thereof or a salt thereof, a polymer polysaccharide and a salt or a derivative thereof or a salt thereof, and the like. The absolute viscosity at 20 ° C. is 2 to 200 mPa · s. In addition, as a high molecular compound, methylcellulose, carboxymethylcellulose and its salt, polyacrylic acid and its salt, ethylcellulose, hydroxyethylcellulose, hydroxypropylmethylcellulose, polyvinyl alcohol (completely or partially saponified), polyvinylpyrrolidone, carboxyvinyl polymer, hyaluronic acid Examples thereof include acids and salts thereof, dextran, polyoxyethylene polyoxypropylene block copolymer, and the like, as long as at least one of them is contained.
本発明において、粘稠化剤の配合量は、粘稠化剤の分子量や種類などによって異なるが、本発明の眼科用剤の絶対粘度が、温度20℃において2〜200mPa・s、好ましくは2〜150mPa・s、より好ましくは2〜100mPa・sとなるように粘稠化剤の配合量を適宜選択することができる。 In the present invention, the compounding amount of the thickening agent varies depending on the molecular weight and type of the thickening agent, but the absolute viscosity of the ophthalmic agent of the present invention is 2 to 200 mPa · s at a temperature of 20 ° C., preferably 2 to 200 mPa · s. The amount of the thickening agent can be appropriately selected so as to be 150 mPa · s, more preferably 2 to 100 mPa · s.
かかる絶対粘度は、円錐平板形回転粘度計を用いる方法で測定できる。詳細には、第14改正日本薬局方に記載の一般試験法、45.粘度測定法、第2法 回転粘度計法、(3)円錐平板形回転粘度計の項に記載された方法による。測定は、市販の円錐平板形回転粘度計と適宜選択されたローターとを用いて測定することができる。そのような粘度計の例としては、E型粘度計(トキメック(TOKIMEC)社)、シンクローレトリックPC型(ブルックフィールド社)、フェランティシャーリー(フェランティ社)、ロードビスコ(ハーケ社)、IGKハイシャーレレオメーター(石田技研株式会社)、島津レオメーター(島津製作所)、メカニカルスペクトロメーター(レオメトリックス)等がある。これらの市販の粘度計のローターを適宜選択し、被検試料測定毎にJIS Z 8809により規定されている石油系の炭化水素油(ニュートン流体)を校正用標準液として用いて適宜調整することにより、20℃における絶対粘度を測定できる。 Such an absolute viscosity can be measured by a method using a conical plate type rotary viscometer. In detail, the general test method described in the 14th revised Japanese Pharmacopoeia, 45. Viscosity measurement method, 2nd method Rotational viscometer method, (3) The method described in the section of conical flat plate type viscometer. The measurement can be performed using a commercially available conical plate-type rotary viscometer and a suitably selected rotor. Examples of such viscometers include E-type viscometers (Tokimec), synchro rheological PC type (Brookfield), Ferranti Shirley (Ferranty), Lord Visco (Haake), IGK High shear rheometer (Ishida Giken Co., Ltd.), Shimadzu rheometer (Shimadzu Corporation), mechanical spectrometer (Rheometrics) and the like. The rotors of these commercially available viscometers are appropriately selected, and each time a test sample is measured, a petroleum hydrocarbon oil (Newtonian fluid) specified by JIS Z 8809 is used as a calibration standard solution, and appropriately adjusted. At 20 ° C. can be measured.
実施例で示す点眼剤、洗眼剤の粘度は、E型粘度計の一種であるTV−20型粘度計(トキメック社製、型名:TVE−20L)、ローターは、1°34‘×R24を用いて測定した。測定条件として、粘度が6mPa・s未満は回転数100rpm、粘度が6〜12mPa・s未満は回転数50rpm、粘度が12〜30mPa・s未満は回転数20rpm、粘度が30〜60mPa・s未満は回転数10rpm、 粘度が60〜120mPa・s未満は回転数5rpm、粘度が120〜240mPa・s未満は回転数2.5rpmで測定した。 The viscosities of eye drops and eyewashes shown in Examples are as follows: TV-20 type viscometer (manufactured by Tokimec, model name: TVE-20L), which is a type of E-type viscometer, rotor: 1 ° 34 ′ × R24. It measured using. As measurement conditions, when the viscosity is less than 6 mPas, the rotation speed is 100 rpm, when the viscosity is less than 6 to 12 mPas, the rotation speed is 50 rpm, when the viscosity is less than 12 to 30 mPas, the rotation speed is 20 rpm, and the viscosity is less than 30 to 60 mPas. The measurement was performed at a rotation speed of 5 rpm for a rotation speed of 10 rpm and a viscosity of less than 60 to 120 mPa · s, and at a rotation speed of 2.5 rpm for a viscosity of less than 120 to 240 mPa · s.
さらに、本発明における眼科用組成物としては、液状組成物が好ましく、特に点眼薬(以下、点眼剤ともいう。また、ハードまたはソフトコンタクトレンズを装用中にも使用できる点眼薬を含む。)、洗眼薬(以下、洗眼剤ともいう。また、ハードまたはソフトコンタクトレンズを装用中にも使用できる洗眼薬を含む)、コンタクトレンズ装着液、コンタクトレンズ用剤(洗浄液、保存液、洗浄保存液、消毒液、マルチパーパスソリューションなど)として有用である。 Further, the ophthalmic composition of the present invention is preferably a liquid composition, particularly an eye drop (hereinafter also referred to as an eye drop, including an eye drop that can be used even while wearing a hard or soft contact lens), Eyewash (hereinafter also referred to as eyewash; also includes eyewash that can be used while wearing hard or soft contact lenses), contact lens mounting solution, contact lens agent (washing solution, preservative solution, cleaning preservative solution, disinfection Liquid, multi-purpose solution).
