PO.IM01.17 · 免疫学

赋能IL-2治疗开发:一种具有功能性IL-2和IL-15受体的新型人源化小鼠模型

Empowering IL-2 therapy development: A novel humanized mouse model with functional IL-2 and IL-15 receptors

海报缩略图:赋能IL-2治疗开发:一种具有功能性IL-2和IL-15受体的新型人源化小鼠模型
编号 6963 展板 11 时间 4/22 09:00–12:00 区域 Section 7 主讲 Yuan Tian, PhD
分会场 High-Dimensional Immune Profiling and Preclinical Modeling for Cancer Immunotherapy
查看 PDF 下载 PDF 🔒 查看 / 下载完整 PDF 需登录并开通下载套餐 · 查看套餐 / 开通 AACR 官方页面

作者与单位 Authors & Affiliations

Fengqian Chen, Zhenlan Niu, Zhi Zhang, Linlin Wang, Xiaofei Zhou

Biocytogen, Waltham, MA

摘要 Abstract

中文摘要
免疫肿瘤学疗法,特别是涉及IL-2和IL-15等细胞因子的疗法,其疗效常常受限于其物种特异性和复杂的受体相互作用,而这些在野生型小鼠中难以充分再现。为建立一个稳健的临床前平台以评估新型人特异性免疫疗法及其联合方案,我们开发了一个全面的七基因人源化小鼠模型。 B-hPD-1 plus/hIL2/hIL2RA/hIL2RB/hIL2RG/hIL15/hIL15RA小鼠模型在C57BL/6背景上通过共整合七个关键人类基因构建而成:PD-1、IL2、IL2RA、IL2RB、IL2RG、IL15和IL15RA。所编码蛋白的人源化和细胞表面表达通过流式细胞术得到确认。IL2和IL15通过ELISA检测。进行了全面的免疫细胞分析。该模型的功能性在体内使用同基因肿瘤模型进行验证,分别以人IL-2(hIL-2)、抗人PD-1抗体(Ketruda)及其联合进行治疗。 流式细胞术和ELISA分别确认了膜蛋白和分泌蛋白的成功表达。免疫表型分析证明存在能够响应人类细胞因子的关键淋巴细胞群。在治疗研究中,与对照组相比,hIL-2或Ketruda单药治疗显著抑制了肿瘤生长。值得注意的是,hIL-2与Ketruda的联合产生了更优的协同抗肿瘤疗效,显著优于任一单药。迄今为止正在进行的组织病理学(H&E)和临床病理学(血液学和血清生化)分析表明无明显毒性,支持该模型在安全性和疗效评估中的实用性。 我们成功开发并验证了一种新型七基因人源化小鼠模型,该模型稳健地表达人PD-1、IL-2、IL-15及其完整受体复合物。该模型支持对人特异性单药和联合疗法进行功能性体内评估,如hIL-2加抗PD-1所展示的疗效增强。它代表了一个独特而强大的临床前工具,可用于下一代免疫疗法(包括细胞因子、检查点抑制剂及其协同联合)的筛选和机制研究。
查看英文原文 English abstract
The efficacy of immuno-oncology therapies, particularly those involving cytokines like IL-2 and IL-15, is often limited by their species-specificity and complex receptor interactions, which are poorly recapitulated in wild-type mice. To establish a robust preclinical platform for evaluating novel human-specific immunotherapies and their combinations, we developed a comprehensive seven-gene humanized mouse model. The B-hPD-1 plus/hIL2/hIL2RA/hIL2RB/hIL2RG/hIL15/hIL15RA mouse model was engineered on a C57BL/6 background by co-integrating seven key human genes: PD-1, IL2, IL2RA, IL2RB, IL2RG, IL15, and IL15RA. Humanization and cell surface expression of the encoded proteins were confirmed via flow cytometry. The IL2 and IL15 were detected by ELISA. Comprehensive immune cell profiling was performed. The model's functionality was validated in vivo using syngeneic tumor models treated with human IL-2 (hIL-2), an anti-human PD-1 antibody (Ketruda), and their combination. Flow cytometry and ELISA confirmed successful expression of the membrane proteins and the secreted protein, respectively. Immune phenotyping demonstrated the presence of key lymphocyte populations capable of responding to human cytokines. In therapeutic studies, monotherapy with hIL-2 or Ketruda significantly inhibited tumor growth compared to control groups. Notably, the combination of hIL-2 and Ketruda resulted in superior, synergistic antitumor efficacy, significantly outperforming either agent alone. Ongoing histopathological (H&E) and clinical pathology (hematology and serum biochemistry) analyses to date indicate no overt toxicity, supporting the model's utility for safety and efficacy assessments. We have successfully developed and validated a novel seven-gene humanized mouse model that robustly expresses human PD-1, IL-2, IL-15, and their complete receptor complexes. This model supports functional in vivo evaluation of human-specific mono- and combination therapies, as demonstrated by the enhanced efficacy of hIL-2 plus anti-PD-1. It represents a unique and powerful preclinical tool for the screening and mechanistic study of next-generation immunotherapies, including cytokines, checkpoint inhibitors, and their synergistic combinations.
利益披露 Disclosure
F. Chen, None.. Z. Niu, None.. Z. Zhang, None.. L. Wang, None.. X. Zhou, None.

← 返回 AACR 2026 检索