KR20140033241A - Prlr 특이적 항체 및 그 용도 - Google Patents
Prlr 특이적 항체 및 그 용도 Download PDFInfo
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- KR20140033241A KR20140033241A KR1020147004402A KR20147004402A KR20140033241A KR 20140033241 A KR20140033241 A KR 20140033241A KR 1020147004402 A KR1020147004402 A KR 1020147004402A KR 20147004402 A KR20147004402 A KR 20147004402A KR 20140033241 A KR20140033241 A KR 20140033241A
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Abstract
Description
도 2, 3 및 4는 선택된 PRLR 특이적 항체가 pERK1/2 인산화에 미치는 효과를 도시하고 있다[mAb 1167은 대조군 쥐과 동물 항-PRLR 모노클로날 항체임; R&D Systems, 카탈로그 번호 MAB 1167]
도 5는 PRLR 특이적 항체가 PRL-반응성 종양 세포주의 증식에 미치는 효과를 도시하고 있다.
도 6은 PRLR 특이적 항체가 PRLR 세포내 인산화에 미치는 효과를 도시하고 있다.
도 7a 내지 7c는 pERK 분석에서 80%를 초과한 억제율을 나타낸, 항체 XPA.06.128, XPA.06.129, XPA.06.130, XPA.06.131, XPA.06.141, XPA.06.147, XPA.06.148, XPA.06.158, XPA.06.159, XPA.06.163, XPA.06.167, XPA.06.171, XPA.06.178, XPA.06.181, XPA.06.192, XPA.06.202, XPA.06.203, XPA.06.206, XPA.06.207, XPA.06.210, XPA.06.212, XPA.06.217, XPA.06.219, XPA.06.229, XPA.06.233, XPA.06.235, XPA.06.239의 VH 및 VL 아미노산 서열 및 CDR 위치(밑줄)를 나타낸 것이다.
도 8은 항체 XPA.06.145의 VH 및 VL 아미노산 서열을 나타낸 것이다.
도 9는 항체 XHA.06.983, XHA.06.275, 및 XHA.06.642의 리더 및 VH 및 VL 뉴클레오티드 서열을 나타낸 것이다.
도 10은 항체 XHA.06.983, XHA.06.275, 및 XHA.06.642의 VH 및 VL 아미노산 서열을 나타낸 것이다(CDR은 밑줄).
도 11은 키메라 항-PRLR mAb chXHA.06.642, chXHA.06.275 및 chXHA.06.983이 BaF/PRLR 세포의 증식 및 생존을 강력하게 억제하는 것을 보여준다. KLH-G1은 비 특이적 이소타입 매칭된 대조군 항체이다. 오른쪽 패널은 상응하는 마우스 mAb의 IC50 값을 나타낸다.
도 12는 키메라 항-PRLR mAb가 T47D 세포에서 STAT5 시그널링을 억제하는 것을 보여준다. 세포를 1 ㎍/ml mAb로 30분 전에 예비처리하고, 50 ng/ml PRL로 자극하였다. 용해물을 PRLR의 포스포타이로신 잔기 546 및 611에 특이적인 항체를 사용하여 포스포로-PRLR의 존재에 대해 분석하였다.
도 13은 인간 가공(Human Engineered)™ 항체가 pERK1/2 인산화에 미치는 효과를 보여준다.
도 14는 키메라 항-PRLR mAb에 의해 매개된 ADCC를 나타낸다. T47D-T2 세포를 칼세인-AM으로 표지한 후, mAb(1 ㎍/ml) 및 정제된 인간 NK 세포를 이펙터-대-표적 비율 10:1로 가하였다. 4 시간 동안 인큐베이션한 후, 상등액으로 칼세인-AM 방출을 측정하였다. 항-KLH 항체 및 헤르셉틴을 각각 음성 및 양성 대조군으로 사용하였다. % 특이적 용해를 (실험 방출 - 자발 방출)/(최대 방출 - 자발 방출) X 100으로 계산하였다.
도 15는 항-PRLR mAb가 병용 연구에서 세포독성 약물과 상승작용하는 것을 나타낸다. 독소루비신(위쪽 패널)과 시스플라틴(아래쪽 패널)을 항-KLH 대조군 Ab, 항-PRLR mAb chXHA.06.642 또는 항-PRLR mAb chXHA.06.275(모두 1 ㎍/ml)과 함께 투여하였다.
