JP4583762B2 - ポリペプチド製剤 - Google Patents
ポリペプチド製剤 Download PDFInfo
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- JP4583762B2 JP4583762B2 JP2003570807A JP2003570807A JP4583762B2 JP 4583762 B2 JP4583762 B2 JP 4583762B2 JP 2003570807 A JP2003570807 A JP 2003570807A JP 2003570807 A JP2003570807 A JP 2003570807A JP 4583762 B2 JP4583762 B2 JP 4583762B2
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Description
特定実施態様では、Fcドメイン含有ポリペプチドはFcドメインに融合したTNF受容体の可溶性形態(TNFR:Fc)であるが、任意のFcドメイン含有ポリペプチドが本発明の製剤中に使用するのに適していると理解されたい。市販のTNFR:Fcはエタナーセプト(Enbrel(登録商標);Immunex Corporation)として公知であり、これはヒトIgG1のFc部分に連結したヒト75キロダルトン(p75)腫瘍壊死因子受容体(TNFR)の細胞外リガンド結合部分から構成されるダイマー融合ポリペプチドである。エタナーセプトのFc成分はヒトIgG1の定常重鎖2(CH2)ドメイン、定常重鎖3(CH3)ドメイン及びヒンジ領域を含むが、定常重鎖1(CH1)ドメインを含まない。Fcドメインは上記したドメインの1つまたは全部を含み得ると理解されたい。エタナーセプトはチャイニーズハムスター卵巣(CHO)哺乳動物細胞発現系において組換えDNA技術により産生される。これは934アミノ酸からなり、約150キロダルトンの見かけ分子量を有する(Physicians Desk Reference,2002,Medical Economics Company Inc.)。
本発明の医薬組成物は、上記した精製ポリペプチドに加えて凝集抑制剤を混合することにより調製される。更に、所要により緩衝剤、張性調節剤及び追加の賦形剤を添加してもよい。当業者が理解しているように組成物中に配合しようとする諸成分の添加は適当な順序で実施され得る。すなわち、緩衝剤を初めに、途中または最後に添加してもよいし、張性調節剤も初めに、途中または最後に添加してもよい。同様に当業者が理解しているように前記化学物質の幾つかはある組合せでは非適合性の場合があり、そのときには類似の特性を有するが当該混合物中で適合性の別の化学物質で置換する。
製剤のFcドメイン含有ポリペプチドの適当な用量、すなわち治療有効量は、治療しようとする状態、その状態の重篤度、以前の治療、患者の臨床的病歴及び治療薬に対する応答に依存する。適当な用量は患者が1回または一連の投与に亘り投与され得るように担当医の判断に従って調節され得る。医薬組成物は、所要により単一の治療薬としてまたは別の治療薬と組み合わせて投与され得る。
本発明の医薬組成物は非経口投与、すなわち皮下、筋肉内、静脈内、腹腔内、脳脊髄内、間接内、滑膜内及び/または鞘内投与するために特に有用である。非経口投与はボーラス注入または連続注入によりなされ得る。注射用医薬組成物は1回服用量剤形で、例えば適当な保存剤を含むアンプルまたは複数回投与容器中に収容され得る。加えて、最近多数の薬物デリバリー法が開発されており、本発明の医薬組成物はこの新しい方法、例えばInject−ease(商品名)、Genject(商品名)、インジェクターペン(例えば、GenPen(商品名))、及び無注射針デバイス(例えば、MediJector(商品名)及びBioJector(商品名))を用いて投与するのに適している。本発明の医薬組成物は将来発見される投与方法にも適合し得る。Langer,Science,249:1527−1533(1990)も参照されたい。
