JP7597398B2 - 組換え神経成長因子のための組成物及び方法 - Google Patents
組換え神経成長因子のための組成物及び方法 Download PDFInfo
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Description
本出願は、2017年2月10日に出願された米国特許仮出願第62/457,499号の優先権の利益を主張するものであり、その全体が参照により本明細書に組み入れられる。
(i)全長神経成長因子(NGF)ポリペプチド配列又はその生物学的活性を有する断片を含む第1の部分;及び
(ii)NGFポリペプチド配列又はその生物学的活性を有する断片の半減期を増大させる追加のポリペプチドを含む第2の部分
を含むポリペプチドを提供する。
(i)細胞培養培地中で本明細書に記載の宿主細胞を培養するステップ;及び
(ii)本明細書に記載のポリペプチドを発現させるステップ
を含む方法を提供する。
一部の実施形態において、本方法はさらに、
(iii)細胞培養培地から本明細書に記載のポリペプチドを精製するステップ
を含む。
これらの例示的な方法によって、本明細書に記載のポリペプチドが産生され、分離され、最終的にさらなる使用のために精製され得る。
冠詞「a」及び「an」は、冠詞の文法的対象の1つ又は複数(すなわち、少なくとも1つ)を指すために本明細書において使用される。例として、「要素(エレメント)」とは、1つの要素又は複数の要素を意味する。
本発明は、本明細書に開示される組成物の薬学的に許容される組成物を提供する。以下に詳細に記載するように、本発明の医薬組成物は、固体又は液体形態での投与のために特別に製剤化することができ、例えば以下のために適合して製剤化することができる:(1)経口投与、例えば、飲薬(水性若しくは非水性の溶液若しくは懸濁液)、錠剤、ボーラス、粉末、顆粒、ペースト;(2)非経口投与、例えば、皮下、筋肉内又は静脈内注射、例えば滅菌溶液又は懸濁液として;(3)局所適用、例えば、クリーム、軟膏、点眼薬、又は皮膚若しくは眼投与に適用される噴霧剤として;(4)膣内又は直腸内、例えば、ペッサリー、クリーム又は泡状物として;あるいは(5)エアゾール、例えば、水性エアゾール、リポソーム調製物又は固形粒子として。
NGF-CTPのクローニング
NGF(238アミノ酸)は、最初はα-NGF、β-NGF及びγ-NGFの複合体であり、γサブユニットがβサブユニットのN末端を切断し、それによりタンパク質は機能的なNGF(120アミノ酸)へと活性化する。全長NGF遺伝子(714-bp)を、全長ヒトNGF遺伝子を有するプラスミドを用いて、5’-ATCTC GAGCA CCATG TCCAT GTTGT TCTAC ACTCT GA- 3’(配列番号14)をフォワードプライマー(U1)として、5’-TGGAG CCTTG GAAGA GCTAG AGGCT CTTCT CACAG CCTT-3’(配列番号15)をリバースプライマー(R1)として使用して増幅した。ヒトHCGからのCTP遺伝子はSangon Biotech(Shanghai) Co., Ltd.で合成され、この遺伝子を増幅するために設計したフォワード(U2)及びリバース(R2)プライマーは、それぞれ5’-AAGGC TGTGA GAA GA GCCTC TAGCT CTTCC AAGGC TCCA-3'(配列番号16)及び5’-TTTGC GGCCG CTTACT ACTGG GGCAG AATA -3’(配列番号17)である。こうしてNGF配列及びCTP配列を増幅し、ゲル電気泳動で分析し、その後ゲル抽出を行ってPCR産物を得た。NGFのPCR産物(1μL)及びHCG CTP(1μL)を鋳型として使用し、U1及びR2をそれぞれフォワード及びリバースプライマーとして使用してPCR重複伸張を行った。PCR増幅は、初期ステップ(94℃, 3分)、変性ステップ(94℃, 30秒)、アニーリングステップ(58℃, 30秒)及び伸長ステップ(72℃, 1分)を30サイクル、続いて最終伸長ステップ(72℃, 7分)からなるものとした。PCR産物をゲル電気泳動で分析し、その後ゲル抽出した。ゲル抽出からの遺伝子をpMC-18Tベクターにライゲートし、続いて陽性クローンをスクリーニングし、さらなる遺伝子シーケンシングのために選択した。正確な配列を有するクローンをさらなる構築のために保存した。遺伝子配列を配列番号1に示し、アミノ酸配列を配列番号2に示す(表1)。
NGF-CTP断片は、制限酵素としてのXhoI及びNotI(New England Biolabs Ltd.)によるpMC-18T/NGF-CTPプラスミドの切断により誘導した。続いて断片を、XhoI及びNotIで予め処理したpCI-neoベクターにライゲートした。16℃で一晩のライゲーション反応後、その産物でDH5αコンピテント細胞を形質転換し、アンピシリンを含むLB寒天プレート上でスクリーニングした。最初に陽性クローンをPCRで検証し、さらに遺伝子シーケンシングにより評価した。PCI-neo/NGF-CTPプラスミドの構造を図1に示す。
Gene Pulser XcellTMエレクトロポレーションシステム(Bio-Rad Laboratories, Inc.)を160Vで150msにわたり使用して、エレクトロポレーションによりPCI-neo/NGF-CTPプラスミドをCHO-S細胞(Invitrogen Co.)に導入した。エレクトロポレーションした細胞を、10%ウシ胎仔血清(FBS)を添加したDMEM-F12培養培地の入った35mm組織培養皿に移しそこで培養した。2日後、G418(Sigma-Aldrich Co. LLC.)を最終濃度600μg mL-1となるように培養培地に添加し、耐性遺伝子に対する選択を強化した。G418処理後の残りのモノクローナル細胞をタンパク質発現レベルのさらなる分析のためにドットブロッティングにより96ウエルプレートにトランスファーした。高発現レベルの細胞をその後の懸濁培養のために選択した。
ワーキング細胞バンクをWAVEバイオリアクタ(10L, GE Healthcare)中で無血清培養培地を用いてrhNGF-CTPを産生するように回復させた。回収する前に、細胞をフェドバッチ形式で12日間にわたりバイオリアクタ中で培養した。上清を回収し、遠心フィルターで濃縮し、AKTA精製機(GE Healthcare)においてタンパク質クロマトグラフィを用いて精製した。サンプルを最初にSepharose Fastflow(GE Healthcare)にアプライし、塩化ナトリウム(1mol L-1)を含むバッファーにより溶出した。その後、Phenyl Fastflow(GE Healthcare)及びSuperdex 75(GE Healthcare)をさらなる精製のために用いた。組換えタンパク質の純度はSDS-PAGEゲル電気泳動に示すように95%超であった(図2)。
