JP6753945B2 - 抗人pd−l1人源化単クローン抗体及び応用 - Google Patents
抗人pd−l1人源化単クローン抗体及び応用 Download PDFInfo
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- C07K2317/00—Immunoglobulins specific features
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- C07K2317/56—Immunoglobulins specific features characterized by immunoglobulin fragments variable (Fv) region, i.e. VH and/or VL
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Description
(1)重鎖CDR1、CDR2、CDR3の序列は、其々SEQ ID NO:18−20の表示で、軽鎖CDR1、CDR2、CDR3の序列は、其々SEQ ID NO:34−36の表示で、または上記の序列結合と同様の抗原表位置の序列である。
(2)重鎖CDR1、CDR2、CDR3の序列は其々例えSEQ ID NO:18−20の表示で、軽鎖CDR1、CDR2、CDR3の序列は、其々SEQ ID NO:46、35と36の表示で、または上記の序列結合と同様の抗原表位置の序列である。
(3)重鎖CDR1、CDR2、CDR3の序列は、其々SEQ ID NO:18−20の表示で、軽鎖CDR1、CDR2、CDR3の序列は、其々SEQ ID NO:52、35と36の表示で、または上記の序列結合と同様の抗原表位置の序列である。
(1)SEQ ID NO:18−20;
(2)前述(1)と比較すると下記二者中の最低一者の序列を満足:a)同じの抗原表の位置を結合;b)同一性70%、80%、85%、90%或は97%以上である。
(1)SEQ ID NO:34−36、
(2)SEQ ID NO:46、35、及び36、
(3)SEQ ID NO:52、35、及び36、
(4)前述(1)−(3)序列と比較すると下記二者中の最低一者の序列を満足:a)同じの抗原表の位置を結合;b)同一性70%、80%、85%、90%或は97%以上。
1.1動物免疫
経典の免疫時間表を使って、BALB/c小鼠に免疫、免疫源はhPD−L1(人源PD−L1)蛋白(北京義翹神州生物技術有限会社から購入)、動物にhPD−L1を抵抗する抗体を発生させる。具体的な方案は表1の通りである。
融合前に小鼠の骨髄腫SP2/0の状態を調整して、それの生長密度は1.0×106個の細胞を超えない事を保証して、3日間前に終免を行って、終免は尾静脈注射の方式を採用、一日前に飼育細胞を準備して、敷く板数量は2.0×104個細胞/穴である。PEG融合を通じて、脾臓の細胞とSP2/0細胞の数量比は10:1〜5:1の間で、穴ごとに敷く脾臓の細胞の数量は1.0×105個以下である。7日間融合後、上清液を収穫して、培養基を交換する。
A.ELISA結合方法
バッグhPD−L1−Fcは板にある、段差希釈の抗体を入れて、孵化洗浄後、羊抗鼠−HRPも入れて、色が出て、読数から反応曲線をまねて作成して、EC50値を計算する。
B.細胞結合実験
1日前にhPD−L1−Fc過剰発現細胞を検測、培養用の細胞板に敷いて、翌日閉鎖してから段差希釈の抗体を入れて、anti−mouse−EUも入れて、データを読み取って良い。
C.細胞抑制実験
1日前にhPD−L1−Fc過剰発現細胞を検測、培養用の細胞板に敷いて、翌日閉鎖してから段差希釈の抗体を入れて、PD1−Fc−Biotinも入れて、Europium−labeled streptavidinも入れて、データを読み取って良い。
選択された陽性亜クローンハイブリドーマ細胞をSFM培養基に接種して、7日間頃培養後、上清を収集して、遠心で濾してからProtein G精製カラムで精製して、精製抗体を其々ELISA結合活性、ELISA抑制活性、細胞結合活性、細胞抑制活性の検測を行う。スクリーニングして、活性が最高の鼠源抗PD−L1単クローン抗体を収穫して、mouse anti−PD−L1と命名する。
A.ELISA結合活性
バッグhPD−L1−Fcは板にある、段差希釈の抗体を入れて、孵化洗浄後、羊抗鼠−HRPも入れて、色が出て、読数から反応曲線を作成して、結果が図1の通り、EC50値を計算して、それとhPD−L1の結合活性EC50は1.67ng/mLである。