保存中のサンプル中での高分子量(HMW)種(形成される凝集物)のレベルを評価するためにSECを使用した。低分子量(LMW)種はdSECによりうまく分解され、そのデータは次節に見つけることができる。図1は2〜8℃で保存したサンプルについてのSECデータ、図2は37℃の促進条件下で保存したサンプルについてのSECデータを示す。
低分子量(LMW)種の変性SEC(dSEC)定量データを2〜8℃で保存したサンプルについては図3に、37℃で保存したサンプルについては図4に示す。ロットA〜D及びロット1は2〜8℃で最長1年間保存した後にdSECにより分析したが、ロットC及びDは37℃の促進条件下で6ヶ月間保存した後に分析しなかった。37℃の保存中に、ロット1、ロットA、B及びCは類似の分解を示したが、ロットDは熱ストレス中にロット1及び他のロットよりも高い分解を示した。ロットA及びBとロット1の類似性は30℃での保存中(データ示さず)でも見られ、分解レベルは2〜8℃及び37℃で見られたものの中間であった。ロットBの場合、−70℃でバイアル中、−70℃で注射器中、−20℃で注射器中、−20℃で熱処理及び保存後注射器中に保存した各々のサンプル間で違いはなかった(データ示さず)。−70℃及び−20℃で12ヶ月間保存後の値はいずれも相互の及び時間0値の0.7%以内であった。
各種TNFR:Fc関連種を分離するためにHICを使用した。ピーク1(及びプレピーク1と称される早期に溶出するピーク)は主に低分子量種からなることが判明した。ピーク2は折り畳まれた無傷のダイマー(活性)を含んでいる。ピーク3は凝集物質及び低活性ダイマーを含んでいる。
−70℃、−20℃、2〜8℃、30℃及び37℃で12ヶ月間保存したサンプルのSDS−PAGE分析を実施した。ロットAでは、2〜8℃で1年間保存した後に約50kD及び約34kDの両分解断片に関連するバンドが増加した。高温で大規模な分解が見られ、多くの小分子量バンドは高い強度を示した。
図11は、−70℃、2〜8℃、30℃及び37℃で6ヶ月間及び12ヶ月間保存したロットA〜D及びロット1についてELISAから誘導した結合活性データを示す。−70℃サンプルのエラーバーは±30%を示す。これらのエラーバーの範囲外の値のみがアッセイ変動性ゆえに有意であると見做される。ロットA及びBは2〜8℃及び30℃で6ヶ月後に十分な結合活性を保持していたが、12ヶ月目では2〜8℃で保存したサンプルのみが十分な結合活性を維持した。ロット1は2〜8℃及び30℃で保存後12ヶ月まで十分な活性を維持できたが、30℃で1年後のLMWレベルは13.6%(dSEC;データ示さず)、HMWレベルは8%(SEC;データ示さず)であった。ロットC及びDも2〜8℃で1年間保存後十分な結合活性を維持したが、ロットDではdSEC及びHICで見られた分解産物は高レベルを示した。
液体ホスフェート製剤(25mM ホスフェート、25mM L−アルギニン、98mM NaCl、1% スクロース;pH6.2)中で処方したロットB及びCは、−70℃または2〜8℃で1年間後の同一製剤中のロット1と同様に安定であることが判明した。ロットA〜Dの凝集物はロット1よりも少なく、低分子量種への分解の点で同等であった(12ヶ月目でdSECによるとLMWレベルは4%未満)。ロット1及びロットA〜Dはいずれも30及び37℃の高温で分解及び凝集の増大を示したが、2〜8℃で最長1年間のロット1と同等に機能するこれらのロットが、1年間の熱ストレスのロット1と均等であることが分かった。ロットDは促進アッセイで余り安定でなく、低分子量分解産物のレベルは高かった。
本発明の範囲は本明細書に記載の特定実施態様により限定されない。これらの実施態様は本発明の各局面の単なる例示にすぎず、機能的に均等の方法及び成分が本発明の範囲に包含される。実際、本明細書に記載したものに加えて本発明の各種改変が本明細書の記載及び添付図面から当業者には自明であろう。こうした改変も本発明の範囲に入ると解される。
Claims (28)
- ヒトIgG1のFc領域に融合したヒトp75腫瘍壊死因子受容体の細胞外リガンド結合部分であるポリペプチド及び凝集抑制剤としてL−アルギニンを含む安定な水性製剤である医薬組成物であって、凝集抑制剤が10〜200mMの濃度のL−アルギニンである前記医薬組成物。
- 更に緩衝剤を含む請求項1に記載の組成物。
