fc工程扫描抗体GYM329诱导免疫抑制的临床前体外评价。

IF 1.8 4区 医学 Q4 TOXICOLOGY
Yoshika Iwata, Hitoshi Katada, Momoko Okuda, Yoshiaki Doi, Tim Jang Ching, Asako Harada, Akira Takeiri, Masaki Honda, Masayuki Mishima
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引用次数: 0

摘要

fc工程通常用于提高抗体(Ab)治疗的治疗效力。由于FcγRIIb是唯一含有免疫受体酪氨酸基抑制基序(ITIM)的抑制性FcγR,因此与FcγRIIb结合亲和力增强的fc工程抗体可能在临床环境中提供免疫抑制。GYM329是一种抗潜伏肌生长抑制素fc工程抗体,与FcγRIIb的亲和力增加,有望改善肌肉疾病患者的肌肉力量。免疫复合物(IC)交联fc - γ riib导致ITIM磷酸化,从而抑制B细胞的免疫活化和凋亡。我们利用GYM329及其Fc变体抗体,在体外实验中检测了与Fcγ riib结合亲和力增强的Fc工程抗体是否会导致ITIM磷酸化或B细胞凋亡。与人fc - γ riib (×5)结合亲和力增强的GYM329的IC既不诱导ITIM磷酸化,也不诱导B细胞凋亡。对于GYM329, FcγRIIb应该作为小IC的内吞受体来清除潜伏的肌生长抑制素,因此GYM329最好既不诱导ITIM磷酸化,也不诱导B细胞凋亡,以防止免疫抑制。相比之下,myo-HuCy2b的IC,与人fc - γ riib结合亲和力增强的Ab (×4),诱导ITIM磷酸化和B细胞凋亡。本研究结果表明,与FcγRIIb具有相似结合亲和力的fc工程抗体具有不同的作用。因此,研究fc - γ - r介导的非结合免疫功能对充分了解fc工程抗体的生物学效应具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preclinical in vitro evaluation of immune suppression induced by GYM329, Fc-engineered sweeping antibody.

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.

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来源期刊
CiteScore
3.20
自引率
5.00%
发文量
53
审稿时长
4-8 weeks
期刊介绍: The Journal of Toxicological Sciences (J. Toxicol. Sci.) is a scientific journal that publishes research about the mechanisms and significance of the toxicity of substances, such as drugs, food additives, food contaminants and environmental pollutants. Papers on the toxicities and effects of extracts and mixtures containing unidentified compounds cannot be accepted as a general rule.
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