本発明の眼科用組成物は、本発明の効果を妨げない限り、さらに種々の成分(薬理活性成分や生理活性成分を含む)を組み合わせて含有してもよい。このような成分の種類は特に制限されず、例えば、充血除去成分、α−アドレナリン作動薬成分、抗炎症薬成分、ビタミン類、アミノ酸類、糖類、ステロイド成分、抗ヒスタミン薬成分又は抗アレルギー薬成分、セルロースまたはその誘導体またはそれらの塩、多糖類またはその誘導体などが例示できる。本発明において好適な成分としては、例えば、次のような成分が挙げられる。 The ophthalmic composition of the present invention may further contain various components (including pharmacologically active components and physiologically active components) in combination as long as the effects of the present invention are not impaired. The types of such components are not particularly limited, and include, for example, decongestant components, α-adrenergic agonist components, anti-inflammatory drug components, vitamins, amino acids, saccharides, steroid components, antihistamine drug components, or antiallergic drug components. , Cellulose or a derivative thereof, a salt thereof, a polysaccharide or a derivative thereof, and the like. Examples of suitable components in the present invention include the following components.
充血除去成分:エピネフリン、エフェドリン、テトラヒドロゾリン、ナファゾリン、フェニレフリン、メチルエフェドリン及びそれらの塩など。
α−アドレナリン作動薬:例えば、イミダゾリン誘導体(ナファゾリン、テトラヒドロゾリンなど)、β−フェニルエチルアミン誘導体(フェニレフリン、エピネフリン、エフェドリン、メチルエフェドリンなど)、及びそれらの薬学上又は生理的に許容される塩(例えば、塩酸ナファゾリン、硝酸ナファゾリン、塩酸テトラヒドロゾリン、硝酸テトラヒドロゾリン、塩酸フェニレフリン、塩酸エピネフリン、塩酸エフェドリン、塩酸メチルエフェドリンなどの無機酸塩;酒石酸水素エピネフリンなどの有機酸塩など)など。
抗炎症薬成分:セレコキシブ(celecoxib)、ロフェコキシブ(rofecoxib)、インドメタシン、ジクロフェナク、ジクロフェナクナトリウム、プラノプロフェン、ピロキシカム、メロキシカム(meloxicam)、イプシロン−アミノカプロン酸、ベルベリンおよび薬理学的に許容される塩(例えば、塩化ベルベリン、硫酸ベルベリン)、亜鉛塩(硫酸亜鉛、乳酸亜鉛、グリコール酸亜鉛、ヒドロキシ酪酸亜鉛、グリセリン亜鉛、リンゴ酸亜鉛、酒石酸亜鉛、クエン酸亜鉛など)、リゾチーム、塩化リゾチーム、サリチル酸メチル、アラントイン、グリチルリチン酸、グリチルリチン酸ジカリウム、グリチルリチン酸アンモニウム、など)など。
抗ヒスタミン薬成分又は抗アレルギー薬成分:例えば、クロルフェニラミン、ジフェンヒドラミン、イプロヘプチン、ケトチフェン、エメダスチン、クレマスチン、アゼラスチン、レボカバスチン、オロパタジン、クロモグリク酸、トラニラスト、アンレキサノクス、メキタジン、ロラタジン(loratadine)、フェキソフェナジン(fexofenadine)、セチリジン(cetirizine)、イブジラスト、スプラタスト、ペミロラストまたはその塩(例えば、マレイン酸クロルフェニラミン、塩酸ジフェンヒドラミン、塩酸イプロヘプチン、フマル酸ケトチフェン、フマル酸エメダスチン、フマル酸クレマスチン、塩酸アゼラスチン、塩酸レボカバスチン、塩酸オロパタジン、クロモグリク酸ナトリウムなど)など。
ビタミン類:例えば、ビタミンA類[例えば、レチナール、レチノール、レチノイン酸、カロチン、デヒドロレチナール、リコピン及びその薬理学的に許容される塩類(例えば、酢酸レチノール、パルミチン酸レチノールなど)など]、ビタミンB類[塩酸チアミン、硝酸チアミン、硝酸ビスチアミン、チアミンジスルフィド、チアミンジセチル硝酸エステル塩、塩酸ジセチアミン、塩酸フルスルチアミン、オクトチアミン、シコチアミン、ビスイブチアミン、ビスベンチアミン、フルスルチアミン、プロスルチアミン、ベンフォチアミン、フラビンアデニンジヌクレオチドナトリウム、リボフラビン、リン酸リボフラビンナトリウム、酪酸リボフラビン、塩酸ピリドキシン、リン酸ピリドキサール、塩酸ヒドロキソコバラミン、酢酸ヒドロキソコバラミン、シアノコバラミン、ヒドロキソコバラミン、ニコチン酸、ニコチン酸アミド、パンテノール、パントテン酸カルシウム、パントテン酸ナトリウム、ビオチンなど]、ビタミンC類[アスコルビン酸及びその誘導体、エリソルビン酸及びその誘導体及びその薬理学的に許容される塩類(例えば、アスコルビン酸ナトリウム、エリソルビン酸ナトリウムなど)など]、ビタミンD類[例えば、エルゴカルシフェロール、コレカルシフェロール、ヒドロキシコレカルシフェロール、ジヒドロキシコレカルシフェロール、ジヒドロタキステロール及びその薬理学的に許容される塩類など)など]、ビタミンE類[例えば、トコフェロール及びその誘導体、ユビキノン誘導体及びその薬理学的に許容される塩類(酢酸トコフェロール、ニコチン酸トコフェロール、コハク酸トコフェロール、コハク酸トコフェロールカルシウムなど)など]、その他のビタミン類[例えば、カルニチン、フェルラ酸、γ−オリザノール、オロチン酸、ルチン、エリオシトリン、ヘスペリジン及びその薬理学的に許容される塩類(塩化カルニチンなど)など]。
アミノ酸類:例えば、ロイシン、イソイロイシン、バリン、メチオニン、トレオニン、アラニン、フェニルアラニン、トリプトファン、リジン、グリシン、アスパラギン、アスパラギン酸、セリン、グルタミン、グルタミン酸、プロリン、チロシン、システイン、ヒスチジン、オルニチン、ヒドロキシプロリン、ヒドロキシリジン、グリシルグリシン、アミノエチルスルホン酸(タウリン)またはその塩(例えばアスパラギン酸カリウム、アスパラギン酸マグネシウム、塩酸システインなど)など。
糖類:単糖類(例えば、グルコースなど)、二糖類(例えば、トレハロース、ラクトース、フルクトースなど)、オリゴ糖類(例えば、ラクツロース、ラフィノース、プルランなど)、糖アルコール類(例えば、マンニトール、キシリトール、ソルビトールなど)など。
ステロイド成分:ヒドロコルチゾン、プレドニゾロン、及びそれらの塩など。
多糖類又はその誘導体:アラビアゴム、カラヤガム、キサンタンガム、キャロブガム、グアーガム、グアヤク脂、クインスシード、ダルマンガム、トラガント、ベンゾインゴム、ローカストビーンガム、カゼイン、寒天、アルギン酸、デキストリン、カラギーナン、ゼラチン、コラーゲン、ペクチン、デンプン、ポリガラクツロン酸(アルギン酸)、キチン及びその誘導体、キトサン及びその誘導体、エラスチン、ヘパリン、ヘパリノイド、ヘパリン硫酸、ヘパラン硫酸、コンドロイチン硫酸またはその塩(アルギン酸ナトリウム、コンドロイチン硫酸ナトリウムなど)など
Decongestant: epinephrine, ephedrine, tetrahydrozoline, naphazoline, phenylephrine, methylephedrine and salts thereof.