精製されたrhNGF-CTPのN末端シーケンシングは、最初の5アミノ酸(SSSHP)が同じでヒトNGFの遺伝子配列と良好にアライメントし、これはα-NGFの正確な切断を示している。rhNGF-CTP(148アミノ酸)の配列を配列番号3に示す。非グリコシル化rhNGF-CTPの計算分子量は16273Daであり、質量分析法により測定された精製されたrhNGF-CTPの分子量は18605Daであった。これらの分子量の差はCTPでのグリコシル化に起因する。
Sprague Dawley(登録商標)ラットをrhNGF-CTPの薬物動態研究に供した。6匹のラット(体重300~400g)を2群に分け、rhNGF又はrhNGF-CTPのいずれかで処置した。ラットをナペンタール(1%)で麻酔し、rhNGF又はrhNGF-CTPを30μg kg-1体重で筋内注射により投与した。注射の0.5、1、2、4、6、8、12及び24時間後に尾から血液サンプルを採取した。血漿NGF濃度を図3に示すようにELISAを用いて決定した。rhNGFの半減期はラットにおいて3.9時間と算出されたが、rhNGF-CTPの半減期は10.0時間にまで延長し、これは2.5倍の増大を示す。
本明細書で言及されるすべての刊行物、特許及び特許出願は、個々の刊行物、特許又は特許出願が参照により組み込まれることが具体的かつ個別に示されるかのように、参照によりその全体が組み込まれる。 矛盾する場合、本明細書の定義を含む本出願が支配する。
当業者は、本明細書に記載の本発明の特定の実施形態に対する多くの均等物を認識するか、又は日常的な実験のみを使用して確認することができる。そのような均等物は、添付の特許請求の範囲に含まれることが意図されている。
本発明は、例えば以下の実施形態を包含する:
[実施形態1]以下:
(i)全長神経成長因子(NGF)ポリペプチド配列、又はその生物学的活性を有する断片を含む第1の部分;及び
(ii)ヒトの血流中で、NGFポリペプチド配列、又はその生物学的活性を有する断片の半減期を増大させる追加のポリペプチドを含む第2の部分
を含むポリペプチド。
[実施形態2]第1の部分が全長NGFポリペプチド配列を含む、実施形態1に記載のポリペプチド。
[実施形態3]第1の部分がNGFの生物学的活性を有する断片を含む、実施形態1に記載のポリペプチド。
[実施形態4]第1の部分がヒトNGF配列を含む、実施形態1~3のいずれかに記載のポリペプチド。
[実施形態5]ヒトNGF配列が配列番号5と少なくとも70%同一である、実施形態4に記載のポリペプチド。
[実施形態6]ヒトNGF配列が配列番号5と少なくとも80%同一である、実施形態5に記載のポリペプチド。
[実施形態7]ヒトNGF配列が配列番号5と少なくとも90%同一である、実施形態6に記載のポリペプチド。
[実施形態8]ヒトNGF配列が配列番号5と少なくとも95%同一である、実施形態7に記載のポリペプチド。
[実施形態9]ヒトNGF配列が配列番号5と少なくとも99%同一である、実施形態8に記載のポリペプチド。
[実施形態10]ヒトNGF配列が配列番号5を含む、実施形態9に記載のポリペプチド。
[実施形態11]第1の部分がNGFの少なくとも1つの結合パートナーと結合可能なものであり、場合によりNGFの少なくとも1つの結合パートナーがトロポミオシン受容体キナーゼA(TrkA)又は低アフィニティNGF受容体(LNGFR/p75NTR)である、実施形態3に記載のポリペプチド。
[実施形態12]第1の部分が配列番号5の122位から241位のアミノ酸残基を含む、実施形態11に記載のポリペプチド。
[実施形態13]第2の部分が、全長ヒト絨毛性ゴナドトロピン(HCG)、又はその生物学的活性を有する断片を含む、実施形態1~12のいずれかに記載のポリペプチド。
[実施形態14]ヒト絨毛性ゴナドトロピン(HCG)が配列番号10~12から選択されるアミノ酸配列を含む、実施形態1~13のいずれかに記載のポリペプチド。
[実施形態15]第2の部分がHCGのカルボキシ末端部分(CTP)を含む、実施形態1~14のいずれかに記載のポリペプチド。
[実施形態16]第2の部分が、配列番号13と少なくとも70%同一であるアミノ酸配列を含むものであり、場合により第2の部分が、配列番号13と少なくとも75%、80%、90%、95、99%又はそれ以上同一であるアミノ酸配列を含む、実施形態1~15のいずれかに記載のポリペプチド。
[実施形態17]第2の部分が配列番号13のアミノ酸配列を含む、実施形態1~16のいずれかに記載のポリペプチド。
[実施形態18]第2の部分が少なくとも1つのグリコシル化部位を含む、実施形態1~17のいずれかに記載のポリペプチド。
[実施形態19]第1の部分及び第2の部分が、リンカーあり又はなしで互いに融合している、実施形態1~18のいずれかに記載のポリペプチド。
[実施形態20]第1の部分が第2の部分のN末端に融合している、実施形態19に記載のポリペプチド。
[実施形態21]第1の部分が第2の部分のC末端に融合している、実施形態19に記載のポリペプチド。
[実施形態22]配列番号2又は3と少なくとも70%同一のアミノ酸配列を含み、場合により配列番号2又は3と少なくとも75%、80%、90%、95、99%又は100%同一のアミノ酸配列を含む、実施形態1~20のいずれかに記載のポリペプチド。
[実施形態23]ポリペプチドが、NGFポリペプチド配列単独のin vivo半減期の少なくとも2.5倍のin vivo半減期を有する、実施形態1~22のいずれかに記載のポリペプチド。[実施形態24]標識、例えば精製用標識及び/又は蛍光タグなどをさらに含む、実施形態1~23のいずれかに記載のポリペプチド。
[実施形態25]ヒトの血流中で、NGFポリペプチド配列又はその生物学的活性を有する断片の機能及び/若しくは安定性を増大する融合ドメインを含む第3の部分をさらに含む、実施形態1~24のいずれかに記載のポリペプチド。
[実施形態26]実施形態1~25のいずれかに記載のポリペプチドをコードするポリヌクレオチド。