도 16은 인간 가공™ mAb가 STAT5 인산화 분석에서 항-PRLR 기능적 특성을 보유하는 것을 보여준다. T47D 세포를 1 또는 1O ㎍/ml mAb와 함께 인큐베이션한 후, 추가로 30분 동안 PRL(50 ng/ml)로 처리하거나 처리하지 않았다.
도 17A 및 17B는 인간화 항-PRLR 항체 후보가 PRL 의존적 BaF3/PRLR 세포의 성장을 강력히 억제하는 것을 보여준다. BaF3/PRLR 세포를 PRL(50 ng/ml)의 존재하에 48 시간 동안 항-KLH 대조군 항체(맨 위쪽의 선), 키메라 항체 또는 인간 가공™ 버젼과 함께 성장시켰다. EC50 값을 곡선 핏트의 비-선형 회귀 분석을 이용하여 계산하였다.
도 18A 및 18B는 chXHA.06.642 처리된 동물의 Nb2-C11 종양에서 p-STAT5의 억제를 보여준다. 피하 Nb2-C11 종양이 있는 흉선이 없는 마우스에 chXHA.06.642 또는 KLH 대조군 IgG1 mAb를 복강내 주사하였다. 2일 후에 oPRL을 20 ㎍ 볼러스 복강내 주사로 투여하였다. 대조군 동물에는 염수를 주사하였다. 2일 후에 oPRL을 20 ㎍ 볼러스 복강내 주사로 투여하고, 40 분 후에 종양을 수거하여 p-STAT5에 대해서 면역블롯 또는 IHC로 평가하였다. 도 18A는 80 ㎍의 Tyr694 p-STAT5의 웨스턴 블롯을, 도 18B는 Tyr694 p-STAT5의 IHC를 나타낸다.
도 19A 및 19B는 chXHA.06.642가 두 상이한 연구에서 SCID 마우스 내 Nb2-C11 래트 림프종 모델에서 효과가 있음을 보여준다.
도 20A 및 20B는 chXHA.06.642가 SCID 마우스 내 수립된 Nb2-Cl1 래트 림프종 종양을 퇴행시키는 것을 보여준다. 도 2OA는 종양 부피를, 도 2OB는 조건부 생존을 나타낸다.
도 21A 및 21B는 oPRL을 복강내 볼러스 주사하는 것이 p-STAT5를 유도하고, chXHA.06.642로 처리하는 것이 T47D 인간 유방 이종이식물에서 p-STAT5 유도를 억제하는 것을 보여준다. chXHA.06.642 또는 KLH 대봐떡 IgG1을 성장을 유지하기 위해 0.18 mg/일 에스트라디올(E2) 펠렛을 이식한, T47D 종양이 있는 면역손상된 마우스에 복강내 주사하였다. 2일 후에 oPRL을 20 ㎍ 볼러스 복강내 주사로 투여하고, 40 분 후에 T47D 종양을 수거하여 p-STAT5에 대해서 면역블롯 또는 IHC로 평가하였다. 도 21A는 80 ㎍의 Tyr694 p-STAT5의 웨스턴 블롯을, 도 21B는 Tyr694 p-STAT5의 IHC를 나타낸다.
Claims (1)
- PRLR의 세포외 도메인에 10-6 M 이하의 평형 해리 상수(KD)로 결합하며, 항체 chXHA.06.642, chXHA.06.275, he.06.642-1, he.06.642-2, he.06.275-1, he.06.275-2, he.06.275-3, he.06.275-4, XPA.06.128, XPA.06.129, XPA.06.130, XPA.06.131, XPA.06.141, XPA.06.147, XPA.06.148, XPA.06.158, XPA.06.159, XPA.06.163, XPA.06.167, XPA.06.171, XPA.06.178, XPA.06.181, XPA.06.192, XPA.06.202, XPA.06.203, XPA.06.206, XPA.06.207, XPA.06.210, XPA.06.212, XPA.06.217, XPA.06.219, XPA.06.229, XPA.06.233, XPA.06.235, XPA.06.239, XPA.06.145, XHA.06.567, XHA.06.642, XHA.06.983, XHA.06.275, XHA.06.189 또는 XHA.06.907 중 어느 하나와 PRLR에의 결합에 대해 75%를 초과하여 경쟁하는 항체.
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