α-Adrenergic agonists: For example, imidazoline derivatives (eg, naphazoline, tetrahydrozoline), β-phenylethylamine derivatives (eg, phenylephrine, epinephrine, ephedrine, methylephedrine), and pharmaceutically or physiologically acceptable salts thereof (eg, Inorganic acid salts such as naphazoline hydrochloride, naphazoline nitrate, tetrahydrozoline hydrochloride, tetrahydrozoline nitrate, phenylephrine hydrochloride, epinephrine hydrochloride, ephedrine hydrochloride, methylephedrine hydrochloride; and organic acid salts such as epinephrine bitartrate).
Anti-inflammatory drug components: celecoxib, rofecoxib, indomethacin, diclofenac, diclofenac sodium, planoprofen, piroxicam, meloxicam, epsilon-aminocaproic acid, berberine and pharmacologically acceptable salts (eg, , Berberine chloride, berberine sulfate), zinc salts (zinc sulfate, zinc lactate, zinc glycolate, zinc hydroxybutyrate, zinc glycerin, zinc malate, zinc tartrate, zinc citrate, etc.), lysozyme, lysozyme chloride, methyl salicylate, allantoin Glycyrrhizic acid, dipotassium glycyrrhizinate, ammonium glycyrrhizinate, etc.).
Antihistamine or antiallergic component: for example, chlorpheniramine, diphenhydramine, iproheptin, ketotifen, emedastine, clemastine, azelastine, levocabastine, olopatadine, cromoglinic acid, tranilast, amlexanox, mequitazine, loratadine (loratadine), loratadine (loratadine) fexofenadine), cetirizine, ibudilast, splatast, pemirolast or a salt thereof (for example, chlorpheniramine maleate, diphenhydramine hydrochloride, iproheptin hydrochloride, ketotifen fumarate, emedastin fumarate, clemastine fumarate, azelastine hydrochloride, levocabas hydrochloride, levocabastine hydrochloride Olopatadine, sodium cromoglycate, etc.).
Vitamins: For example, vitamins A (eg, retinal, retinol, retinoic acid, carotene, dehydroretinal, lycopene and pharmaceutically acceptable salts thereof (eg, retinol acetate, retinol palmitate, etc.), vitamin B) (Thiamine hydrochloride, thiamine nitrate, bisthiamine nitrate, thiamine disulfide, thiamine dicetyl nitrate, dicetiamine hydrochloride, fursultiamine hydrochloride, octiamine, sicotiamine, bisbutiamine, bisbenthamine, fursultiamine, prosultiamine, Benfotiamine, flavin adenine dinucleotide sodium, riboflavin, riboflavin sodium phosphate, riboflavin butyrate, pyridoxine hydrochloride, pyridoxal phosphate, hydroxocobalamin hydrochloride, hydroxy acetate Socobalamin, cyanocobalamin, hydroxocobalamin, nicotinic acid, nicotinamide, panthenol, calcium pantothenate, sodium pantothenate, biotin, etc., vitamin Cs [ascorbic acid and its derivatives, erythorbic acid and its derivatives and its pharmacological properties] Acceptable salts (eg, sodium ascorbate, sodium erythorbate, etc.), and vitamin Ds (eg, ergocalciferol, cholecalciferol, hydroxycholecalciferol, dihydroxycholecalciferol, dihydrotaxosterol and pharmacology thereof) Vitamin Es [eg, tocopherol and its derivatives, ubiquinone derivatives and its pharmacologically acceptable salts (tocopherol acetate, nicotine, etc.) And other vitamins [e.g., carnitine, ferulic acid, [gamma] -oryzanol, orotic acid, rutin, eriocitrin, hesperidin, and pharmacologically acceptable salts thereof.] [Tocopherol formate, tocopherol succinate, calcium tocopherol succinate, etc.] Salts (such as carnitine chloride).
Amino acids: for example, leucine, isoleucine, valine, methionine, threonine, alanine, phenylalanine, tryptophan, lysine, glycine, asparagine, aspartic acid, serine, glutamine, glutamic acid, proline, tyrosine, cysteine, histidine, ornithine, hydroxyproline, hydroxy Lysine, glycylglycine, aminoethylsulfonic acid (taurine) or a salt thereof (eg, potassium aspartate, magnesium aspartate, cysteine hydrochloride, etc.) and the like.
Saccharides: monosaccharides (eg, glucose, etc.), disaccharides (eg, trehalose, lactose, fructose, etc.), oligosaccharides (eg, lactulose, raffinose, pullulan, etc.), sugar alcohols (eg, mannitol, xylitol, sorbitol, etc.) Such.
Steroid components: hydrocortisone, prednisolone, and salts thereof.
Polysaccharides or derivatives thereof: gum arabic, gum karaya, xanthan gum, carob gum, guar gum, guaiac fat, quince seed, dalman gum, tragacanth, benzoin gum, locust bean gum, casein, agar, alginic acid, dextrin, carrageenan, gelatin, collagen, pectin, Starch, polygalacturonic acid (alginic acid), chitin and its derivatives, chitosan and its derivatives, elastin, heparin, heparinoid, heparin sulfate, heparan sulfate, chondroitin sulfate or salts thereof (sodium alginate, sodium chondroitin sulfate, etc.)
