PO.IM01.16 · 免疫学

人-食蟹猴交叉反应性CD3纳米抗体核心的TCE平台增强临床转化

Human-cynomolgus cross-reactive CD3 nanobody-centric TCE platform enhances clinical translation

海报缩略图:人-食蟹猴交叉反应性CD3纳米抗体核心的TCE平台增强临床转化
编号 1637 展板 29 时间 4/20 09:00–12:00 区域 Section 10 主讲 Jian Guo, PhD
分会场 T Cell Engagers 1
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作者与单位 Authors & Affiliations

Yuanyuan Wang, Ce Gu, Liang Xiao, Huijuan Lu, Ruhan Lin, Tingchu Wu, Peipei Hu, Chang Zhou, Fan Wu, Jian Guo, Yongting Huo, Di Lu

Guangdong Fapon Biopharma Inc., Guangdong, China

摘要 Abstract

中文摘要
T细胞衔接器(TCE)近年来已成为研究热点,因其能够精准介导T细胞对靶细胞的杀伤。然而,其临床转化经常受到核心挑战的阻碍:靶点特异性不足、临床前安全性风险评估不充分以及可开发性差。因此,迫切需要一个先进的技术平台来突破这些障碍,促进TCE从基础研究到临床应用的高效转化。在此,我们建立了一个具有独特技术优势的TCE平台。其核心亮点在于整合了靶向T细胞激活第一和第二信号的纳米抗体,这些纳米抗体在人和食蟹猴之间具有交叉反应性结合活性,这一特征为临床前安全性评估提供了关键支持。验证数据表明,装载我们CD3纳米抗体的TCE不仅表现出优异的细胞毒性,还展现出良好的安全性特征和稳健的可开发性。纳米抗体不仅满足多样化结构设计的要求,而且由于其相对较小的分子量,最适合用于体内TCE开发。目前,依托该平台的核心组件,我们已启动三类差异化TCE项目的开发:第二信号增强型TCE、偏向性激活TCE和双靶点TCE。这些核心组件和TCE项目将为在肿瘤学和自身免疫性疾病中实现卓越的治疗疗效提供关键支持。
查看英文原文 English abstract
T-cell engagers (TCEs) have emerged as a research hotspot in recent years, owing to their ability to precisely mediate T cell killing of target cells. However, their clinical translation is frequently hindered by core challenges: insufficient target specificity, inadequate preclinical safety risk assessment, and poor developability. Thus, an advanced technological platform is urgently needed to break through these barriers and facilitate the efficient translation of TCEs from basic research to clinical applications. Here, we established a TCE platform with distinctive technological advantages. Its core highlight lies in the integration of nanobodies targeting the first and second signals of T-cell activation, which possess cross-reactive binding activity between human and cynomolgus monkey, a feature provides crucial support for the preclinical safety assessment. Verification data demonstrates that the TCEs armed with our CD3 nanobody not only exhibit excellent cytotoxicity but also demonstrate favorable safety profiles and robust developability. Nanobodies not only meet the requirements of diverse structural design but also, due to their relatively small molecular weight, are best suited for in vivo TCE development. Currently, relying on the core components of this platform, we have initiated the development of three types of differentiated TCE projects:secondary signal enhanced TCEs, biased activation TCEs and dual-target TCEs. These core components and TCE projects will provide crucial support for achieving excellent therapeutic efficacy in oncology and autoimmune diseases.
利益披露 Disclosure
Y. Wang, Guangdong Fapon Biopharma Inc. Employment. C. Gu, Guangdong Fapon Biopharma Inc. Employment. L. Xiao, Guangdong Fapon Biopharma Inc. Employment. H. Lu, Guangdong Fapon Biopharma Inc. Employment. R. Lin, Guangdong Fapon Biopharma Inc. Employment. T. Wu, Guangdong Fapon Biopharma Inc. Employment. J. Guo, Guangdong Fapon Biopharma Inc. Employment.

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