利用针对单个氨基酸变异的抗体开发基于cd16的选择性NK细胞接合器

Q2 Medicine
Wuxiang Liao, Christine Tumanut, Lin Li, A. Corper, D. Challa, Alex Chang, Hydari Begum, Elinaz Farokhi, C. Woods, Xiaomin Fan
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引用次数: 0

摘要

摘要背景与意义自然杀伤细胞(NK)在人类先天免疫系统中发挥着至关重要的作用,是癌症免疫治疗的一种有前景的方法。特别感兴趣的是可以靶向并激活NK细胞以攻击癌症细胞的NK细胞掺合物。在这项研究中,我们通过靶向NK细胞激活受体CD16a,使用选择性区分NK细胞上CD16a和粒细胞上CD16b的抗体,开发了新的NK细胞接合剂,这两种抗体彼此高度同源。方法和结果为了产生具有高可开发性的抗体,我们采用合理的设计方法构建了大型的人类抗体酵母展示库。这种方法基于对来自500多个个体的人类抗体的深度测序数据集的分析,这使我们能够确定人类抗体CDR的天然氨基酸使用模式并模拟人类抗体库。通过筛选这些文库,我们发现了两类选择性识别CD16a而对CD16b没有交叉反应性的抗体克隆。表位定位显示,单个氨基酸差异对一类抗体克隆具有超过10000倍的选择性,而对另一类抗体则鉴定出CD16a上的第二个独特表位。为了评估这些抗体克隆的活性,我们制备了双特异性抗体克隆,其中一只臂靶向CD16a,另一只臂则靶向肿瘤相关抗原(TAA)。我们的结果证明了NK细胞的有效肿瘤细胞依赖性激活和肿瘤细胞的有效杀伤。这些抗体中的几种在杀死靶细胞时大大增强了对人IgG抑制的抵抗力。值得注意的是,在两种不同的NK细胞接合形式中,与领先的参考抗CD16a克隆相比,我们的抗CD16a抗体克隆表现出优异的性能。这包括在不存在和存在10mg/mL人IgG作为竞争对手的情况下,对CD16a具有更高的亲和力、更高的热稳定性和更有效的杀伤活性。结论我们的研究结果表明,抗CD16a抗体的NK细胞结合物在癌症免疫治疗中具有显著的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DEVELOPMENT OF A SELECTIVE CD16A-BASED NK CELL ENGAGER UTILIZING ANTIBODIES TARGETING A SINGLE AMINO ACID VARIATION
Abstract Background and Significance Natural killer (NK) cells play a vital role in the human innate immune system and are being explored as a promising approach for cancer immunotherapy. Of particular interest are NK cell engagers that can target and activate NK cells to attack cancer cells. In this study, we developed novel NK cell engagers by targeting the NK cell activating receptor CD16a using antibodies that selectively distinguish between CD16a on NK cells and CD16b on granulocytes, which are highly homologous to each other. Methods and Results To generate antibodies with high developability, we employed a rational design approach to construct large yeast display libraries of human antibodies. This approach was based on the analysis of a deep sequencing dataset of human antibodies from over 500 individuals, which allowed us to determine the natural amino acid usage patterns of human antibody CDRs and mimic human antibody repertoires. Through screening these libraries, we discovered two classes of antibody clones that selectively recognize CD16a without cross-reactivity to CD16b. Epitope mapping revealed that a single amino acid difference confers over 10,000-fold selectivity for one class of antibody clones, while for the other class a second unique epitope on CD16a was identified. To evaluate the activity of these antibody clones, we produced bispecific antibody clones with one arm targeting CD16a and the other arm targeting a tumor-associated antigen (TAA). Our results demonstrated potent tumor cell-dependent activation of NK cells and effective killing of tumor cells. Several of these antibodies had greatly enhanced resistance to human IgG inhibition in killing target cells. Significantly, our anti-CD16a antibody clones exhibited superior performance compared to leading reference anti-CD16a clones in two distinct NK cell engager formats. This included higher affinity for CD16a, higher thermostability, and more potent killing activity both in the absence and presence of 10 mg/mL human IgGs as competitors. Conclusion Our findings indicate that anti-CD16a antibody-based NK cell engagers have significant potential for cancer immunotherapies.
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来源期刊
Antibody Therapeutics
Antibody Therapeutics Medicine-Immunology and Allergy
CiteScore
8.70
自引率
0.00%
发文量
30
审稿时长
8 weeks
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