B.ELISA抑制活性
段差希釈の抗体とある程度の濃度のhPD−L1−Fc−Biotinを同時にバッグhPD−L1−Fcの板に入れて、孵化洗浄後SA−HRPも入れて、色が出て、読数から反応曲線を作成して、結果は図2の通り、IC50値を計算して、それの抑制活性IC50は0.86nMである。
C.細胞結合活性
1日前にhPD−L1−Fc過剰発現細胞を検測、培養用の細胞板に敷いて、翌日閉鎖してから段差希釈の抗体を入れて、anti−mouse−EUも入れ、データを読み取って、反応曲線を作成して、結果は図3の通り、計算しました細胞結合活性EC50は30.29ng/mLである。
D.細胞抑制活性
1日前にhPD−L1−Fc過剰発現細胞を検測、培養用の細胞板に敷いて、翌日閉鎖してから段差希釈の抗体を入れて、PD1−Fc−Biotinも入れて、Europium−labeled streptavidinも入れて、データを読み取って、反応曲線を作成して、結果は図4の通り、計算した細胞抑制活性IC50は637.8ng/mLである。
2.1 鼠源抗体遺伝子の獲得
Purelink RNA Micro kitを利用して、mouse anti−PD−L1雑交腫の総RNAを抽出して、PrimeScript TMII 1st Strand cDNA Synthesis Kit逆回転録RNAでcDNAを生産準備する。別々にLeader primerを使って抗体の重鎖と軽鎖の可変区を拡増して、反応システムとPCR条件は其々表2と3の表示である。
スクリーニングして得た鼠源抗体序列を分析して、人の胚系(germline)遺伝子と比較して、KV1−9*01は軽鎖人源化フレーム序列、HV1−46*03は重鎖人源化フレーム序列と確定した。CDR−graftingを通じて、重鎖と軽鎖のCDRを構造序列に並行して、人源化抗体を構築して、人源化抗体可変区の断片を遺伝子合成させる。得たそれの重鎖可変区核酸の序列とアミノ酸の序列は其々SEQ ID NO:5と6の表示、軽鎖可変区核酸の序列とアミノ酸の序列は其々SEQ ID NO:7和8の表示である。
鼠源抗体CDRのDNA序列を分析して、可変区CDR中の突変位点を確定する。プライマーの序列を設計して、突変位点の位置をNNSに設定して、任意のアミノ酸をコードさせる。人源化抗体scFvをテンプレートとして、PCRにscFv抗体庫を拡増し、scFv抗体庫はsfiI酵素の切位点を通じて、バクテリオファージの質粒に構築して、二級抗体庫を構築する。
その後、バクテリオファージの展示を通じて、高く親和力の抗体スクリーニングを行う。具体的な方法は下記の通りである。
A、電転化を通じて、scFvを含む抗体庫のバクテリオファージ質粒を大腸菌TG1に転化して、37℃、220rpm、1hの恢復を経って、補助バクテリオファージ(helper phage)を残りの菌液に入れて、別にアンモニアシリンを入れて、37℃、220rpm、1h2500rpm×5min遠心方法で上清を取り除いて、2×YT−AK培養基で菌泥を吹き、37℃、220rpm一晩置いて培養する。
B.バッグ抗原:バッグ緩衝液でhPD−L1−FCを希釈して、均一に混合してから免疫管に入れて、4℃バッグで一晩置く。
C.再編バクテリオファージの収集:上記の一晩置いた培養菌液は2500rpm×5min遠心して上清10mlを収集して、2ml PEG/NaClを入れて、均一に混合してから氷に30−60minを置いて、10000g×20min遠心して、上清を取り除いて、2×YT培養基でバクテリオファージ庫を溶解する。
D.閉鎖:PBSで免疫管を2回洗浄して、閉鎖液を入れて、室温1hそれに、相同体積の閉鎖液とバクテリオファージ庫を混合して、室温で10−15min閉鎖する。
E.バクテリオファージ庫の孵化:PBSで免疫管を2回洗浄して、閉鎖したバクテリオファージ庫を入れて、37℃の培養箱 2−3h
F.洗脱:100μl のTG1菌液(前日の接種)を10ml 2×YTの中に入れて、37℃、220rpmでA600値0.4−0.5まで培養する。PBSTで免疫管を8回洗浄して、もう一回PBSで免疫管を2回洗浄して、5mlの対数期生長の菌液を入れて、37℃、220rpm、1h
G.OUTPUT:上記の菌液を10−1、10−2まで希釈してから別々に100ulを取って平板に塗り付ける。
H.次回のスクリーニング:200μl helper phageを5mlの洗脱後の菌液に入れて、同時に5μlアンモニアシリンを入れて、37℃、220rpm、1h2500rpm×5min遠心して上清を取り除いて、10ml 2×YT−AKで菌泥を吹き、37℃、220rpm一晩置いて培養する。
