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CD22 分子上参与 T 细胞衔接双特异性抗体生物学活性的结合结构域

英文原题:Binding domain on CD22 molecules contributing to the biological activity of T cell-engaging bispecific antibodies.

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Binding domain on CD22 molecules contributing to the biological activity of T cell-engaging bispecific antibodies.

PubMed 2023/07/04(内容时间) Heliyon

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中文摘要

CD22作为B细胞恶性肿瘤抗原,已成为通过CAR-T 细胞、抗体药物偶联物(ADCs)和免疫毒素等免疫疗法的靶点,这些疗法通过抗体与受体上结合结构域的相互作用实现。

我们假设抗体对靶细胞的亲和力和结合结构域可能对肿瘤免疫治疗中的生物学功能产生显著影响,并且靶向CD22的T细胞衔接双特异性抗体(TCB)可用于血液系统恶性肿瘤的治疗。

因此,为了解决这一问题,我们利用六种先前报道的CD22 mAbs的信息,生成了对CD22蛋白不同结构域具有不同亲和力的CD22-TCBs。

我们发现CD22-TCBs对蛋白的亲和力与对靶细胞的亲和力不一致,表明TCBs对蛋白和细胞具有不同的结合模式。体外结果表明,CD22-TCBs介导的细胞毒性取决于抗体对靶细胞的亲和力而非对蛋白的亲和力。

此外,抗原的远端结合结构域有助于IgG-[L]-scfv样CD22-TCBs的亲和力和生物学活性。比较了T细胞的增殖、活化、细胞毒性以及细胞因子释放,并选择G5/44 BsAb用于进一步的体内抗肿瘤活性评估。体内结果表明,CD22-TCB(G5/44 BsAb)显著抑制了小鼠肿瘤生长。所有这些数据表明,通过考虑对CD22靶点的亲和力和结合结构域来优化设计,CD22-TCBs可被开发为B细胞恶性肿瘤治疗的有前景的候选药物。

展开英文摘要原文

CD22, as the B-cell malignancies antigen, has been targeted for immunotherapies through CAR-T cells, antibody-drug conjugates (ADCs) and immunotoxins via interaction of antibodies with binding domains on the receptor.

We hypothesized that avidity and binding domain of antibody to target cells may have significant impact on the biological function in tumor immunotherapy, and T cell-engaging bispecific antibody (TCB) targeting CD22 could be used in the therapy of hematologic malignancies. So, to address the question, we utilized the information of six previously reported CD22 mAbs to generate CD22-TCBs with different avidity to different domains on CD22 protein.

We found that the avidity of CD22-TCBs to protein was not consistent with the avidity to target cells, indicating that TCBs had different binding mode to the protein and cells. In vitro results indicated that CD22-TCBs mediated cytotoxicity depended on the avidity of antibodies to target cells rather than to protein.

Moreover, distal binding domain of the antigen contributed to the avidity and biological activity of IgG-[L]-scfv-like CD22-TCBs. The T cells' proliferation, activation, cytotoxicity as well as cytokine release were compared, and G5/44 BsAb was selected for further in vivo assessment in anti-tumor activity.

In vivo results demonstrated that CD22-TCB (G5/44 BsAb) significantly inhibited the tumors growth in mice. All these data suggested that CD22-TCBs could be developed as a promising candidate for B-cell malignancies therapy through optimizing the design with avidity and binding domain to CD22 target in consideration.

论文信息

作者
Chen J、Pan Z、Han L、Liu J、Yue Y、Xiao X、Zhang B、Wu M
单位
Engineering Research Center of Cell and Therapeutic Antibody, Ministry of Education, School of Pharmacy, Shanghai Jiao Tong University, Shanghai, 200240, China.China
期刊
Heliyon2023 Jul
原文标识
PubMed 37456045 · DOI 10.1016/j.heliyon.2023.e17960