眼科用組成物中のこれらの成分の配合量は製剤の種類、活性成分の種類などに応じて適宜選択され、製剤全体に対して0.0001〜30%、好ましくは、0.001〜10%程度の範囲から選択できる。より具体的には、眼科用組成物中の各成分の含有量は、例えば、以下の通りである。 The amount of these components in the ophthalmic composition is appropriately selected depending on the type of the preparation, the type of the active ingredient, and the like, and is 0.0001 to 30%, preferably 0.001 to 10% based on the whole preparation. You can choose from a range of degrees. More specifically, the content of each component in the ophthalmic composition is, for example, as follows.
充血除去成分(血管収縮薬又は交感神経興奮薬):例えば、0.0001〜0.5%、好ましくは、0.0005〜0.3%、さらに好ましくは0.001〜0.1%。
抗炎症薬成分または収斂薬成分:例えば、0.0001〜10%、好ましくは0.0001〜5%。
抗ヒスタミン薬成分または抗アレルギー薬成分:例えば、0.0001〜10%、好ましくは0.001〜5%。
ビタミン類:例えば、0.0001〜1%、好ましくは、0.0001〜0.5%。
アミノ酸類:例えば、0.0001〜10%、好ましくは0.001〜3%。
糖類:例えば、0.0001〜5%、好ましくは0.001〜5%、さらに好ましくは0.01〜2%。
局所麻酔薬成分:例えば、0.001〜1%、好ましくは0.01〜1%。
多糖類又はその誘導体:例えば、0.0001〜2%、好ましくは0.01〜2%、さらに好ましくは0.01〜1%。
ポリビニルピロリドン、ポリビニルアルコール:例えば、0.001〜10%、好ましくは0.001〜5%、さらに好ましくは0.01〜3%。
Decongestant (vasoconstrictor or sympathomimetics): For example, 0.0001 to 0.5%, preferably 0.0005 to 0.3%, more preferably 0.001 to 0.1%.
Anti-inflammatory or astringent components: for example, 0.0001 to 10%, preferably 0.0001 to 5%.
Antihistamine component or antiallergic component: for example, 0.0001 to 10%, preferably 0.001 to 5%.
Vitamins: for example, 0.0001 to 1%, preferably 0.0001 to 0.5%.
Amino acids: For example, 0.0001 to 10%, preferably 0.001 to 3%.
Saccharides: For example, 0.0001 to 5%, preferably 0.001 to 5%, more preferably 0.01 to 2%.
Local anesthetic component: for example, 0.001-1%, preferably 0.01-1%.
Polysaccharide or derivative thereof: for example, 0.0001 to 2%, preferably 0.01 to 2%, more preferably 0.01 to 1%.
Polyvinyl pyrrolidone, polyvinyl alcohol: for example, 0.001 to 10%, preferably 0.001 to 5%, more preferably 0.01 to 3%.
さらに、本発明の眼科用組成物には、所望により、抗菌薬成分や殺菌薬成分を含有させることができる。具体的には、抗菌薬又は殺菌薬成分としては、例えば、スルホンアミド類(例えば、スルファメトキサゾール、スルフイソキサゾール、スルフイソミジン及び薬理学的に許容される塩(スルファメトキサゾールナトリウム、スルフイソミジンナトリウムなど)、アクリノール、第4級アンモニウム化合物(例えば、ベンザルコニウム、ベンゼトニウム、セチルピリジニウム)、及び薬理学的に許容される塩(塩化ベンザルコニウム、塩化ベンゼトニウム、塩化セチルピリジニウム、臭化セチルピリジニウムなど)、アルキルポリアミノエチルグリシン、ニューキノロン剤(ロメフロキサシン、レボフロキサシン、シプロフロキサシン、オフロキサシン、ノルフロキサシン、塩酸シプロフロキサシンなど)、ビグアニド類(ポリヘキサメチレンビグアニド、クロルヘキシジン又はその塩など)、ベルベリン又はその塩、塩化ポリドロニウム、Glokill(商品名、ローディア社製)、ポリジアリルジメチルアンモニウムクロライド、ポリ[オキシエチレン(ジメチルイミニオ)エチレン−(ジメチルイミニオ)エトレンジクロリド]、パラベン類(安息香酸メチル、アミノ安息香酸エチルなど)などが使用できる。 Further, the ophthalmic composition of the present invention can contain an antibacterial component and a bactericide component, if desired. Specifically, examples of the antibacterial or bactericide component include sulfonamides (for example, sulfamethoxazole, sulfisoxazole, sulfisomidine, and pharmacologically acceptable salts (sulfamethoxazole) Sodium, sulfisomidine sodium, etc.), acrinol, quaternary ammonium compounds (eg, benzalkonium, benzethonium, cetylpyridinium), and pharmacologically acceptable salts (benzalkonium chloride, benzethonium chloride, cetyl chloride) Pyridinium, cetylpyridinium bromide), alkyl polyaminoethyl glycine, new quinolones (lomefloxacin, levofloxacin, ciprofloxacin, ofloxacin, norfloxacin, ciprofloxacin hydrochloride, etc.), biguanides (polyhexamethylene) Guanide, chlorhexidine or a salt thereof), berberine or a salt thereof, polydronium chloride, Glokill (trade name, manufactured by Rhodia), polydiallyldimethylammonium chloride, poly [oxyethylene (dimethyliminio) ethylene- (dimethyliminio) ethrene Dichloride], parabens (eg, methyl benzoate, ethyl aminobenzoate, etc.).
本発明の眼科用組成物にこれらの抗菌薬または殺菌薬成分を、0.001〜10%、好ましくは、0.01〜10%の濃度で含有させても良い。 The ophthalmic composition of the present invention may contain these antibacterial or bactericide components at a concentration of 0.001 to 10%, preferably 0.01 to 10%.
