The establishment and application of CD3E humanized mice in immunotherapy

Rufeng Zhang, Jing Zhang, Xiaofei Zhou, Ang Zhao, Changyuan Yu
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Abstract

In the field of cancer immunotherapy, monoclonal antibody drugs, bispecific antibodies, and antibody-conjugated drugs have become the focus of current research, and gene-edited animal models play an essential role in the entire drug development process. In this study, CD3E humanized mice were established by replacing the second to the seventh exon of the Cd3e mouse gene with the same exon of the human gene. The expression of human CD3E in CD3E humanized mice was detected by RT-PCR as well as flow cytometry, also a tumor model was established based on CD3E humanized mice, and the pharmacodynamic effects of CD3E monoclonal antibodies were evaluated. The results showed that CD3E humanized mice expressed only human CD3E, and the proportion of each lymphocyte in the thymus and spleen was not significantly changed compared with wild-type mice. CD3E monoclonal antibody could promote tumor growth after treatment, which may be related to the activation-induced cell death effect caused by this CD3E antibody. In contrast, Bispecific antibody blinatumomab inhibited tumor growth significantly. Thus, the CD3E humanized mice provided an adequate animal model for evaluating the efficacy and safety of CD3E antibody drugs.
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CD3E人源化小鼠的建立及其在免疫治疗中的应用
在癌症免疫治疗领域,单克隆抗体药物、双特异性抗体和抗体偶联药物已成为当前研究的重点,而基因编辑动物模型在整个药物开发过程中起着至关重要的作用。在本研究中,通过用人类基因的相同外显子替换CD3E小鼠基因的第2至第7个外显子,建立了CD3E人源化小鼠。采用RT-PCR和流式细胞术检测人CD3E在CD3E人源化小鼠体内的表达,建立CD3E人源化小鼠肿瘤模型,评价CD3E单克隆抗体的药效学作用。结果表明,CD3E人源化小鼠仅表达人CD3E,胸腺和脾脏各淋巴细胞的比例与野生型小鼠相比无明显变化。CD3E单克隆抗体治疗后可促进肿瘤生长,这可能与该CD3E抗体激活诱导的细胞死亡效应有关。相比之下,双特异性抗体blinatumomab显著抑制肿瘤生长。因此,CD3E人源化小鼠为评价CD3E抗体药物的有效性和安全性提供了充分的动物模型。
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