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免疫抑制诱导的临床前体外评估由 GYM329,Fc 工程化扫荡抗体。

Preclinical in vitro evaluation of immune suppression induced by GYM329, Fc-engineered sweeping antibody.

机构信息

Translational Research Division, Chugai Pharmaceutical Co., Ltd.

Chugai Pharmabody Research Pte. Ltd., Singapore.

出版信息

J Toxicol Sci. 2023;48(7):399-409. doi: 10.2131/jts.48.399.

Abstract

Fc-engineering is commonly used to improve the therapeutic potency of antibody (Ab) treatments. Because FcγRIIb is the only inhibitory FcγR that contains an immunoreceptor tyrosine-based inhibition motif (ITIM), Fc-engineered Abs with enhanced binding affinity to FcγRIIb might provide immune suppression in clinical contexts. GYM329 is an anti-latent myostatin Fc-engineered Ab with increased affinity to FcγRIIb which is expected to improve muscle strength in patients with muscular disorders. Cross-linking of FcγRIIb by immune complex (IC) results in phosphorylation of ITIM to inhibit immune activation and apoptosis in B cells. We examined whether the IC of Fc-engineered Abs with enhanced binding affinity to FcγRIIb causes phosphorylation of ITIM or B cell apoptosis using GYM329 and its Fc variant Abs in human and cynomolgus-monkey (cyno) immune cells in vitro. IC of GYM329 with enhanced binding affinity to human FcγRIIb (×5) induced neither ITIM phosphorylation nor B cell apoptosis. As for GYM329, FcγRIIb should work as an endocytic receptor of small IC to sweep latent myostatin, so it is preferable that GYM329 induces neither ITIM phosphorylation nor B cell apoptosis to prevent immune suppression. In contrast, IC of myo-HuCy2b, the Ab with enhanced binding affinity to human FcγRIIb (×4), induced ITIM phosphorylation and B cell apoptosis. The result of the present study demonstrated that Fc-engineered Abs with similar binding affinity to FcγRIIb had different effects. Thus, it is important to also investigate FcγR-mediated immune functions other than binding to fully understand the biological effects of Fc-engineered Abs.

摘要

Fc 工程常用于提高抗体(Ab)治疗的治疗效力。由于 FcγRIIb 是唯一含有免疫受体酪氨酸抑制基序(ITIM)的抑制性 FcγR,因此具有增强与 FcγRIIb 结合亲和力的 Fc 工程化 Abs 可能在临床情况下提供免疫抑制作用。GYM329 是一种抗潜伏肌生成素 Fc 工程化 Ab,与 FcγRIIb 的亲和力增强,有望改善肌肉疾病患者的肌肉力量。免疫复合物(IC)交联 FcγRIIb 导致 ITIM 磷酸化,从而抑制 B 细胞的免疫激活和凋亡。我们在体外用人和食蟹猴(cyno)免疫细胞中检查了具有增强与 FcγRIIb 结合亲和力的 Fc 工程化 Abs 的 IC 是否导致 ITIM 磷酸化或 B 细胞凋亡,使用了 GYM329 及其 Fc 变体 Abs。与人类 FcγRIIb (×5)结合亲和力增强的 GYM329 IC 既没有诱导 ITIM 磷酸化,也没有诱导 B 细胞凋亡。对于 GYM329,FcγRIIb 应该作为小 IC 的内吞受体发挥作用,以清除潜伏的肌生成素,因此 GYM329 诱导 ITIM 磷酸化和 B 细胞凋亡以防止免疫抑制是优选的。相比之下,与人类 FcγRIIb 结合亲和力增强的 Ab myo-HuCy2b 的 IC 诱导了 ITIM 磷酸化和 B 细胞凋亡。本研究的结果表明,具有相似 FcγRIIb 结合亲和力的 Fc 工程化 Abs 具有不同的作用。因此,除了结合之外,还需要研究 FcγR 介导的免疫功能,以充分了解 Fc 工程化 Abs 的生物学作用。

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