以下に本発明の眼科用組成物に使用される代表的な成分を例示するが、これらに限定されない。
糖類:例えば、グルコース、フルクトース、ガラクトース、マンノース、リボース、リブロース、アラビノース、キシロース、リキソース、デオキシリボース、マルトース、トレハロース、スクロース、セロビオース、ラクトース、プルラン、ラクツロース、ラフィノース、マルチトールなど、及びその薬理学的に許容される塩類など。
界面活性剤:例えば、エチレンジアミンのポリオキシエチレン-ポリオキシプロピレンブロックコポリマー付加物(例えば、ポロキサミン)、モノラウリル酸POE(20)ソルビタン(ポリソルベート20) 、モノオレイン酸POE(20)ソルビタン (ポリソルベート80) などのPOEソルビタン脂肪酸エステル類、POE(60)硬化ヒマシ油などのPOE硬化ヒマシ油、POE(9) ラウリルエーテルなどのPOEアルキルエーテル類、POE(20)POP(4) セチルエーテルなどのPOE・POPアルキルエーテル類、POE(10)ノニルフェニルエーテルなどのPOEアルキルフェニルエーテル類などの非イオン性界面活性剤;アルキルジアミノエチルグリシンなどのグリシン型、ラウリルジメチルアミノ酢酸ベタインなどの酢酸ベタイン型、イミダゾリン型などの両性界面活性剤;POE(10)ラウリルエーテルリン酸ナトリウムなどのPOEアルキルエーテルリン酸及びその塩、ラウロイルメチルアラニンナトリウムなどのN−アシルアミノ酸塩、アルキルエーテルカルボン酸塩、N−ココイルメチルタウリンナトリウムなどのN−アシルタウリン塩、テトラデセンスルホン酸ナトリウムなどのスルホン酸塩、ラウリル硫酸ナトリウムなどのアルキル硫酸塩、POE(3) ラウリルエーテル硫酸ナトリウムなどのPOEアルキルエーテル硫酸塩、α−オレフィンスルホン酸塩などの陰イオン界面活性剤;アルキルアミン塩、アルキル4級アンモニウム塩(塩化ベンザルコニウム、塩化ベンゼトニウムなど)、アルキルピリジニウム塩(塩化セチルピリジニウム、臭化セチルピリジニウムなど)などの陽イオン界面活性剤などが挙げられる。なお、括弧内の数字は付加モル数を示す。
防腐剤、殺菌剤又は抗菌剤:例えば、ソルビン酸またはその塩(ソルビン酸、ソルビン酸カリウム、ソルビン酸ナトリウム、ソルビン酸トリクロカルバンなど)、パラオキシ安息香酸エステル(パラオキシ安息香酸メチル、パラオキシ安息香酸エチル、パラオキシ安息香酸プロピル、パラオキシ安息香酸ブチルなど)、アクリノール、塩化メチルロザニリン、塩化ベンザルコニウム、塩化ベンゼトニウム、塩化セチルピリジニウム、臭化セチルピリジニウム、クロルヘキシジン、ポリヘキサメチレンビグアニド、アルキルポリアミノエチルグリシン、ベンジルアルコール、フェネチルアルコール、クロロブタノール、イソプロパノール、エタノール、フェノキシエタノール、リン酸ジルコニウムの銀などの担持体、チメロサール、デヒドロ酢酸、クロルキシレノール、クロロフェン、レゾルシン、チモール、ヒノキチオール、スルファミン、リゾチーム、ラクトフェリン、トリクロサン、8−ヒドロキシキノリン、ウンデシレン酸、カプリル酸、プロピオン酸、安息香酸、プロピオン酸、ハロカルバン、チアベンダゾール、ポリミキシンB、5−クロロ−2−メチル−4−イソチアゾリン−3−オン、2−メチル−4−イソチアゾリン−3−オン、ポリリジン、過酸化水素、塩化ポリドロニウム、Glokill(商品名例えばGlokill PQ、ローディア社製)、ポリジアリルジメチルアンモニウムクロライド、ポリ[オキシエチレン(ジメチルイミニオ)エチレン−(ジメチルイミニオ)エトレンジクロリド、ポリエチレンポリアミン・ジメチルアミンエピクロルヒドリン重縮合物(商品名例えばBusan1157、バックマン社製)など。
pH調整剤:例えば、無機酸(塩酸、硫酸、リン酸、ポリリン酸、ホウ酸など)、有機酸(乳酸、酢酸、クエン酸、酒石酸、リンゴ酸、コハク酸、シュウ酸、グルコン酸、フマル酸、プロピオン酸、酢酸、アスパラギン酸、イプシロン−アミノカプロン酸、グルタミン酸、アミノエチルスルホン酸など)、グルコノラクトン、酢酸アンモニウム、無機塩基(炭酸水素ナトリウム、炭酸ナトリウム、水酸化カリウム、水酸化ナトリウム、水酸化カルシウム、水酸化マグネシウムなど)、有機塩基(モノエタノールアミン、トリエタノールアミン、ジイソプロパノールアミン、トリイソプロパノールアミン、リジンなど)、ホウ砂、及びその薬理学的に許容される塩類など。
等張化剤:例えば、糖類(ブトウ糖,マンニトール,ソルビトールなど)など。
無機塩類:例えば、塩化ナトリウム、塩化カリウム、炭酸ナトリウム、炭酸水素ナトリウム、塩化カルシウム、硫酸マグネシウム、リン酸水素ナトリウム、リン酸水素二ナトリウム、リン酸水素二カリウム、チオ硫酸ナトリウム、酢酸ナトリウムなど。
Hereinafter, typical components used in the ophthalmic composition of the present invention will be exemplified, but the present invention is not limited thereto.
Saccharides: for example, glucose, fructose, galactose, mannose, ribose, ribulose, arabinose, xylose, lyxose, deoxyribose, maltose, trehalose, sucrose, cellobiose, lactose, pullulan, lactulose, raffinose, maltitol and the like, and pharmacological properties thereof And the salts that are acceptable.
Surfactants: For example, polyoxyethylene-polyoxypropylene block copolymer adduct of ethylenediamine (for example, poloxamine), POE (20) sorbitan monolaurate (polysorbate 20), POE (20) sorbita monooleate (polysorbate 80) POE sorbitan fatty acid esters such as POE (60) hydrogenated castor oil, POE hardened castor oil such as POE (9) lauryl ether, POE alkyl ethers such as POE (20) POP (4) cetyl ether, etc. Nonionic surfactants such as alkyl ethers and POE alkyl phenyl ethers such as POE (10) nonyl phenyl ether; glycine type such as alkyl diaminoethyl glycine; betaine acetate type such as lauryl dimethylamino acetate betaine; imidazoline type; of POE (10) POE alkyl ether phosphoric acid and salts thereof such as sodium lauryl ether phosphate, N-acyl amino acid salts such as sodium lauroylmethylalanine, alkyl ether carboxylates, sodium N-cocoyl methyl taurine and the like N-acyltaurine salts, sulfonates such as sodium tetradecenesulfonate, alkyl sulfates such as sodium lauryl sulfate, POE (3) POE alkyl ether sulfates such as sodium lauryl ether sulfate, α-olefin sulfonate, etc. Cationic surfactants such as alkylamine salts, alkyl quaternary ammonium salts (benzalkonium chloride, benzethonium chloride, etc.) and alkylpyridinium salts (cetylpyridinium chloride, cetylpyridinium bromide, etc.) Such as an active agent, and the like. The numbers in parentheses indicate the number of moles added.