[実施形態27]配列番号1と少なくとも70%同一である核酸配列を含む、実施形態26に記載のポリヌクレオチド。
[実施形態28]配列番号1と少なくとも80%同一である核酸配列を含む、実施形態26又は27に記載のポリヌクレオチド。
[実施形態29]配列番号1と少なくとも90%同一である核酸配列を含む、実施形態26~28のいずれかに記載のポリヌクレオチド。
[実施形態30]配列番号1と少なくとも95%同一である核酸配列を含む、実施形態26~29のいずれかに記載のポリヌクレオチド。
[実施形態31]配列番号1と少なくとも99%同一である核酸配列を含む、実施形態26~30のいずれかに記載のポリヌクレオチド。
[実施形態32]配列番号1の核酸配列を含む、実施形態26~31のいずれかに記載のポリヌクレオチド。
[実施形態33]ポリ核酸が配列番号1に相補的な核酸配列とストリンジェントな条件下でハイブリダイズすることができ、場合によりストリンジェントな条件が50%v/vホルムアミド、5 x SSC、2%w/vブロッキング剤、0.1%N-ラウロイルサルコシン、0.3%SDS中での65℃にて一晩のハイブリダイゼーション、及び5 x SSC中での約65℃での洗浄を含む、実施形態26~32のいずれかに記載のポリヌクレオチド。
[実施形態34]標識、例えば精製用標識及び/又は蛍光タグなどをさらに含む、実施形態26~33のいずれかに記載のポリヌクレオチド。
[実施形態35]実施形態1~25のいずれかに記載のポリペプチドを発現可能な発現ベクター、及び/又は実施形態26~34のいずれかに記載のポリヌクレオチドを含む発現ベクター。
[実施形態36]発現ベクターが、プラスミド、コスミド、ウイルスベクター、組換え発現ベクター、又は標的化リポソームである、実施形態35に記載の発現ベクター。
[実施形態37]発現ベクターがウイルスベクターであり、ウイルスベクターが、アデノウイルスベクター、ヘルペスウイルスベクター、ワクシニアウイルスベクター、キメラウイルス、コロイド分散系、又はRNAベクターである、実施形態36に記載の発現ベクター。
[実施形態38]RNAベクターがレトロウイルスベクターである、実施形態37に記載の発現ベクター。
[実施形態39]レトロウイルスベクターがマウスレトロウイルス又はその誘導体である、実施形態38に記載の発現ベクター。
[実施形態40]レトロウイルスベクターがトリレトロウイルス又はその誘導体である、実施形態38に記載の発現ベクター。
[実施形態41]実施形態35~40のいずれかに記載の発現ベクターを含む宿主細胞。[実施形態42]以下:
(i)実施形態41に記載の宿主細胞を細胞培養培地において培養するステップ;及び
(ii)実施形態1~25のいずれかに記載のポリペプチドを発現させるステップ
を含む方法。
[実施形態43]さらに
(iii)細胞培養培地から実施形態1~25のいずれかに記載のポリペプチドを精製するステップ
を含む、実施形態42に記載の方法。
[実施形態44]実施形態1~25のいずれかに記載のポリペプチド、実施形態26~34のいずれかに記載のポリヌクレオチド、実施形態35~40のいずれかに記載の発現ベクター、又は実施形態41に記載の宿主細胞を含む組成物。
[実施形態45]実施形態44に記載の組成物及び薬学的に許容される担体を含む医薬組成物。
[実施形態46]薬学的に許容される担体が、コロイド分散系又は標的化リポソームである、実施形態45に記載の医薬組成物。
[実施形態47]組成物が 固体又は液体形態での投与用に製剤化される、実施形態45又は46に記載の医薬組成物。
[実施形態48]組成物が、動脈内、脳内、病変内、筋内、鼻腔内、眼内、腹腔内、肺内、直腸内、髄腔内、膣内、静脈内、脳室内、経口、非経口、皮下、又は局所的の投与用に製剤化される、実施形態45~47のいずれかに記載の医薬組成物。
[実施形態49]組成物が、水性懸濁液若しくは溶液、非水性懸濁液若しくは溶液、滅菌溶液、錠剤、ボーラス、粉末、顆粒、ペースト、クリーム、軟膏、点眼薬、局所噴霧剤、ペッサリー、泡状物、エアゾール、リポソーム製剤、又は固形粒子の形態である、実施形態45~48のいずれかに記載の医薬組成物。
[実施形態50]組成物が持続投与される、実施形態45~49のいずれかに記載の医薬組成物。
[実施形態51]神経成長因子(NGF)の欠損及び/又は欠陥に関連する疾患又は傷害を処置する方法であって、実施形態1~25のいずれかに記載のポリペプチド、実施形態26~34のいずれかに記載のポリヌクレオチド、実施形態44に記載の組成物、又は実施形態45~50のいずれかに記載の医薬組成物の治療上有効量をその必要がある対象に投与することを含む方法。
[実施形態52]上記疾患又は障害を処置するための追加の薬剤及び/又は治療を対象に投与することをさらに含む、実施形態51に記載の方法。
[実施形態53]上記疾患又は障害が神経障害である、実施形態51又は52に記載の方法。
[実施形態54]神経障害が、筋萎縮性側索硬化症(ルー・ゲーリック病)、アルツハイマー病、ベル麻痺、認知症、ダウン症候群、癲癇、ハンチントン舞踏病、メニエール病、多発性硬化症、神経難聴、卒中、低酸素性虚血性脳症、脳性まひ、麻痺、パーキンソン病、末梢神経障害、視神経障害又は脊髄性筋萎縮症である、実施形態53に記載の方法。
[実施形態55]神経障害が末梢神経障害であり、末梢神経障害が多発神経障害又は単神経障害である、実施形態54に記載の方法。
[実施形態56]神経障害が視神経障害であり、視神経障害が、前眼部若しくは後眼部変性疾患、眼表面の慢性アレルギー性炎症性障害、外傷性視神経障害、緑内障、神経栄養性角膜症、単純ヘルペス角膜炎、又は角膜治癒である、実施形態54に記載の方法。
[実施形態57]神経障害が、中央ニューロン、末梢ニューロン、運動ニューロン若しくは感覚ニューロンの壊死若しくは欠損、外傷、腎機能障害、損傷、手術、虚血、感染、代謝性疾患、栄養不足、悪性腫瘍、毒性物質、又は化学療法により引き起こされる、実施形態53~56のいずれかに記載の方法。
[実施形態58]対象が哺乳動物である、実施形態51~57のいずれかに記載の方法。[実施形態59]その必要がある対象においてニューロンの成長及び/又は増殖を促進する方法であって、実施形態1~25のいずれかに記載のポリペプチド、実施形態44に記載の組成物、又は実施形態45~50のいずれかに記載の医薬組成物の有効量を対象に投与することを含む方法。
[実施形態60]対象が哺乳動物である、実施形態59に記載の方法。
SEQUENCE LISTING
<110> VIVIBABA, INC.
