抗c2抗体ARGX-117在多灶性运动神经病疾病模型中抑制补体

IF 7.5
Kevin Budding, Lill Eva Johansen, Inge Van de Walle, Kim Dijkxhoorn, Elisabeth de Zeeuw, Lauri M Bloemenkamp, Jeroen W Bos, Marc D Jansen, Chantall A D Curial, Karen Silence, Hans de Haard, Christophe Blanchetot, Liesbeth Van de Ven, Jeanette H W Leusen, R Jeroen Pasterkamp, Leonard H van den Berg, C Erik Hack, Peter Boross, W Ludo van der Pol
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引用次数: 4

摘要

背景和目的:为了确定补体在多灶性运动神经病变(MMN)疾病病理中的作用,我们在诱导多能干细胞(iPSC)衍生的运动神经元(MN)模型中研究了补体激活和抑制MMN患者源性免疫球蛋白M (IgM)抗体的结合。方法:ipsc衍生的MNs的特点是表达补体受体和膜结合调节因子,结合MMN患者的循环IgM抗gm1,并在新鲜血清孵育后固定C4和C3。研究了一种新的靶向C2的单克隆抑制抗体ARGX-117抑制补体固定的效价。结果:ipsc衍生的MNs中等表达补体调节蛋白CD46和CD55,强烈表达CD59。此外,MNs表达C3aR、C5aR和补体受体1。MMN患者血清中IgM抗gm1抗体与MNs结合,用新鲜血清孵育诱导C3和C4固定。ARGX-117抑制与MNs结合的患者源性抗gm1抗体诱导的C4下游补体活化。讨论:MMN患者的IgM抗体与ipsc衍生的MNs结合可诱导补体活化。通过表达补体调节蛋白,特别是CD59, MNs可以防止补体介导的裂解。然而,由于表达C3aR,这些细胞的功能可能受到膜攻击复合物形成上游补体激活的影响。在MMN疾病模型中,ARGX-117抑制C3上游的补体激活,因此代表了一种预防补体对MMN有害影响的干预策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Anti-C2 Antibody ARGX-117 Inhibits Complement in a Disease Model for Multifocal Motor Neuropathy.

Anti-C2 Antibody ARGX-117 Inhibits Complement in a Disease Model for Multifocal Motor Neuropathy.

Anti-C2 Antibody ARGX-117 Inhibits Complement in a Disease Model for Multifocal Motor Neuropathy.

Anti-C2 Antibody ARGX-117 Inhibits Complement in a Disease Model for Multifocal Motor Neuropathy.

Background and objectives: To determine the role of complement in the disease pathology of multifocal motor neuropathy (MMN), we investigated complement activation, and inhibition, on binding of MMN patient-derived immunoglobulin M (IgM) antibodies in an induced pluripotent stem cell (iPSC)-derived motor neuron (MN) model for MMN.

Methods: iPSC-derived MNs were characterized for the expression of complement receptors and membrane-bound regulators, for the binding of circulating IgM anti-GM1 from patients with MMN, and for subsequent fixation of C4 and C3 on incubation with fresh serum. The potency of ARGX-117, a novel inhibitory monoclonal antibody targeting C2, to inhibit fixation of complement was assessed.

Results: iPSC-derived MNs moderately express the complement regulatory proteins CD46 and CD55 and strongly expressed CD59. Furthermore, MNs express C3aR, C5aR, and complement receptor 1. IgM anti-GM1 antibodies in serum from patients with MMN bind to MNs and induce C3 and C4 fixation on incubation with fresh serum. ARGX-117 inhibits complement activation downstream of C4 induced by patient-derived anti-GM1 antibodies bound to MNs.

Discussion: Binding of IgM antibodies from patients with MMN to iPSC-derived MNs induces complement activation. By expressing complement regulatory proteins, particularly CD59, MNs are protected against complement-mediated lysis. Yet, because of expressing C3aR, the function of these cells may be affected by complement activation upstream of membrane attack complex formation. ARGX-117 inhibits complement activation upstream of C3 in this disease model for MMN and therefore represents an intervention strategy to prevent harmful effects of complement in MMN.

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