ステップB−Hを繰り返す。
A.バッグhPD−L1−FC、4℃一晩置く;
B.PBSTで2回を洗浄して、phage上清を入れて、25℃、1h;
C.PBSTで3回を洗浄して、希釈のanti−M13−biotinAbを入れて、25℃、1h;
D.PBSTで3回を洗浄して、希釈のHRP−streptavidin、25℃、1h;
E.PBSTで3回を洗浄して、予熱したTMBを入れて、25℃、10min、1M H.2SO 4を入れ反応を中止になり、OD450で光熱値を検測する。陽性クローンを選択して、序列の測定に送って、PCRを通じて、重鎖可変区或は軽鎖可変区がそれの対応の人源抗体の恒定区の序列と連接して、拡増した抗体重鎖と軽鎖の全長断片(信号ペプチドが含む)は別々にpcDNA3.1GSにクローンする。
GAGGTGCAGCTGGTGCAGAGCGGCGCCGAGGTGAAGAAACCTGGCGCCTCCGTGAAGGTGAGCTGCAAGGCCTCCGGCTACACCTTCACCAAGTACATCATCCACTGGGTGCGGCAAGCCCCTGGACAGGGACTGGAATGGATGGGCTGGTTCTACCCTGGTTCTGGCAACATCCGGTACAACGAGAAGATCAAGGGCAGGGTGACCATGACCCGGGACACCAGCACCTCCACCGTGTACATGGAGCTGTCCTCCCTGAGGAGCGAGGACACCGCCGTGTATTACTGCGCTAGGCACGGAGAGCTGGGCGGAGGCTACTTCTTCGACTACTGGGGCCAGGGCACAACCGTGACCGTGTCCTCC(SEQ ID NO: 5)
EVQLVQSGAEVKKPGASVKVSCKASGYTFTKYIIHWVRQAPGQGLEWMGWFYPGSGNIRYNEKIKGRVTMTRDTSTSTVYMELSSLRSEDTAVYYCARHGELGGGYFFDYWGQGTTVTVSS(SEQ ID NO: 6)
GATATCCAGCTGACCCAGAGCCCCTCCTTTCTGTCCGCCTCCGTGGGCGACAGGGTGACCATCACCTGCAGGGCCAGCTCCAGCGTGAGCAACATCCACTGGTATCAACAGAAGCCTGGCAAGGCCCCCAAGCCCTGGATCTACGCCACCTCCAACCTGGCCAGCGGCGTGCCTAGCAGGTTCAGCGGTTCTGGCTCCGGCACCGAGTTCACCCTGACCATCTCCTCCCTGCAGCCCGAGGACTTCGCCACCTACTACTGCCAGCAGTGGTCCAGCAACCCCCTGACCTTTGGCCAGGGCACCAAGCTGGAGATCAAGAGG(SEQ ID NO: 7)
DIQLTQSPSFLSASVGDRVTITCRASSSVSNIHWYQQKPGKAPKPWIYATSNLASGVPSRFSGSGSGTEFTLTISSLQPEDFATYYCQQWSSNPLTFGQGTKLEIKR(SEQ ID NO: 8)
GAGGTGCAGCTGGTGCAGAGCGGCGCCGAGGTGAAGAAACCTGGCGCCTCCGTGAAGGTGAGCTGCAAGGCCTCCGGCTACACCTTCACCAAGTACATCATCCACTGGGTGCGGCAAGCCCCTGGACAGGGACTGGAATGGATGGGCTGGTTCTACCCTGGTTCTGGCAACATCCGGTACAACGAGAAGATCAAGGGCAGGGTGACCATGACCCGGGACACCAGCACCTCCACCGTGTACATGGAGCTGTCCTCCCTGAGGAGCGAGGACACCGCCGTGTATTACTGCGCTAGGCACGGAGAGCTGGGCGGAGGCTACTTCTTCGACTACTGGGGCCAGGGCACAACCGTGACCGTGTCCTCC(SEQ ID NO: 5)
EVQLVQSGAEVKKPGASVKVSCKASGYTFTKYIIHWVRQAPGQGLEWMGWFYPGSGNIRYNEKIKGRVTMTRDTSTSTVYMELSSLRSEDTAVYYCARHGELGGGYFFDYWGQGTTVTVSS(SEQ ID NO: 6)