<120> COMPOSITIONS AND METHODS FOR RECOMBINANT NERVE GROWTH FACTOR
<150> US62/457,499
<151> 2017-02-10
<160> 20
<170> PatentIn version 3.5
<210> 1
<211> 810
<212> DNA
<213> Homo sapiens
<400> 1
atgtccatgt tgttctacac tctgatcaca gcttttctga tcggcataca ggcggaacca 60
cactcagaga gcaatgtccc tgcaggacac accatccccc aagcccactg gactaaactt 120
cagcattccc ttgacactgc ccttcgcaga gcccgcagcg ccccggcagc ggcgatagct 180
gcacgcgtgg cggggcagac ccgcaacatt actgtggacc ccaggctgtt taaaaagcgg 240
cgactccgtt caccccgtgt gctgtttagc acccagcctc cccgtgaagc tgcagacact 300
caggatctgg acttcgaggt cggtggtgct gcccccttca acaggactca caggagcaag 360
cggtcatcat cccatcccat cttccacagg ggcgaattct cggtgtgtga cagtgtcagc 420
gtgtgggttg gggataagac caccgccaca gacatcaagg gcaaggaggt gatggtgttg 480
ggagaggtga acattaacaa cagtgtattc aaacagtact tttttgagac caagtgccgg 540
gacccaaatc ccgttgacag cgggtgccgg ggcattgact caaagcactg gaactcatat 600
tgtaccacga ctcacacctt tgtcaaggcg ctgaccatgg atggcaagca ggctgcctgg 660
cggtttatcc ggatagatac ggcctgtgtg tgtgtgctca gcaggaaggc tgtgagaaga 720
gcctctagct cttccaaggc tccacccccc tcactcccat ctcctagtag gctccccgga 780
ccatccgaca cgcctattct gccccagtag 810
<210> 2
<211> 269
<212> PRT
<213> Homo sapiens
<400> 2
Met Ser Met Leu Phe Tyr Thr Leu Ile Thr Ala Phe Leu Ile Gly Ile
1 5 10 15
Gln Ala Glu Pro His Ser Glu Ser Asn Val Pro Ala Gly His Thr Ile
20 25 30
Pro Gln Ala His Trp Thr Lys Leu Gln His Ser Leu Asp Thr Ala Leu
35 40 45
Arg Arg Ala Arg Ser Ala Pro Ala Ala Ala Ile Ala Ala Arg Val Ala
50 55 60
Gly Gln Thr Arg Asn Ile Thr Val Asp Pro Arg Leu Phe Lys Lys Arg
65 70 75 80
Arg Leu Arg Ser Pro Arg Val Leu Phe Ser Thr Gln Pro Pro Arg Glu
85 90 95
Ala Ala Asp Thr Gln Asp Leu Asp Phe Glu Val Gly Gly Ala Ala Pro
100 105 110
Phe Asn Arg Thr His Arg Ser Lys Arg Ser Ser Ser His Pro Ile Phe
115 120 125
His Arg Gly Glu Phe Ser Val Cys Asp Ser Val Ser Val Trp Val Gly
130 135 140
Asp Lys Thr Thr Ala Thr Asp Ile Lys Gly Lys Glu Val Met Val Leu
145 150 155 160
Gly Glu Val Asn Ile Asn Asn Ser Val Phe Lys Gln Tyr Phe Phe Glu
165 170 175
Thr Lys Cys Arg Asp Pro Asn Pro Val Asp Ser Gly Cys Arg Gly Ile
180 185 190
Asp Ser Lys His Trp Asn Ser Tyr Cys Thr Thr Thr His Thr Phe Val
195 200 205
Lys Ala Leu Thr Met Asp Gly Lys Gln Ala Ala Trp Arg Phe Ile Arg
210 215 220
Ile Asp Thr Ala Cys Val Cys Val Leu Ser Arg Lys Ala Val Arg Arg
225 230 235 240
Ala Ser Ser Ser Ser Lys Ala Pro Pro Pro Ser Leu Pro Ser Pro Ser
245 250 255
Arg Leu Pro Gly Pro Ser Asp Thr Pro Ile Leu Pro Gln
260 265
<210> 3
<211> 148
<212> PRT
<213> Homo sapiens
<400> 3
Ser Ser Ser His Pro Ile Phe His Arg Gly Glu Phe Ser Val Cys Asp
1 5 10 15
Ser Val Ser Val Trp Val Gly Asp Lys Thr Thr Ala Thr Asp Ile Lys
20 25 30
Gly Lys Glu Val Met Val Leu Gly Glu Val Asn Ile Asn Asn Ser Val
35 40 45
Phe Lys Gln Tyr Phe Phe Glu Thr Lys Cys Arg Asp Pro Asn Pro Val
50 55 60
Asp Ser Gly Cys Arg Gly Ile Asp Ser Lys His Trp Asn Ser Tyr Cys
65 70 75 80
Thr Thr Thr His Thr Phe Val Lys Ala Leu Thr Met Asp Gly Lys Gln
85 90 95
Ala Ala Trp Arg Phe Ile Arg Ile Asp Thr Ala Cys Val Cys Val Leu
100 105 110
Ser Arg Lys Ala Val Arg Arg Ala Ser Ser Ser Ser Lys Ala Pro Pro
115 120 125
Pro Ser Leu Pro Ser Pro Ser Arg Leu Pro Gly Pro Ser Asp Thr Pro
130 135 140
Ile Leu Pro Gln
145
<210> 4
<211> 1052
<212> DNA
<213> Homo sapiens
<400> 4
agagagcgct gggagccgga ggggagcgca gcgagttttg gccagtggtc gtgcagtcca 60
aggggctgga tggcatgctg gacccaagct cagctcagcg tccggaccca ataacagttt 120
taccaaggga gcagctttct atcctggcca cactgaggtg catagcgtaa tgtccatgtt 180
gttctacact ctgatcacag cttttctgat cggcatacag gcggaaccac actcagagag 240