Preservatives, bactericides or antibacterials: for example, sorbic acid or a salt thereof (sorbic acid, potassium sorbate, sodium sorbate, triclocarban sorbate, etc.), paraoxybenzoic acid esters (methyl paraoxybenzoate, ethyl paraoxybenzoate, Propyl paraoxybenzoate, butyl paraoxybenzoate, etc.), acrinol, methylrosaniline chloride, benzalkonium chloride, benzethonium chloride, cetylpyridinium chloride, cetylpyridinium bromide, chlorhexidine, polyhexamethylene biguanide, alkylpolyaminoethyl glycine, benzyl alcohol, phenethyl Carriers such as alcohol, chlorobutanol, isopropanol, ethanol, phenoxyethanol, silver zirconium phosphate, thimerosal, dehydrovinegar Chlorxylenol, chlorophen, resorcin, thymol, hinokitiol, sulfamine, lysozyme, lactoferrin, triclosan, 8-hydroxyquinoline, undecylenic acid, caprylic acid, propionic acid, benzoic acid, propionic acid, halocarban, thiabendazole, polymyxin B, 5 -Chloro-2-methyl-4-isothiazolin-3-one, 2-methyl-4-isothiazolin-3-one, polylysine, hydrogen peroxide, polydronium chloride, Glokill (for example, Glokill PQ, manufactured by Rhodia), poly Diallyldimethylammonium chloride, poly [oxyethylene (dimethyliminio) ethylene- (dimethyliminio) ethlene dichloride, polyethylenepolyamine / dimethylamine epichlorohydrin polycondensate (trade name such as Bu san1157, manufactured by Bachman).
pH adjusters: For example, inorganic acids (hydrochloric acid, sulfuric acid, phosphoric acid, polyphosphoric acid, boric acid, etc.), organic acids (lactic acid, acetic acid, citric acid, tartaric acid, malic acid, succinic acid, oxalic acid, gluconic acid, fumaric acid) , Propionic acid, acetic acid, aspartic acid, epsilon-aminocaproic acid, glutamic acid, aminoethylsulfonic acid, etc.), gluconolactone, ammonium acetate, inorganic bases (sodium hydrogen carbonate, sodium carbonate, potassium hydroxide, sodium hydroxide, hydroxide) Calcium, magnesium hydroxide, etc.), organic bases (monoethanolamine, triethanolamine, diisopropanolamine, triisopropanolamine, lysine, etc.), borax, and pharmacologically acceptable salts thereof.
Isotonicity agents: for example, sugars (such as sugar, mannitol, and sorbitol).
Inorganic salts: For example, sodium chloride, potassium chloride, sodium carbonate, sodium hydrogen carbonate, calcium chloride, magnesium sulfate, sodium hydrogen phosphate, disodium hydrogen phosphate, dipotassium hydrogen phosphate, sodium thiosulfate, sodium acetate and the like.
本発明の眼科用組成物のpH及び浸透圧は、必要に応じて、生体に許容される範囲内に調節する。pHは3.0〜10.0、好ましくは4.0〜8.5 、特に好ましくは4.0 〜7.0 である。浸透圧は、100〜1200mOsm、好ましくは100〜600mOsm、特に好ましくは150〜450mOsm程度であり、生理食塩液に対する浸透圧比は、0.3〜4.1、好ましくは0.3〜2.1、特に好ましくは0.5〜1.4程度である。なお、pHの調整には、緩衝剤、前記pH調整剤、浸透圧の調整には前記等張化剤、前記無機塩類などを用いる。
ここで、緩衝剤としては、ホウ酸緩衝剤、リン酸緩衝剤、炭酸緩衝剤、クエン酸緩衝剤、酢酸緩衝剤、イプシロン−アミノカプロン酸、アスパラギン酸塩などが挙げられる。これらの緩衝剤は組み合わせて使用しても良い。好ましい緩衝剤は、ホウ酸緩衝剤、リン酸緩衝剤、炭酸緩衝剤及びクエン酸緩衝剤である。特に好ましい緩衝剤は、ホウ酸緩衝剤、クエン酸緩衝剤またはリン酸緩衝剤である。ホウ酸緩衝剤としては、ホウ酸アルカリ金属塩、ホウ酸アルカリ土類金属塩などのホウ酸塩が挙げられる。リン酸緩衝剤としては、リン酸アルカリ金属塩、リン酸アルカリ土類金属塩などのリン酸塩が挙げられる。クエン酸緩衝剤としては、クエン酸アルカリ金属塩などが挙げられる。また、ホウ酸緩衝剤又はリン酸緩衝剤として、ホウ酸塩又はリン酸塩の水和物を用いてもよい。より具体的には、ホウ酸又はその塩 (ホウ酸ナトリウム、テトラホウ酸カリウム、メタホウ酸カリウムなど) 、リン酸又はその塩 (リン酸水素ナトリウム、リン酸二水素ナトリウム、リン酸二水素カリウムなど)、炭酸又はその塩(炭酸水素ナトリウム、炭酸ナトリウムなど)、クエン酸又はその塩(クエン酸ナトリウム、クエン酸カリウムなど)が挙げられる。緩衝剤として、ホウ酸緩衝剤又はリン酸緩衝剤を用いる場合、本発明の眼科用組成物中におけるこれらの緩衝剤の濃度は、例えば、0.0001〜10.0重量%程度である。
The pH and the osmotic pressure of the ophthalmic composition of the present invention are adjusted, if necessary, within the range acceptable for a living body. The pH is between 3.0 and 10.0, preferably between 4.0 and 8.5, particularly preferably between 4.0 and 7.0. The osmotic pressure is 100 to 1200 mOsm, preferably about 100 to 600 mOsm, particularly preferably about 150 to 450 mOsm, and the osmotic pressure ratio to physiological saline is 0.3 to 4.1, preferably 0.3 to 2.1, Particularly preferably, it is about 0.5 to 1.4. The pH is adjusted using a buffer, the pH adjuster, and the osmotic pressure is adjusted using the isotonic agent, the inorganic salts, and the like.