GATATCCAGCTGACCCAGAGCCCCTCCTTTCTGTCCGCCTCCGTGGGCGACAGGGTGACCATCACCTGCAGGGCCAGCTCCAAGACGGGGAACATCCACTGGTATCAACAGAAGCCTGGCAAGGCCCCCAAGCCCTGGATCTACGCCACCTCCAACCTGGCCAGCGGCGTGCCTAGCAGGTTCAGCGGTTCTGGCTCCGGCACCGAGTTCACCCTGACCATCTCCTCCCTGCAGCCCGAGGACTTCGCCTACTACTGCCAGCAGTGGTCCAGCAACCCCCTGACCTTTGGCCAGGGCAC CAAGCTGGAGATCAAGAGG (SEQ ID NO: 43)
DIQLTQSPSFLSASVGDRVTITCRASSKTGNIHWYQQKPGKAPKPWIYATSNLASGVPSRFSGSGSGTEFTLTISSLQPEDFATYYCQQWSSNPLTFGQGTKLEIKR (SEQ ID NO: 45)
GAGGTGCAGCTGGTGCAGAGCGGCGCCGAGGTGAAGAAACCTGGCGCCTCCGTGAAGGTGAGCTGCAAGGCCTCCGGCTACACCTTCACCAAGTACATCATCCACTGGGTGCGGCAAGCCCCTGGACAGGGACTGGAATGGATGGGCTGGTTCTACCCTGGTTCTGGCAACATCCGGTACAACGAGAAGATCAAGGGCAGGGTGACCATGACCCGGGACACCAGCACCTCCACCGTGTACATGGAGCTGTCCTCCCTGAGGAGCGAGGACACCGCCGTGTATTACTGCGCTAGGCACGGAGAGCTGGGCGGAGGCTACTTCTTCGACTACTGGGGCCAGGGCACAACCGTGACCGTGTCCTCC(SEQ ID NO: 5)
EVQLVQSGAEVKKPGASVKVSCKASGYTFTKYIIHWVRQAPGQGLEWMGWFYPGSGNIRYNEKIKGRVTMTRDTSTSTVYMELSSLRSEDTAVYYCARHGELGGGYFFDYWGQGTTVTVSS(SEQ ID NO: 6)
GATATCCAGCTGACCCAGAGCCCCTCCTTTCTGTCCGCCTCCGTGGGCGACAGGGTGACCATCACCTGCAGGGCCAGCTCCGGCGCGTCCAACATCCACTGGTATCAACAGAAGCCTGGCAAGGCCCCCAAGCCCTGGATCTACGCCACCTCCAACCTGGCCAGCGGCGTGCCTAGCAGGTTCAGCGGTTCTGGCTCCGGCACCGAGTTCACCCTGACCATCTCCTCCCTGCAGCCCGAGGACTTCGCCACCTACTACTGCCAGCAGTGGTCCAGCAACCCCCTGACCTTTGGCCAGGGCAC CAAGCTGGAGATCAAGAGG(SEQ ID NO: 49)
DIQLTQSPSFLSASVGDRVTITCRASSGASNIHWYQQKPGKAPKPWIYATSNLASGVPSRFSGSGSGTEFTLTISSLQPEDFATYYCQQWSSNPLTFGQGTKLEIKR(SEQ ID NO: 51)
3株の抗体が全部わりによい特異性を表示しているから、本実施例はただP3.1GS−PD−L1−1−HCとP3.1GS−PD−L1−1−LCをテンプレートとして更に説明する。PCRが全長抗体重鎖断片と軽鎖断片の拡増する事を通じて、人源化抗体の表現質粒を構築する。
Biacoreを利用して実施例四中の細胞株の表現抗体の親和力と結合動力学を分析する。標準アミン偶聯化学とBiacoreから提供した試剤ボックスを利用して、バスタミン経由して、羊抗人IgGをCM5チップと共価連接する。抗体が10μL/minの流速でHBS EP緩衝液の中に流動させて、結合を測定する。結合時間300秒、解離時間1200秒測定結合動力学曲線は図5の通り、計算で取ったka、kdとKD値は表11の通りである。
Claims (12)
- 抗人PD−L1ヒト化単クローン抗体或はその抗原結合部分であって、下記のCDR領域を含み、重鎖CDR1、CDR2、CDR3のアミノ酸配列は、それぞれ配列番号18−20で示され、軽鎖CDR1、CDR2、CDR3のアミノ酸配列は、それぞれ配列番号34−36で示される、抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分。
- 請求項1記載の抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分において、下記の重鎖可変部フレームワーク領域を含み、FR1、FR2、FR3、FR4のアミノ酸配列は、それぞれ配列番号21−24で示される、抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分。
