PO.IM01.17 · 免疫学

人源化HLA-A11.1小鼠:新型疫苗评估的临床前平台

Humanized HLA-A11.1 mice: A preclinical platform for novel vaccine evaluation

海报缩略图:人源化HLA-A11.1小鼠:新型疫苗评估的临床前平台
编号 6967 展板 15 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
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作者与单位 Authors & Affiliations

Qiurong Wang, Zhenlan Niu, Shuaiqiang Zhang, Xiaofei Zhou

Biocytogen, Waltham, MA

摘要 Abstract

中文摘要
主要组织相容性复合体(MHC)通过提呈抗原肽并启动T细胞介导的免疫,在免疫防御中发挥关键作用。由于动物MHC与人类白细胞抗原(HLA)系统之间存在显著的遗传差异,HLA人源化小鼠模型为研究HLA-A限制性免疫应答和促进疫苗开发提供了一个有价值的平台。 本研究中,我们建立了一种新型B-HLA-A11.1人源化小鼠模型,并系统表征了其表型和免疫学特征。血常规检查和生化分析显示,B-HLA-A11.1小鼠的各项参数与野生型对照相当,表明HLA-A11.1人源化未对红细胞组成、血细胞比容形态或心、肝、肾等主要器官的健康产生不良影响。总体而言,这些结果支持B-HLA-A11.1小鼠的正常发育,以及不存在归因于HLA人源化的自发性病理改变。为评估HLA限制性免疫原性,用KRAS*G12V肽免疫HLA-A11.1和野生型小鼠。ELISPOT分析证实,仅在HLA-A11.1小鼠中诱导出了肽特异性T细胞应答,凸显了该模型的HLA限制性功能。此外,用候选肽免疫小鼠后进行四聚体染色流式细胞术,结果表明该肽激活了抗原特异性CD8+ T细胞。这些活化的T细胞可用于后续的T细胞受体(TCR)筛选。 我们进一步在B-HLA-A11.1小鼠中评估了靶向KRAS*G12V的mRNA疫苗的疗效。与对照组相比,该疫苗显著抑制了肿瘤生长。此外,我们在该模型中研究了mRNA疫苗与抗PD-1抗体的联合应用。实验数据显示,联合治疗诱导的肿瘤生长抑制显著优于任一单药治疗。 总之,我们的研究结果表明,B-HLA-A11.1人源化小鼠模型可作为一个强大的临床前平台,用于对新型肽类和mRNA类疫苗进行体内和体外评估。
查看英文原文 English abstract
The Major Histocompatibility Complex (MHC) plays a critical role in the immune defense by presenting antigenic peptides and initiating T cell-mediated immunity. Due to significant genetic differences between animal MHC and the human leukocyte antigen (HLA) system, HLA-humanized mouse models provide a valuable platform for investigating HLA-A-restricted immune responses and facilitating vaccine development. In this study, we established a novel B-HLA-A11.1 humanized mouse model and systematically characterized its phenotypic and immunological profiles. Blood routine examination and biochemical analysis revealed that B-HLA-A11.1 mice exhibited parameters comparable to those of wild-type controls, indicating that HLA-A11.1 humanization did not adversely affect erythrocyte composition, hematocrit morphology, or the health of major organs such as the heart, liver, and kidneys. Overall, these results support the normal development of B-HLA-A11.1 mice and the absence of spontaneous pathology attributable to HLA humanization. To assess HLA-restricted immunogenicity, HLA-A11.1 and wild-type mice were immunized with a KRAS*G12V peptide. ELISPOT analysis confirmed the induction of peptide-specific T-cell responses exclusively in HLA-A11.1 mice, underscoring the model's HLA-restricted functionality. Furthermore, immunization of the mice with the candidate peptide, followed by tetramer staining flow cytometry, demonstrated that the peptide activated antigen-specific CD8+ T cells. These activated T cells can be utilized for subsequent T cell receptor (TCR) screening. We further evaluated the efficacy of an mRNA vaccine targeting KRAS*G12V in B-HLA-A11.1 mice. The vaccine significantly suppressed tumor growth compared to the control group. Furthermore, we investigated the combination of the mRNA vaccine with an anti-PD-1 antibody in this model. The experimental data revealed that the combination therapy induced a significantly greater inhibition of tumor growth than either monotherapy. In summary, our findings demonstrate that the B-HLA-A11.1 humanized mouse model serves as a robust preclinical platform for the in vivo and ex vivo assessment of novel peptide- and mRNA-based vaccines.
利益披露 Disclosure
Q. Wang, None.. Z. Niu, None.. S. Zhang, None.. X. Zhou, None.

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