caatgtccct gcaggacaca ccatccccca agcccactgg actaaacttc agcattccct 300
tgacactgcc cttcgcagag cccgcagcgc cccggcagcg gcgatagctg cacgcgtggc 360
ggggcagacc cgcaacatta ctgtggaccc caggctgttt aaaaagcggc gactccgttc 420
accccgtgtg ctgtttagca cccagcctcc ccgtgaagct gcagacactc aggatctgga 480
cttcgaggtc ggtggtgctg cccccttcaa caggactcac aggagcaagc ggtcatcatc 540
ccatcccatc ttccacaggg gcgaattctc ggtgtgtgac agtgtcagcg tgtgggttgg 600
ggataagacc accgccacag acatcaaggg caaggaggtg atggtgttgg gagaggtgaa 660
cattaacaac agtgtattca aacagtactt ttttgagacc aagtgccggg acccaaatcc 720
cgttgacagc gggtgccggg gcattgactc aaagcactgg aactcatatt gtaccacgac 780
tcacaccttt gtcaaggcgc tgaccatgga tggcaagcag gctgcctggc ggtttatccg 840
gatagatacg gcctgtgtgt gtgtgctcag caggaaggct gtgagaagag cctgacctgc 900
cgacacgctc cctccccctg ccccttctac actctcctgg gcccctccct acctcaacct 960
gtaaattatt ttaaattata aggactgcat ggtaatttat agtttataca gttttaaaga 1020
atcattattt attaaatttt tggaagcata aa 1052
<210> 5
<211> 241
<212> PRT
<213> Homo sapiens
<400> 5
Met Ser Met Leu Phe Tyr Thr Leu Ile Thr Ala Phe Leu Ile Gly Ile
1 5 10 15
Gln Ala Glu Pro His Ser Glu Ser Asn Val Pro Ala Gly His Thr Ile
20 25 30
Pro Gln Ala His Trp Thr Lys Leu Gln His Ser Leu Asp Thr Ala Leu
35 40 45
Arg Arg Ala Arg Ser Ala Pro Ala Ala Ala Ile Ala Ala Arg Val Ala
50 55 60
Gly Gln Thr Arg Asn Ile Thr Val Asp Pro Arg Leu Phe Lys Lys Arg
65 70 75 80
Arg Leu Arg Ser Pro Arg Val Leu Phe Ser Thr Gln Pro Pro Arg Glu
85 90 95
Ala Ala Asp Thr Gln Asp Leu Asp Phe Glu Val Gly Gly Ala Ala Pro
100 105 110
Phe Asn Arg Thr His Arg Ser Lys Arg Ser Ser Ser His Pro Ile Phe
115 120 125
His Arg Gly Glu Phe Ser Val Cys Asp Ser Val Ser Val Trp Val Gly
130 135 140
Asp Lys Thr Thr Ala Thr Asp Ile Lys Gly Lys Glu Val Met Val Leu
145 150 155 160
Gly Glu Val Asn Ile Asn Asn Ser Val Phe Lys Gln Tyr Phe Phe Glu
165 170 175
Thr Lys Cys Arg Asp Pro Asn Pro Val Asp Ser Gly Cys Arg Gly Ile
180 185 190
Asp Ser Lys His Trp Asn Ser Tyr Cys Thr Thr Thr His Thr Phe Val
195 200 205
Lys Ala Leu Thr Met Asp Gly Lys Gln Ala Ala Trp Arg Phe Ile Arg
210 215 220
Ile Asp Thr Ala Cys Val Cys Val Leu Ser Arg Lys Ala Val Arg Arg
225 230 235 240
Ala
<210> 6
<211> 1196
<212> DNA
<213> Mus musculus
<400> 6
cagcacggca gagagcgcct ggagccggag gggagcgcat cgagtgactt tggagctggc 60
cttatatttg gatctcccgg gcagcttttt ggaaactcct agtgaacatg ctgtgcctca 120
agccagtgaa attaggctcc ctggaggtgg gacacgggca gcatggtgga gttttggcct 180
gtggtcgtgc agtccagggg gctggatggc atgctggacc caagctcacc tcagtgtctg 240
ggcccaataa aggttttgcc aaggacgcag ctttctatac tggccgcagt gaggtgcata 300
gcgtaatgtc catgttgttc tacactctga tcactgcgtt tttgatcggc gtacaggcag 360
aaccgtacac agatagcaat gtcccagaag gagactctgt ccctgaagcc cactggacta 420
aacttcagca ttcccttgac acagccctcc gcagagcccg cagtgcccct actgcaccaa 480
tagctgcccg agtgacaggg cagacccgca acatcactgt agaccccaga ctgtttaaga 540
aacggagact ccactcaccc cgtgtgctgt tcagcaccca gcctccaccc acctcttcag 600
acactctgga tctagacttc caggcccatg gtacaatccc tttcaacagg actcaccgga 660
gcaagcgctc atccacccac ccagtcttcc acatggggga gttctcagtg tgtgacagtg 720
tcagtgtgtg ggttggagat aagaccacag ccacagacat caagggcaag gaggtgacag 780
tgctggccga ggtgaacatt aacaacagtg tattcagaca gtactttttt gagaccaagt 840
gccgagcctc caatcctgtt gagagtgggt gccggggcat cgactccaaa cactggaact 900
catactgcac cacgactcac accttcgtca aggcgttgac aacagatgag aagcaggctg 960
cctggaggtt catccggata gacacagcct gtgtgtgtgt gctcagcagg aaggctacaa 1020
gaagaggctg acttgcctgc agcccccttc cccacctgcc ccctccacac tctcctgggc 1080
