PO.CL05.13 · 临床研究
靶向胃癌的装甲型claudin 18.2纳米抗体CAR NK细胞的临床前研究
Preclinical study of armored claudin 18.2 nanobody CAR NK cells targeting gastric cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:
Claudin 18.2(CLDN18.2)在胃癌中高表达,而在正常组织中表达极少,使其成为工程化细胞疗法的一个有吸引力的靶点。CAR NK细胞引发炎性细胞因子的风险可能较低,且可能易于获取用于异基因或“现货型”应用。然而,传统CAR NK方法在应对实体瘤时往往表现出持久性有限和活性降低。为增强抗肿瘤活性和持久性,我们开发了整合IL-15/IL15sushi装甲的基于CLDN18.2纳米抗体的CAR NK细胞。本研究评估了通过非饲养细胞依赖性NK扩增平台生成的装甲型CLDN18.2 CAR NK细胞构建体的体外和体内抗肿瘤疗效及持久性。
方法:
用重组人CLDN18.2胞外结构域蛋白免疫羊驼。提取外周血单个核细胞(PBMC)mRNA并转化为VHH(纳米抗体)以构建文库。将该文库针对CLDN18.2抗原进行淘选以富集高亲和力结合体,通过ELISA筛选和流式细胞术细胞结合分析加以鉴定。对VHH克隆进行测序以生成我们的cCAR。通过筛选鉴定出一种CLDN18.2特异性纳米抗体,并用于生成装甲型CLDN18.2 CAR NK细胞构建体。从冻存脐血中分离NK细胞,并使用非饲养细胞依赖性NK扩增平台进行扩增。通过流式细胞术测量CAR表达。使用SNU-601和REH-C18.2xp靶细胞评估细胞毒性。NSG小鼠接受CAR NK细胞。
结果:
装甲型CLDN18.2 CAR NK细胞在NK细胞转导后显示出强烈的CAR表达。CLDN18.2 CAR NK细胞在多个效靶比下均展现出显著的体外细胞毒性,快速而完全地清除了CLDN18.2阳性靶标。在体内,观察到装甲型CLDN18.2 CAR NK细胞发挥强大的抗肿瘤活性,使SNU-601异种移植瘤消退。在NSG小鼠中,装甲型CLDN18.2 CAR NK细胞使肿瘤迅速缩小,并在小鼠外周血中可测得NK细胞持久性。
结论:
通过非饲养细胞依赖性NK扩增平台生成的装甲型CLDN18.2纳米抗体CAR NK细胞在CLDN18.2阳性肿瘤模型中显示出强大的抗肿瘤活性和更好的体内表现。CAR NK细胞在输注后也表现出持续的持久性。总之,这些发现支持未来在CLDN18.2阳性胃癌患者中对我们的平台进行临床研究。
查看英文原文 English abstract
Introduction:
Claudin 18.2 (CLDN18.2) is highly expressed in gastric cancer with minimal expression in normal tissues, making it an attractive target for engineered cell therapies. CAR NK cells offer a potentially lower risk of inciting inflammatory cytokines and may be easily sourced for allogeneic or “off-the-shelf” use. However, conventional CAR NK approaches often show limited persistence and reduced activity when engaging with solid tumors. To enhance antitumor activity and persistence, we developed CLDN18.2 nanobody-based CAR NK cells incorporating IL-15/IL15sushi armoring. This study evaluated the antitumor efficacy and persistence in vitro and in vivo of the armored CLDN18.2 CAR NK cell construct generated via a feeder-independent NK expansion platform.
Methods:
Alpacas were immunized with recombinant human CLDN18.2 extracellular domain protein. Peripheral blood mononuclear cell (PBMC) mRNA was extracted and converted into a VHH (nanobody) to generate a library. The library was panned against CLDN18.2 antigen to enrich for high-affinity binders, which were identified through ELISA screening and cellular binding analysis by flow cytometry. VHH clone sequencing were used to generate our cCAR.A CLDN18.2-specific nanobody was identified through screening and used to generate an armored CLDN18.2 CAR NK cell construct. NK cells were isolated from cryopreserved cord blood and expanded using a feeder-independent NK expansion platform. CAR expression was measured by flow cytometry. Cytotoxicity was assessed using SNU-601 and REH-C18.2xp target cells. NSG mice received CAR NK cells.
Results:
The armored CLDN18.2 CAR NK cells displayed strong CAR expression following NK cell transduction. CLDN18.2 CAR NK cells demonstrated remarkable in vitro cytotoxicity across
multiple effector-to-target ratios, eliminating CLDN18.2-positive targets rapidly and completely. In vivo, the armored CLDN18.2 CAR NK cells were observed to impart strong anti-tumor activity resulting in regression in SNU-601 xenografts. In NSG mice, armored CLDN18.2 CAR NK cells resulted in rapid tumor reduction and measurable NK persistence in mouse peripheral blood.
Conclusions:
Armored CLDN18.2 nanobody CAR NK cells generated via a feeder-independent NK expansion platform showed strong antitumor activity and improved in-vivo performance in CLDN18.2-positive tumor models. CAR NK cells also demonstrated sustained persistence following infusion. Together, these findings support future clinical investigation of our platform in patients with CLDN18.2-positive gastric cancer.
利益披露 Disclosure
B. Choi,
iCell Gene Therapeutics Inc. Employment.
G. Hwang,
iCell Gene Therapeutics Inc. Employment.
M. Flaherty,
iCell Gene Therapeutics Inc. Employment.
V. DeStefano,
iCell Gene Therapeutics Inc. Employment.
M. Wada,
iCell Gene Therapeutics Inc. Employment.
K. Pinz,
icell Gene Therapeutics Inc. Employment.
J. Chow,
iCell Gene Therapeutics Inc. Employment.
N. Hagag,
iCell Gene Therapeutics Inc. Employment.
Y. Ma,
iCAR Bio Therapeutics Ltd Employment.
J. Luo,
iCAR Bio Therapeutics Ltd Employment.
Y. Ma,
iCell Gene Therapeutics Inc. Employment.