Here, examples of the buffer include borate buffer, phosphate buffer, carbonate buffer, citrate buffer, acetate buffer, epsilon-aminocaproic acid, aspartate and the like. These buffers may be used in combination. Preferred buffers are borate, phosphate, carbonate and citrate buffers. Particularly preferred buffers are borate, citrate or phosphate buffers. Examples of the borate buffer include borates such as alkali metal borate and alkaline earth metal borate. Examples of the phosphate buffer include phosphates such as alkali metal phosphate and alkaline earth metal phosphate. Examples of the citrate buffer include alkali metal citrate. Further, a borate or a phosphate hydrate may be used as the borate buffer or the phosphate buffer. More specifically, boric acid or a salt thereof (sodium borate, potassium tetraborate, potassium metaborate, etc.), phosphoric acid or a salt thereof (sodium hydrogen phosphate, sodium dihydrogen phosphate, potassium dihydrogen phosphate, etc.) , Carbonic acid or a salt thereof (such as sodium hydrogen carbonate and sodium carbonate), and citric acid or a salt thereof (such as sodium citrate and potassium citrate). When a borate buffer or a phosphate buffer is used as the buffer, the concentration of these buffers in the ophthalmic composition of the present invention is, for example, about 0.0001 to 10.0% by weight.
本発明の眼科用組成物は、公知の方法により製造できる。さらに必要により、ろ過滅菌処理工程や、容器への充填工程等を加えることができる。 The ophthalmic composition of the present invention can be produced by a known method. If necessary, a filtration sterilization step, a step of filling a container, and the like can be added.
また、本発明には、A)単環性モノテルペン系炭化水素、単環性モノテルペン系ケトンおよび単環性モノテルペン系オキシドからなる群から選択される1種以上の単環性モノテルペノイド1重量部に対し、B)少なくとも1種以上のモノテルペン系アルコールを0.01〜2000重量部の範囲で配合することによって眼科用組成物が有する冷却作用を強化させる方法や、適用時の初期刺激性を抑制する方法も含まれる。 In the present invention, there is also provided A) one or more monocyclic monoterpenoids selected from the group consisting of monocyclic monoterpene hydrocarbons, monocyclic monoterpene ketones and monocyclic monoterpene oxides. B) A method for enhancing the cooling effect of the ophthalmic composition by adding at least one or more monoterpene-based alcohols in the range of 0.01 to 2,000 parts by weight with respect to parts by weight, and initial stimulation at the time of application. It also includes a method for suppressing the property.
本発明の眼科用組成物の用法及び用量は、使用者の症状、組成物に含まれる有効性成分や製剤の形態に応じて適宜選択することができる。例えば点眼薬の場合、通常一日あたり1〜6回程度点眼し、1回に1〜3滴程度適用し、洗眼薬の場合、通常一日あたり1〜6回程度洗眼し、1回に5〜10mL程度使用する。またコンタクトレンズ装着液の場合、通常コンタクトレンズの装着時にコンタクトレンズの両面を1〜2滴でぬらした後、そのまま、あるいは一度水洗いしてからレンズ内面に1滴つけて装着する。また、コンタクトレンズ用剤の場合、レンズの種類によって異なるが、例えば洗浄剤として使用する場合は、適量をレンズ両面に滴下しこすり洗いを行ったり、適量をレンズケースに移しそこにレンズを浸漬させて漬け置き洗いを行う。また保存・すすぎ液として使用する場合は、適量でレンズ両面をすすいだり、適量をレンズケース等に移しそこにレンズを浸漬保存したりして使用する。 The usage and dosage of the ophthalmic composition of the present invention can be appropriately selected according to the symptoms of the user, the active ingredients contained in the composition, and the form of the preparation. For example, in the case of eye drops, it is usually applied about 1 to 6 times per day, and about 1 to 3 drops are applied at a time. In the case of eyewash, it is usually washed about 1 to 6 times per day, and 5 times per day. Use about 10 mL. In the case of a contact lens mounting solution, the contact lens is usually mounted on a contact lens after both surfaces of the contact lens are wetted with one or two drops, and then washed or washed once with water and then dropped on the inner surface of the lens. In addition, in the case of a contact lens agent, although it differs depending on the type of lens, for example, when used as a cleaning agent, an appropriate amount is dripped and scrubbed on both sides of the lens, or an appropriate amount is transferred to a lens case and the lens is immersed there. And pickle and wash. When used as a preservation and rinsing liquid, rinse both sides of the lens with an appropriate amount, or transfer an appropriate amount to a lens case or the like and immerse and store the lens therein.
以下に、実施例を挙げて、本発明を詳しく説明するが、本発明はこれらに限定されるものではない。 Hereinafter, the present invention will be described in detail with reference to Examples, but the present invention is not limited thereto.
1. 点眼試験
試験方法
表1に記載の処方に従い、各成分を精製水に溶解し、浸透圧ならびにpHを調整後、全量を100mLとし、ろ過滅菌して滅菌済みのプラスチック容器(材質/容器本体:ポリエチレンテレフタレート、ノズル:ポリエチレン、キャップ:ポリプロピレン)に充填し、各試験溶液(点眼薬)を調製した。
これを15人のパネラーに点眼し、各試験溶液について点眼直後、5分後および20分後における冷たさの程度、点眼直後に感じる痛み、灼熱感等の刺激(初期刺激)の有無、ねばつきの有無を評価した。評価は各表の欄外に記載の基準に従い、パネラーがそれぞれ行った。また各試験溶液の点眼直後における眼球表面温度については、サーモグラフィ(サーマルビジョンLAIRD-S270(株式会社ニコン製))を用いて測定を行い、別途測定した生理食塩液を点眼した際の眼球表面温度の測定値を用いて、下記の式1に従って、眼球表面温度の低下の程度を算出した。
1. Ophthalmic test Test method According to the prescription described in Table 1, each component is dissolved in purified water, the osmotic pressure and the pH are adjusted, and the total amount is adjusted to 100 mL, sterilized by filtration, and sterilized plastic container (material / container body) : Polyethylene terephthalate, nozzle: polyethylene, cap: polypropylene) to prepare each test solution (eye drops).