ccctccctac ctcagcctgt aaattatttt aaattataag gactgcatga taatttatcg 1140
tttatacaat tttaaagaca ttatttatta aattttcaaa gcatcctgta taccga 1196
<210> 7
<211> 307
<212> PRT
<213> Mus musculus
<400> 7
Met Leu Cys Leu Lys Pro Val Lys Leu Gly Ser Leu Glu Val Gly His
1 5 10 15
Gly Gln His Gly Gly Val Leu Ala Cys Gly Arg Ala Val Gln Gly Ala
20 25 30
Gly Trp His Ala Gly Pro Lys Leu Thr Ser Val Ser Gly Pro Asn Lys
35 40 45
Gly Phe Ala Lys Asp Ala Ala Phe Tyr Thr Gly Arg Ser Glu Val His
50 55 60
Ser Val Met Ser Met Leu Phe Tyr Thr Leu Ile Thr Ala Phe Leu Ile
65 70 75 80
Gly Val Gln Ala Glu Pro Tyr Thr Asp Ser Asn Val Pro Glu Gly Asp
85 90 95
Ser Val Pro Glu Ala His Trp Thr Lys Leu Gln His Ser Leu Asp Thr
100 105 110
Ala Leu Arg Arg Ala Arg Ser Ala Pro Thr Ala Pro Ile Ala Ala Arg
115 120 125
Val Thr Gly Gln Thr Arg Asn Ile Thr Val Asp Pro Arg Leu Phe Lys
130 135 140
Lys Arg Arg Leu His Ser Pro Arg Val Leu Phe Ser Thr Gln Pro Pro
145 150 155 160
Pro Thr Ser Ser Asp Thr Leu Asp Leu Asp Phe Gln Ala His Gly Thr
165 170 175
Ile Pro Phe Asn Arg Thr His Arg Ser Lys Arg Ser Ser Thr His Pro
180 185 190
Val Phe His Met Gly Glu Phe Ser Val Cys Asp Ser Val Ser Val Trp
195 200 205
Val Gly Asp Lys Thr Thr Ala Thr Asp Ile Lys Gly Lys Glu Val Thr
210 215 220
Val Leu Ala Glu Val Asn Ile Asn Asn Ser Val Phe Arg Gln Tyr Phe
225 230 235 240
Phe Glu Thr Lys Cys Arg Ala Ser Asn Pro Val Glu Ser Gly Cys Arg
245 250 255
Gly Ile Asp Ser Lys His Trp Asn Ser Tyr Cys Thr Thr Thr His Thr
260 265 270
Phe Val Lys Ala Leu Thr Thr Asp Glu Lys Gln Ala Ala Trp Arg Phe
275 280 285
Ile Arg Ile Asp Thr Ala Cys Val Cys Val Leu Ser Arg Lys Ala Thr
290 295 300
Arg Arg Gly
305
<210> 8
<211> 1069
<212> DNA
<213> Mus musculus
<400> 8
cagcacggca gagagcgcct ggagccggag gggagcgcat cgagttttgg cctgtggtcg 60
tgcagtccag ggggctggat ggcatgctgg acccaagctc acctcagtgt ctgggcccaa 120
taaaggtttt gccaaggacg cagctttcta tactggccgc agtgaggtgc atagcgtaat 180
gtccatgttg ttctacactc tgatcactgc gtttttgatc ggcgtacagg cagaaccgta 240
cacagatagc aatgtcccag aaggagactc tgtccctgaa gcccactgga ctaaacttca 300
gcattccctt gacacagccc tccgcagagc ccgcagtgcc cctactgcac caatagctgc 360
ccgagtgaca gggcagaccc gcaacatcac tgtagacccc agactgttta agaaacggag 420
actccactca ccccgtgtgc tgttcagcac ccagcctcca cccacctctt cagacactct 480
ggatctagac ttccaggccc atggtacaat ccctttcaac aggactcacc ggagcaagcg 540
ctcatccacc cacccagtct tccacatggg ggagttctca gtgtgtgaca gtgtcagtgt 600
gtgggttgga gataagacca cagccacaga catcaagggc aaggaggtga cagtgctggc 660
cgaggtgaac attaacaaca gtgtattcag acagtacttt tttgagacca agtgccgagc 720
ctccaatcct gttgagagtg ggtgccgggg catcgactcc aaacactgga actcatactg 780
caccacgact cacaccttcg tcaaggcgtt gacaacagat gagaagcagg ctgcctggag 840
gttcatccgg atagacacag cctgtgtgtg tgtgctcagc aggaaggcta caagaagagg 900
ctgacttgcc tgcagccccc ttccccacct gccccctcca cactctcctg ggcccctccc 960
tacctcagcc tgtaaattat tttaaattat aaggactgca tgataattta tcgtttatac 1020
aattttaaag acattattta ttaaattttc aaagcatcct gtataccga 1069
<210> 9
<211> 241
<212> PRT
<213> Mus musculus
<400> 9
Met Ser Met Leu Phe Tyr Thr Leu Ile Thr Ala Phe Leu Ile Gly Val
1 5 10 15
Gln Ala Glu Pro Tyr Thr Asp Ser Asn Val Pro Glu Gly Asp Ser Val
20 25 30
Pro Glu Ala His Trp Thr Lys Leu Gln His Ser Leu Asp Thr Ala Leu
35 40 45
Arg Arg Ala Arg Ser Ala Pro Thr Ala Pro Ile Ala Ala Arg Val Thr
50 55 60
Gly Gln Thr Arg Asn Ile Thr Val Asp Pro Arg Leu Phe Lys Lys Arg
65 70 75 80
Arg Leu His Ser Pro Arg Val Leu Phe Ser Thr Gln Pro Pro Pro Thr
85 90 95
Ser Ser Asp Thr Leu Asp Leu Asp Phe Gln Ala His Gly Thr Ile Pro
100 105 110