- 請求項2記載の抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分において、重鎖のアミノ酸配列は配列番号10で示される、抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分。
- 請求項1記載の抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分において、前記軽鎖可変部フレームワーク領域を含み、FR1、FR2、FR3、FR4のアミノ酸配列は、それぞれ配列番号37−40で示される、抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分。
- 請求項4記載の抗人PD−L1ヒト化単クローン抗体或はそれの抗原結合部分において、軽鎖のアミノ酸配列は配列番号26で示される、抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分。
- 核酸分子であって、請求項1に記載の抗人PD−L1ヒト化単クローン抗体或はその抗原結合部分をコードできる核酸配列を含む、一種の核酸分子。
- 請求項6記載の核酸分子であって、前記抗人PD−L1ヒト化単クローン抗体或はその抗原結合部分の前記重鎖可変部は、配列番号6のアミノ酸配列を含む、核酸分子。
- 請求項6記載の核酸分子であって、前記抗人PD−L1ヒト化単クローン抗体或はその抗原結合部分の前記軽鎖可変部は、配列番号8のアミノ酸配列を含む、核酸分子。
- ベクターであって、請求項6〜8のいずれか1項記載の核酸分子を含む、ベクター。
- 宿主細胞であって、請求項6〜8のいずれか1項記載の核酸分子、または請求項9記載のベクターを含む、宿主細胞。
- 組成物であって、請求項1〜5のいずれか1項記載の抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分、請求項6〜8記載の核酸分子、請求項9記載のベクター、または請求項10記載の宿主細胞、及び任意選択された薬学で受け入れるキャリヤーまたは造形剤、及び任意選択された他の生物活性物質を含む、組成物。
- 請求項1〜5のいずれか1項の抗人PD−L1ヒト化単クローン抗体またはその抗原結合部分、請求項6〜8記載の核酸分子、請求項9記載のベクター、請求項10記載の宿主細胞、または請求項11記載の組成物を含む、腫瘍、免疫システム関係の病気、微生物またはウイルスが引き起こす感染の予防または治療用の薬物。
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GB201403775D0 (en) | 2014-03-04 | 2014-04-16 | Kymab Ltd | Antibodies, uses & methods |
CN109414500B (zh) * | 2016-06-13 | 2022-02-25 | 奥美药业有限公司 | 治疗和诊断用pd-l1特异性单克隆抗体 |
US9567399B1 (en) | 2016-06-20 | 2017-02-14 | Kymab Limited | Antibodies and immunocytokines |
CN106478819B (zh) * | 2016-10-27 | 2018-12-07 | 常州费洛斯药业科技有限公司 | 一种针对pd-l1的单克隆抗体或抗体片段 |
US11779604B2 (en) | 2016-11-03 | 2023-10-10 | Kymab Limited | Antibodies, combinations comprising antibodies, biomarkers, uses and methods |
CN106978400A (zh) * | 2016-12-13 | 2017-07-25 | 无锡傲锐东源生物科技有限公司 | 抗pd‑l1蛋白单克隆抗体及其用途 |
EP3572429A4 (en) * | 2017-01-23 | 2021-04-07 | Suzhou Alphamab Co., Ltd | POLYPEPTIDE OR COMPOSITE BINDER PD-L1 |
