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An Anti-C1s Monoclonal TNT003 Inhibits Complement Activation Induced by Antibodies Against HLA

机译:抗C1s单克隆抗体TNT003抑制抗HLA抗体诱导的补体激活

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摘要

Antibody-mediated rejection (AMR) of solid organ transplants (SOT) is characterized by damage triggered by donor-specific antibodies (DSA) binding donor Class I and II HLA (HLA-I and HLA-II) expressed on endothelial cells. While F(ab′)2 portions of DSA cause cellular activation and proliferation, Fc regions activate the classical complement cascade, resulting in complement deposition and leukocyte recruitment, both hallmark features of AMR. We characterized the ability of an anti-C1s monoclonal antibody, TNT003, to inhibit HLA antibody (HLA-Ab)-induced complement activation. Complement deposition induced by HLA-Ab was evaluated using novel cell- and bead-based assays. Human aortic endothelial cells (HAEC) were cultured with HLA-Ab and human complement; production of activated complement proteins was measured by flow cytometry. Additionally, C3d deposition was measured on single antigen beads (SAB) mixed with HLA-Ab and human complement. TNT003 inhibited HLA-Ab mediated complement deposition on HAEC in a concentration-dependent manner; C3a, C4a and C5a anaphylatoxin production was also diminished by TNT003. Finally, TNT003 blocked C3d deposition induced by Class I (HLAI-Ab)- and Class II (HLAII-Ab)-specific antibodies on SAB. These data suggest TNT003 may be useful for modulating the effects of DSA, as TNT003 inhibits complement deposition and split product formation generated by HLA-I/II-Ab in vitro.
机译:实体器官移植(SOT)的抗体介导排斥(AMR)的特征是由供体特异性抗体(DSA)结合内皮细胞上表达的I类和II类HLA(HLA-1和HLA-II)供体特异性抗体触发。 DSA的F(ab')2部分引起细胞激活和增殖,而Fc区激活经典的补体级联反应,导致补体沉积和白细胞募集,这是AMR的两个标志性特征。我们表征了抗C1s单克隆抗体TNT003抑制HLA抗体(HLA-Ab)诱导的补体激活的能力。使用新型的基于细胞和珠的检测方法评估了由HLA-Ab诱导的补体沉积。用HLA-Ab和补体培养人主动脉内皮细胞(HAEC);通过流式细胞仪测量活化补体蛋白的产生。另外,在与HLA-Ab和人补体混合的单个抗原珠(SAB)上测量了C3d沉积。 TNT003以浓度依赖的方式抑制HLA-Ab介导的补体在HAEC上的沉积; TNT003也减少了C3a,C4a和C5a过敏毒素的产生。最后,TNT003阻断了由SAB上的I类(HLAI-Ab)和II类(HLAII-Ab)特异性抗体诱导的C3d沉积。这些数据表明,TNT003可用于调节DSA的作用,因为TNT003在体外抑制补体沉积和HLA-I / II-Ab产生的分裂产物形成。

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