Phe Asn Arg Thr His Arg Ser Lys Arg Ser Ser Thr His Pro Val Phe
115 120 125
His Met Gly Glu Phe Ser Val Cys Asp Ser Val Ser Val Trp Val Gly
130 135 140
Asp Lys Thr Thr Ala Thr Asp Ile Lys Gly Lys Glu Val Thr Val Leu
145 150 155 160
Ala Glu Val Asn Ile Asn Asn Ser Val Phe Arg Gln Tyr Phe Phe Glu
165 170 175
Thr Lys Cys Arg Ala Ser Asn Pro Val Glu Ser Gly Cys Arg Gly Ile
180 185 190
Asp Ser Lys His Trp Asn Ser Tyr Cys Thr Thr Thr His Thr Phe Val
195 200 205
Lys Ala Leu Thr Thr Asp Glu Lys Gln Ala Ala Trp Arg Phe Ile Arg
210 215 220
Ile Asp Thr Ala Cys Val Cys Val Leu Ser Arg Lys Ala Thr Arg Arg
225 230 235 240
Gly
<210> 10
<211> 151
<212> PRT
<213> Homo sapiens
<400> 10
Met Gly Gly Thr Trp Ala Ser Lys Glu Pro Leu Arg Pro Arg Cys Arg
1 5 10 15
Pro Ile Asn Ala Thr Leu Ala Val Glu Lys Glu Gly Cys Pro Val Cys
20 25 30
Ile Thr Val Asn Thr Thr Ile Cys Ala Gly Tyr Cys Pro Thr Met Thr
35 40 45
Arg Val Leu Gln Gly Val Leu Pro Ala Leu Pro Gln Val Val Cys Asn
50 55 60
Tyr Arg Asp Val Arg Phe Glu Ser Ile Arg Leu Pro Gly Cys Pro Arg
65 70 75 80
Gly Val Asn Pro Val Val Ser Tyr Ala Val Ala Leu Ser Cys Gln Cys
85 90 95
Ala Leu Cys Arg Arg Ser Thr Thr Asp Cys Gly Gly Pro Lys Asp His
100 105 110
Pro Leu Thr Cys Asp Asp Pro Arg Phe Gln Ala Ser Ser Ser Ser Lys
115 120 125
Ala Pro Pro Pro Ser Leu Pro Ser Pro Ser Arg Leu Pro Gly Pro Ser
130 135 140
Asp Thr Pro Ile Leu Pro Gln
145 150
<210> 11
<211> 163
<212> PRT
<213> Homo sapiens
<400> 11
Met Ser Lys Gly Leu Leu Leu Leu Leu Leu Leu Ser Met Gly Gly Thr
1 5 10 15
Trp Ala Ser Lys Glu Pro Leu Arg Pro Arg Cys Arg Pro Ile Asn Ala
20 25 30
Thr Leu Ala Val Glu Lys Glu Gly Cys Pro Val Cys Ile Thr Val Asn
35 40 45
Thr Thr Ile Cys Ala Gly Tyr Cys Pro Thr Met Thr Arg Val Leu Gln
50 55 60
Gly Val Leu Pro Ala Leu Pro Gln Val Val Cys Asn Tyr Arg Asp Val
65 70 75 80
Arg Phe Glu Ser Ile Arg Leu Pro Gly Cys Pro Arg Gly Val Asn Pro
85 90 95
Val Val Ser Tyr Ala Val Ala Leu Ser Cys Gln Cys Ala Leu Cys Arg
100 105 110
Arg Ser Thr Thr Asp Cys Gly Gly Pro Lys Asp His Pro Leu Thr Cys
115 120 125
Asp Asp Pro Arg Phe Gln Ala Ser Ser Ser Ser Lys Ala Pro Pro Pro
130 135 140
Ser Leu Pro Ser Pro Ser Arg Leu Pro Gly Pro Ser Asp Thr Pro Ile
145 150 155 160
Leu Pro Gln
<210> 12
<211> 165
<212> PRT
<213> Homo sapiens
<400> 12
Met Glu Met Phe Gln Gly Leu Leu Leu Leu Leu Leu Leu Ser Met Gly
1 5 10 15
Gly Thr Trp Ala Ser Lys Glu Pro Leu Arg Pro Arg Cys Arg Pro Ile
20 25 30
Asn Ala Thr Leu Ala Val Glu Lys Glu Gly Cys Pro Val Cys Ile Thr
35 40 45
Val Asn Thr Thr Ile Cys Ala Gly Tyr Cys Pro Thr Met Thr Arg Val
50 55 60
Leu Gln Gly Val Leu Pro Ala Leu Pro Gln Val Val Cys Asn Tyr Arg
65 70 75 80
Asp Val Arg Phe Glu Ser Ile Arg Leu Pro Gly Cys Pro Arg Gly Val
85 90 95
Asn Pro Val Val Ser Tyr Ala Val Ala Leu Ser Cys Gln Cys Ala Leu
100 105 110
Cys Arg Arg Ser Thr Thr Asp Cys Gly Gly Pro Lys Asp His Pro Leu
115 120 125
Thr Cys Asp Asp Pro Arg Phe Gln Asp Ser Ser Ser Ser Lys Ala Pro
130 135 140
Pro Pro Ser Leu Pro Ser Pro Ser Arg Leu Pro Gly Pro Ser Asp Thr
145 150 155 160
Pro Ile Leu Pro Gln
165
<210> 13
<211> 28
<212> PRT
<213> Homo sapiens
<400> 13
Ser Ser Ser Ser Lys Ala Pro Pro Pro Ser Leu Pro Ser Pro Ser Arg
1 5 10 15
Leu Pro Gly Pro Ser Asp Thr Pro Ile Leu Pro Gln
20 25
<210> 14
<211> 37
<212> DNA
<213> Artificial Sequence
<220>
<223> Description of Artificial Sequence: Synthetic
primer
<400> 14
atctcgagca ccatgtccat gttgttctac actctga 37
<210> 15
<211> 39
<212> DNA
<213> Artificial Sequence
<220>
<223> Description of Artificial Sequence: Synthetic
primer
<400> 15
tggagccttg gaagagctag aggctcttct cacagcctt 39