EP3583127A4 (en) * | 2017-02-16 | 2021-02-24 | Ying Zhang | PROGRAMMED ANTI-DEATH ANTI-BODIES - LIGAND 1 AND THEIR THERAPEUTIC USES |
CN108456251A (zh) * | 2017-02-21 | 2018-08-28 | 上海君实生物医药科技股份有限公司 | 抗pd-l1抗体及其应用 |
WO2019129211A1 (en) * | 2017-12-28 | 2019-07-04 | Nanjing Legend Biotech Co., Ltd. | Antibodies and variants thereof against pd-l1 |
CN108250296B (zh) * | 2018-01-17 | 2020-07-07 | 长春金赛药业有限责任公司 | 全人源抗人pd-l1单克隆抗体及其应用 |
WO2019228514A1 (en) | 2018-06-01 | 2019-12-05 | Tayu Huaxia Biotech Medical Group Co., Ltd. | Compositions and uses thereof for treating disease or condition |
CN109232740B (zh) * | 2018-08-20 | 2022-05-10 | 中国科学院微生物研究所 | 一种抗pd-l1抗体及其在抗肿瘤治疗中的应用 |
CN113039207B (zh) * | 2018-11-16 | 2022-10-28 | 南京金斯瑞生物科技有限公司 | 人源化抗人pd-l1单克隆抗体及其制备方法和用途 |
CN109593135B (zh) * | 2018-12-29 | 2021-01-15 | 百奥赛图江苏基因生物技术有限公司 | 抗人pd-l1单克隆抗体及其应用 |
JP7538130B2 (ja) * | 2019-01-23 | 2024-08-21 | タユー ファシャ バイオテック メディカル グループ カンパニー, リミテッド | 抗pd-l1ダイアボディおよびその使用 |
CN109627338B (zh) * | 2019-01-25 | 2022-10-18 | 苏州药明泽康生物科技有限公司 | 一种新型抗人pd-l1抗体及其应用 |
CN109929037B (zh) * | 2019-04-01 | 2023-03-17 | 华博生物医药技术(上海)有限公司 | 针对程序性死亡配体的结合物及其应用 |
CN112679615B (zh) * | 2019-10-17 | 2023-09-22 | 瑞阳(苏州)生物科技有限公司 | 一种融合蛋白 |
CN114685674B (zh) * | 2020-12-29 | 2023-09-29 | 瑞阳(苏州)生物科技有限公司 | 一种抗体融合蛋白及其应用 |
JP2024518641A (ja) * | 2021-05-21 | 2024-05-01 | 天津立博美華基因科技有限責任公司 | 医薬物組合せ及びその使用 |
WO2023274275A1 (zh) * | 2021-07-01 | 2023-01-05 | 天津立博美华基因科技有限责任公司 | 药物组合及其用途 |
CN115873117B (zh) * | 2022-11-11 | 2023-07-18 | 广州国家实验室 | 一种pd-l1单克隆抗体或其抗原结合片段及检测试剂盒 |
WO2024160721A1 (en) | 2023-01-30 | 2024-08-08 | Kymab Limited | Antibodies |
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EP1576014B1 (en) | 2002-12-23 | 2011-06-29 | Wyeth LLC | Antibodies against pd-1 and uses thereof |
CA3151350A1 (en) | 2005-05-09 | 2006-11-16 | E. R. Squibb & Sons, L.L.C. | Human monoclonal antibodies to programmed death 1 (pd-1) and methods for treating cancer using anti-pd-1 antibodies alone or in combination with other immunotherapeutics |