This was instilled into 15 panelists, and the degree of coldness immediately after instillation, 5 minutes and 20 minutes after instillation of each test solution, pain felt immediately after instillation, presence or absence of stimulus such as burning sensation (initial irritation), stickiness The presence or absence was evaluated. The evaluation was performed by panelists according to the criteria described in the margins of each table. In addition, the eyeball surface temperature of each test solution immediately after instillation was measured using thermography (Thermal Vision LAIRD-S270 (manufactured by Nikon Corporation)), and the eyeball surface temperature when separately measured saline solution was instilled was measured. Using the measured values, the degree of decrease in the eyeball surface temperature was calculated according to the following equation 1.
なお、冷たさの評価については、パネラーの評価で最も多かったものを、点眼直後の初期刺激の有無については、刺激が無いと評価したパネラーの割合(%)を、各表の欄外に記載の基準に従い表中に示した。 In addition, about the evaluation of the coldness, what was the most in the evaluation of the panelists, about the presence or absence of the initial stimulus immediately after instillation, the ratio (%) of the panelists who evaluated that there was no irritation was described in the margin of each table. It is shown in the table according to the standard.
単環性モノテルペン系ケトンであるメントンを含まない比較例1、2、4の点眼薬においては点眼直後に冷たさは感じるものの、点眼5分後には冷たさはほぼ消失していた。また初期刺激を感じるパネラーの割合も高かった。また、メントンのみを配合する比較例3の点眼薬においても、同様の傾向を示した。また、粘稠化剤であるヒドロキシプロピルメチルセルロースを含む比較例4については、点眼後のねばつきも若干感じられた。
一方、メントンとモノテルペン系アルコールであるメントールを配合する実施例1〜3においては、点眼直後に感じる冷たさは強く、点眼20分後においても持続した。また眼球表面温度の低下の程度も比較例1〜4と比較しても大きく、初期刺激もほとんど感じられなかった。
従って、メントールとメントンをともに製剤中に配合することで、点眼部位における冷却作用を強化できるとともに、点眼時の初期刺激が抑制できた。さらに製剤中にさらに粘稠化剤を配合しても、同様の効果を奏することができ、また粘稠化剤特有のねばつきも抑制され、官能特性が向上した。
In the eye drops of Comparative Examples 1, 2, and 4 containing no mentone, which is a monocyclic monoterpene ketone, the cold was felt immediately after instillation, but almost disappeared 5 minutes after instillation. The proportion of panelists who felt the initial stimulus was also high. The same tendency was observed in the eye drops of Comparative Example 3 containing only mentone. In Comparative Example 4 containing hydroxypropyl methylcellulose as a thickening agent, some stickiness after instillation was also felt.
On the other hand, in Examples 1 to 3 in which menthol and menthol, a monoterpene-based alcohol, were mixed, the cold felt immediately after instillation was strong and continued even after 20 minutes from instillation. Also, the degree of decrease in the eyeball surface temperature was large as compared with Comparative Examples 1 to 4, and almost no initial stimulation was felt.
Therefore, by adding both menthol and menthol in the preparation, the cooling effect at the ophthalmic site can be enhanced and the initial irritation at the time of instillation can be suppressed. Furthermore, the same effect can be obtained even when a thickening agent is further added to the preparation, stickiness peculiar to the thickening agent is suppressed, and the sensory characteristics are improved.
表2〜5に記載の処方に従い、各成分を精製水に溶解し、浸透圧ならびにpHを調整後、全量を100mLとし、ろ過滅菌して容器に充填し、点眼剤、洗眼剤を調製した。 According to the formulations described in Tables 2 to 5, each component was dissolved in purified water, and after adjusting the osmotic pressure and pH, the total amount was adjusted to 100 mL, sterilized by filtration, and filled in containers to prepare eye drops and eyewash.
Claims (6)
A) one or more monocyclic monoterpenoids selected from the group consisting of monocyclic monoterpene hydrocarbons, monocyclic monoterpene ketones, and monocyclic monoterpene oxides; and B) at least one or more monocyclic monoterpenoids. A method of suppressing the initial irritation of an ophthalmic composition by incorporating the monoterpene alcohol of the formula (I) in a range of 0.01 to 2000 parts by weight of B) with respect to 1 part by weight of A).
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Cited By (7)
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JP2006176501A (en) * | 2004-11-26 | 2006-07-06 | Taisho Pharmaceut Co Ltd | Ophthalmic agent |
JP2012214504A (en) * | 2004-11-26 | 2012-11-08 | Taisho Pharmaceutical Co Ltd | Ophthalmic medicine |
JP2014098011A (en) * | 2014-01-31 | 2014-05-29 | Rohto Pharmaceut Co Ltd | Composition applied to mucous membrane |
JP2015091888A (en) * | 2015-02-10 | 2015-05-14 | ロート製薬株式会社 | Composition applied to mucous membrane |
US9034931B2 (en) | 2010-12-28 | 2015-05-19 | Rohto Pharmaceutical Co., Ltd. | Aqueous ophthalmic composition |
JP2016121189A (en) * | 2016-04-01 | 2016-07-07 | ロート製薬株式会社 | Composition applied to mucous membrane |
JPWO2021201059A1 (en) * | 2020-03-30 | 2021-10-07 |
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BRPI1107166A2 (en) * | 2011-10-17 | 2013-11-26 | Fbm Ind Farmaceutica Ltda | LENS CLEANING SOLUTION CONTACT |
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JP2006176501A (en) * | 2004-11-26 | 2006-07-06 | Taisho Pharmaceut Co Ltd | Ophthalmic agent |
JP2012214504A (en) * | 2004-11-26 | 2012-11-08 | Taisho Pharmaceutical Co Ltd | Ophthalmic medicine |
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JP2014098011A (en) * | 2014-01-31 | 2014-05-29 | Rohto Pharmaceut Co Ltd | Composition applied to mucous membrane |
JP2015091888A (en) * | 2015-02-10 | 2015-05-14 | ロート製薬株式会社 | Composition applied to mucous membrane |
JP2016121189A (en) * | 2016-04-01 | 2016-07-07 | ロート製薬株式会社 | Composition applied to mucous membrane |
JPWO2021201059A1 (en) * | 2020-03-30 | 2021-10-07 | ||
WO2021201059A1 (en) * | 2020-03-30 | 2021-10-07 | 三生医薬株式会社 | Composition containing menthol |
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