<210> 16
<211> 39
<212> DNA
<213> Artificial Sequence
<220>
<223> Description of Artificial Sequence: Synthetic
primer
<400> 16
aaggctgtga gaagagcctc tagctcttcc aaggctcca 39
<210> 17
<211> 30
<212> DNA
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<220>
<223> Description of Artificial Sequence: Synthetic
primer
<400> 17
tttgcggccg cttactactg gggcagaata 30
<210> 18
<211> 6
<212> PRT
<213> Artificial Sequence
<220>
<223> Description of Artificial Sequence: Synthetic
6xHis tag
<400> 18
His His His His His His
1 5
<210> 19
<211> 7
<212> PRT
<213> Homo sapiens
<400> 19
Ser Ser Ser His Pro Ile Phe
1 5
<210> 20
<211> 6
<212> PRT
<213> Homo sapiens
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Tyr Ala Glu His Lys Ser
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Claims (31)
- 以下:
(i)生物学的活性を有する神経成長因子(NGF)ポリペプチド配列を含む第1の部分;
(ii)ヒトの血流中で、NGFポリペプチド配列の半減期を増大させ、生物学的活性を維持する追加のポリペプチドを含む第2の部分であって、配列番号13と少なくとも95%、99%又はそれ以上同一であるアミノ酸配列を含む、第2の部分;及び
(iii)ヒトの血流中で、NGFポリペプチド配列の機能及び/若しくは安定性を増大する融合ドメインを含む第3の部分
を含むポリペプチドであって、NGFポリペプチド配列単独のin vivo半減期の少なくとも2.5倍のin vivo半減期を有し、第3の部分における融合ドメインが、ポリヒスチジン、Glu-Glu、グルタチオンSトランスフェラーゼ(GST)、チオレドキシン、プロテインA、プロテインG、マルトース結合タンパク質(MBP)、又はヒト血清アルブミンから選択される、ポリペプチド。 - 第1の部分が全長NGFポリペプチド配列を含む、請求項1に記載のポリペプチド。
- 第1の部分がNGFの生物学的活性を有する断片を含む、請求項1に記載のポリペプチド。
- 第1の部分がヒトNGF配列を含む、請求項1~3のいずれか1項に記載のポリペプチド。
- ヒトNGF配列が配列番号5と少なくとも95%同一である、請求項4に記載のポリペプチド。
- 第1の部分がNGFの少なくとも1つの結合パートナーと結合可能なものであり、場合によりNGFの少なくとも1つの結合パートナーがトロポミオシン受容体キナーゼA(TrkA)又は低アフィニティNGF受容体(LNGFR/p75NTR)である、請求項3に記載のポリペプチド。
- 第1の部分が配列番号5の122位から241位のアミノ酸残基を含む、請求項6に記載のポリペプチド。
- 第2の部分が、生物学的活性を有するヒト絨毛性ゴナドトロピン(HCG)を含む、請求項1~7のいずれか1項に記載のポリペプチド。
- ヒト絨毛性ゴナドトロピン(HCG)が配列番号10~12から選択されるアミノ酸配列を含む、請求項8に記載のポリペプチド。
- 第2の部分がHCGのカルボキシ末端部分(CTP)を含む、請求項1~9のいずれか1項に記載のポリペプチド。
- 第1の部分が第2の部分のN末端に融合している、請求項1~10のいずれか1項に記載のポリペプチド。
- 配列番号2又は3と少なくとも90%、95%、99%又は100%同一のアミノ酸配列を含む、請求項1~11のいずれか1項に記載のポリペプチド。
- 請求項1~12のいずれか1項に記載のポリペプチドをコードするポリヌクレオチド。
- 配列番号1と少なくとも95%同一である核酸配列を含む、請求項13に記載のポリヌクレオチド。
- 配列番号1の核酸配列を含む、請求項13に記載のポリヌクレオチド。
- 請求項1~12のいずれか1項に記載のポリペプチドを発現可能な発現ベクター、及び/又は請求項13~15のいずれか1項に記載のポリヌクレオチドを含む発現ベクター。
- 請求項16に記載の発現ベクターを含む宿主細胞。
- 以下:
(i)請求項17に記載の宿主細胞を細胞培養培地において培養するステップ;及び
(ii)請求項1~12のいずれか1項に記載のポリペプチドを発現させるステップ
を含む方法。 - さらに
(iii)細胞培養培地から請求項1~12のいずれか1項に記載のポリペプチドを精製するステップ
を含む、請求項18に記載の方法。 - 請求項1~12のいずれか1項に記載のポリペプチド、請求項13~15のいずれか1項に記載のポリヌクレオチド、請求項16に記載の発現ベクター、又は請求項17に記載の宿主細胞を含む組成物。
- 請求項20に記載の組成物及び薬学的に許容される担体を含む医薬組成物。
- 神経成長因子(NGF)の欠損及び/又は欠陥に関連する疾患又は障害の処置に使用するための医薬組成物であって、請求項1~12のいずれか1項に記載のポリペプチド、請求項13~15のいずれか1項に記載のポリヌクレオチド、請求項20に記載の組成物、又は請求項21に記載の医薬組成物の治療上有効量を含む医薬組成物。
- 上記疾患又は障害を処置するための追加の薬剤及び/又は治療がさらに対象に投与される、請求項22に記載の医薬組成物。
- 上記疾患又は障害が神経障害である、請求項22又は23に記載の医薬組成物。
- 神経障害が、筋萎縮性側索硬化症(ルー・ゲーリック病)、アルツハイマー病、ベル麻痺、認知症、ダウン症候群、癲癇、ハンチントン舞踏病、メニエール病、多発性硬化症、神経難聴、卒中、低酸素性虚血性脳症、脳性まひ、麻痺、パーキンソン病、末梢神経障害、視神経障害又は脊髄性筋萎縮症である、請求項24に記載の医薬組成物。
- 神経障害が末梢神経障害であり、末梢神経障害が多発神経障害又は単神経障害である、請求項25に記載の医薬組成物。
- 神経障害が視神経障害であり、視神経障害が、前眼部若しくは後眼部変性疾患、眼表面の慢性アレルギー性炎症性障害、外傷性視神経障害、緑内障、神経栄養性角膜症、単純ヘルペス角膜炎、又は角膜治癒である、請求項25に記載の医薬組成物。
- 神経障害が、中央ニューロン、末梢ニューロン、運動ニューロン若しくは感覚ニューロンの壊死若しくは欠損、外傷、腎機能障害、損傷、手術、虚血、感染、代謝性疾患、栄養不足、悪性腫瘍、毒性物質、又は化学療法により引き起こされる、請求項24~27のいずれか1項に記載の医薬組成物。
- 対象が哺乳動物である、請求項22~28のいずれか1項に記載の医薬組成物。
- その必要がある対象においてニューロンの成長及び/又は増殖を促進するための医薬組成物であって、請求項1~12のいずれか1項に記載のポリペプチド、請求項20に記載の組成物、又は請求項21に記載の医薬組成物の有効量を含む医薬組成物。
- 対象が哺乳動物である、請求項30に記載の医薬組成物。
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JP2016053084A (ja) | 2006-02-03 | 2016-04-14 | オプコ バイオロジクス リミテッド | 長期間作用型ポリペプチド並びにその製造方法及び投与方法。 |
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