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Vectorization in an Oncolytic Vaccinia Virus of Antibodies Against Programmed Cell Death -1 (PD-1) Allows Their Intratumoral Delivery and an Improved Tumor-Growth Inhibition

机译:矢量化在抗体抗体的抗体疫苗病毒中,针对编程的细胞死亡-1(PD-1)允许其肿瘤内递送和改善的肿瘤生长抑制

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We report here the successful vectorization of a hamster monoclonal IgG (namely J43) recognizing the murine Programmed cell death-1 (mPD-1) in Western Reserve (WR) oncolytic vaccinia virus. Three forms of mPD-1 binders have been inserted in the virus: whole antibody (mAb), Fragment antigen-binding (Fab) or single-chain variable fragment (scFv). MAb, Fab and scFv were produced and assembled with the expected patterns in supernatants of cells infected by the recombinant viruses. The 3 purified mPD-1 binders were able to block the binding of mPD-1 ligand to mPD-1 in vitro. Moreover, mAb was detected in tumor and in serum of C57BL/6 mice when the recombinant WR-mAb was injected intratumorally (IT) in B16F10 and MCA 205 tumors. The concentration of circulating mAb detected after IT injection was up to 1900-fold higher than the level obtained after a subcutaneous (SC) injection (i.e. without tumor) confirming the virus tropism for tumoral cells and/or microenvironment. Moreover, the overall tumoral accumulation of the mAb was higher and lasted longer after IT injection of WR-mPD-1, than after IT administration of 10 ?g of J43. The IT injection of viruses induced a massive infiltration of immune cells including activated lymphocytes (CD8 and CD4). Interestingly, in the MCA 205 tumor model, WR-mPD-1 (both mAb and scFv) induced a therapeutic control of tumor growth similar to unarmed WR combined to systemically administered J43 and superior to that obtained with an unarmed WR. These results pave the way for next generation of oncolytic vaccinia armed with immunomodulatory therapeutic proteins such as mAbs.
机译:我们在此报告仓鼠单克隆IgG(即J43)的成功向量化识别西方储备(WR)溶瘤疫苗病毒中的鼠程序化细胞死亡-1(MPD-1)。已经插入了三种形式的MPD-1粘合剂:整个抗体(MAB),片段抗原结合(Fab)或单链可变片段(SCFV)。制备MAB,Fab和SCFV并用重组病毒感染的细胞上清液中的预期图案组装。 3纯化的MPD-1粘合剂能够阻断MPD-1配体的结合在体外。此外,当在B16F10和MCA 205肿瘤中妥善注射重组WR-MAB时,在肿瘤中检测MAB和C57BL / 6小鼠的血清。在注射后检测到的循环mAb的浓度高于1900倍,高于皮下(Sc)注射(即没有肿瘤)在肿瘤细胞和/或微环境中获得的病毒性染色症的水平高达1900倍。此外,在注射WR-MPD-1后,MAb的整体肿瘤积累较高并持续时间,而不是在其施用10μlJ43之后。注射病毒的IT注射诱导含有活性淋巴细胞(CD8和CD4)的免疫细胞的大规模渗透。有趣的是,在MCA 205肿瘤模型中,WR-MPD-1(MAB和SCFV)诱导肿瘤生长的治疗控制类似于非武装的WR组合到系统施用的J43并优于用非武装的WR获得。这些结果铺平了下一代葡萄酒疫苗武装的免疫调节治疗蛋白如mAb。

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