- 緩衝剤がリン酸ナトリウム、ヒスチジン、リン酸カリウム、クエン酸ナトリウム、クエン酸カリウム、マレイン酸、酢酸アンモニウム、トリス−(ヒドロキシメチル)−アミノメタン(トリス)、アセテート及びジエタノールアミンからなる群から選択される請求項2に記載の組成物。
- L−アルギニンが10〜75mMの濃度である請求項3に記載の組成物。
- 更に張性調節剤を含む請求項1〜4のいずれか1項に記載の組成物。
- 張性調節剤がアルギニン、システイン、ヒスチジン、グリシン、塩化ナトリウム、塩化カリウム、クエン酸ナトリウム、スクロース、グルコース及びマンニトールからなる群から選択される請求項5に記載の組成物。
- 張性調節剤が塩化ナトリウムである請求項6に記載の組成物。
- 更に賦形剤を含む請求項1〜4のいずれか1項に記載の組成物。
- 更に賦形剤を含む請求項6に記載の組成物。
- 更に賦形剤を含む請求項7に記載の組成物。
- 賦形剤がスクロース、ラクトース、グリセロール、キシリトール、ソルビトール、マンニトール、マルトース、イノシトール、トレハロース、グルコース、ウシ血清アルブミン(BSA)、ヒトSAまたは組換えHA、デキストラン、PVA、ヒドロキシプロピルメチルセルロース(HPMC)、ポリエチレンイミン、ゼラチン、ポリビニルピロリドン(PVP)、ヒドロキシエチルセルロース(HEC)、ポリエチレングリコール、エチレングリコール、グリセロール、ジメチルスルホキシド(DMSO)、ジメチルホルムアミド(DMF)、プロリン、L−セリン、グルタミン酸ナトリウム、アラニン、グリシン、リシン塩酸塩、サルコシン、γ−アミノ酪酸、ツイーン20、ツイーン80、SDS、ポリソルベート、ポリオキシエチレンコポリマー、リン酸カリウム、酢酸ナトリウム、硫酸アンモニウム、硫酸マグネシウム、硫酸ナトリウム、トリメチルアミンN−オキシド、ベタイン、亜鉛イオン、銅イオン、カルシウムイオン、マンガンイオン、マグネシウムイオン、CHAPS、スクロースモノラウレート及び2−O−β−マンノグリセレートからなる群から選択される請求項8に記載の組成物。
- 賦形剤がスクロースである請求項11に記載の組成物。
- 10〜100mg/mlのエタナーセプト、L−アルギニン、リン酸ナトリウム、塩化ナトリウム及びスクロースを含む安定な医薬組成物。
- L−アルギニンが10〜75mMである請求項13に記載の組成物。
- リン酸ナトリウムが5〜100mMである請求項13に記載の組成物。
- 塩化ナトリウムが5〜200mMである請求項13に記載の組成物。
- スクロースが0.5〜1.5%である請求項13に記載の組成物。
- pHが5.5〜7.8である請求項13に記載の組成物。
- pH6.0〜7.0で25〜50mg/mlのエタナーセプト、25mMのL−アルギニン、25mMのリン酸ナトリウム、100mMの塩化ナトリウム及び1%のスクロースを含む請求項13に記載の組成物。
- 組成物がポリソルベート20を更に含む請求項19に記載の組成物。
- 組成物が凍結されている請求項20に記載の組成物。
- ヒトIgG1のFc領域に融合したヒトp75腫瘍壊死因子受容体の細胞外リガンド結合部分である単離ポリペプチドを、10〜200mMの濃度のL−アルギニンと混合して含む組成物を処方し、ポリペプチドの凝集を抑制する方法。
- 更に緩衝剤、張性調節剤及び賦形剤を組成物と混合するステップを含む請求項22に記載の方法。
- 緩衝剤がリン酸ナトリウムであり、張性調節剤が5〜200mMの濃度の塩化ナトリウムであり、賦形剤が0.5〜1.5%のスクロースである請求項23に記載の方法。
- 組成物を凍結するステップを更に含む請求項22〜24のいずれか1項に記載の方法。
- ヒトIgG1のFc領域に融合したヒトp75腫瘍壊死因子受容体の細胞外リガンド結合部分であるポリペプチド及びポリペプチドの凝集を抑制するための10〜200mMの濃度のL−アルギニンを含む組成物、並びに該組成物の使用説明書を含むキット。
- 組成物が予備充填滅菌注射器中に保存されている請求項26に記載のキット。
- 注射器が凍結状態で保存されている請求項27に記載のキット。
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