EA019344B1 (ru) * | 2005-07-01 | 2014-03-31 | МЕДАРЕКС, Эл.Эл.Си. | Человеческие моноклональные антитела против лиганда-1 запрограммированной гибели клеток (pd-l1) и их применения |
SI2170959T1 (sl) | 2007-06-18 | 2014-04-30 | Merck Sharp & Dohme B.V. | Protitelesa proti receptorjem pd-1 za humano programirano smrt |
KR101814408B1 (ko) * | 2008-09-26 | 2018-01-04 | 다나-파버 캔서 인스티튜트 인크. | 인간 항-pd-1, pd-l1, 및 pd-l2 항체 및 그의 용도 |
WO2011110604A1 (en) | 2010-03-11 | 2011-09-15 | Ucb Pharma, S.A. | Pd-1 antibody |
WO2012145493A1 (en) * | 2011-04-20 | 2012-10-26 | Amplimmune, Inc. | Antibodies and other molecules that bind b7-h1 and pd-1 |
PT2710033T (pt) * | 2011-05-17 | 2021-03-11 | Univ Rockefeller | Anticorpos neutralizantes do vírus da imunodeficiência humana e métodos de utilização destes |
US9175082B2 (en) * | 2012-05-31 | 2015-11-03 | Sorrento Therapeutics, Inc. | Antigen binding proteins that bind PD-L1 |
CN114507282A (zh) * | 2012-10-04 | 2022-05-17 | 达纳-法伯癌症研究所公司 | 人单克隆抗-pd-l1抗体和使用方法 |
AR093984A1 (es) * | 2012-12-21 | 2015-07-01 | Merck Sharp & Dohme | Anticuerpos que se unen a ligando 1 de muerte programada (pd-l1) humano |
CN104250302B (zh) | 2013-06-26 | 2017-11-14 | 上海君实生物医药科技股份有限公司 | 抗pd‑1抗体及其应用 |
IL296026B2 (en) | 2013-09-13 | 2024-10-01 | Beigene Switzerland Gmbh | Anti-PD1 antibodies and their uses as drugs and for diagnosis |
UA119659C2 (uk) | 2013-12-12 | 2019-07-25 | Шанхай Хенжуй Фармасьютикал Ко., Лтд. | Антитіло до pd-1, його антигензв'язуючий фрагмент та їхнє медичне застосування |
SG11201700687TA (en) * | 2014-08-05 | 2017-02-27 | Cb Therapeutics Inc | Anti-pd-l1 antibodies |
TWI716362B (zh) | 2014-10-14 | 2021-01-21 | 瑞士商諾華公司 | 針對pd-l1之抗體分子及其用途 |
CN105175544B (zh) | 2015-10-20 | 2021-04-09 | 安徽瀚海博兴生物技术有限公司 | 一种抗pd-1人源化单克隆抗体及其应用 |
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CN105968200B (zh) | 2019-03-15 |
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WO2017197667A1 (zh) | 2017-11-23 |
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