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一刀切并不适合所有人:在多维空间中导航,以优化 T 细胞结合蛋白治疗药物。

One size does not fit all: navigating the multi-dimensional space to optimize T-cell engaging protein therapeutics.

机构信息

Pfizer Worldwide R&D , BioMedicine Design, CA, USA.

Asher Bio, Protein Sciences , San Carlos, CA, USA.

出版信息

MAbs. 2021 Jan-Dec;13(1):1871171. doi: 10.1080/19420862.2020.1871171.

Abstract

T-cell engaging biologics is a class of novel and promising immune-oncology compounds that leverage the immune system to eradicate cancer. Here, we compared and contrasted a bispecific diabody-Fc format, which displays a relatively short antigen-binding arm distance, with our bispecific IgG platform. By generating diverse panels of antigen-expressing cells where B cell maturation antigen is either tethered to the cell membrane or located to the juxtamembrane region and masked by elongated structural spacer units, we presented a systematic approach to investigate the role of antigen epitope location and molecular formats in immunological synapse formation and cytotoxicity. We demonstrated that diabody-Fc is more potent for antigen epitopes located in the membrane distal region, while bispecific IgG is more efficient for membrane-proximal epitopes. Additionally, we explored other parameters, including receptor density, antigen-binding affinity, and kinetics. Our results show that molecular format and antigen epitope location, which jointly determine the intermembrane distance between target cells and T cells, allow decoupling of cytotoxicity and cytokine release, while antigen-binding affinities appear to be positively correlated with both readouts. Our work offers new insight that could potentially lead to a wider therapeutic window for T-cell engaging biologics in general.

摘要

T 细胞衔接生物制剂是一类新型且有前途的免疫肿瘤化合物,利用免疫系统来消灭癌症。在这里,我们比较和对比了一种双特异性二价抗体-Fc 结构,它显示出相对较短的抗原结合臂距离,与我们的双特异性 IgG 平台。通过生成多样化的抗原表达细胞面板,其中 B 细胞成熟抗原要么被固定在细胞膜上,要么位于近膜区域并被拉长的结构间隔单元掩盖,我们提出了一种系统的方法来研究抗原表位位置和分子结构在免疫突触形成和细胞毒性中的作用。我们证明,二价抗体-Fc 对位于膜远端区域的抗原表位更有效,而双特异性 IgG 对膜近端表位更有效。此外,我们还探索了其他参数,包括受体密度、抗原结合亲和力和动力学。我们的结果表明,分子结构和抗原表位位置共同决定了靶细胞与 T 细胞之间的膜间距离,可以分离细胞毒性和细胞因子释放,而抗原结合亲和力似乎与这两种结果都呈正相关。我们的工作提供了新的见解,这可能为 T 细胞衔接生物制剂的治疗窗口带来更广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0e9/7889206/9d74bbacb203/KMAB_A_1871171_F0001_OC.jpg

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