PO.IM01.07 · 免疫学

靶向CLDN18.2阳性胃癌和胰腺癌的同种异体CAR-iNKT细胞疗法

Allogeneic CAR-iNKT cell therapy targeting CLDN18.2-positive gastric and pancreatic cancers

海报缩略图:靶向CLDN18.2阳性胃癌和胰腺癌的同种异体CAR-iNKT细胞疗法
编号 140 展板 14 时间 4/19 02:00–05:00 区域 Section 7 主讲 Robson Dossa, PhD
分会场 Alternative Cell Type and in Situ Cell Therapies
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作者与单位 Authors & Affiliations

Clinton M. Heinze1, Elisa Landoni2, Michelle Ferguson1, Nicole van der Weerden1, Robson Dossa1, Simon Poon1, Kelvin Yip1, Jacqui Cumming1, Alfie Baker1, Sandford Sarah1, Michael J. Baker1, Barbara Savoldo2, Gianpietro Dotti2

1Arovella Therapeutics, Melbourne, Australia,2University of North Carolina, Chapel Hill, NC

摘要 Abstract

中文摘要
同种异体细胞疗法具有即时且可规模化地获得健康、强效效应细胞用于治疗实体瘤的优势,可克服患者免疫功能障碍和潜在的制造延迟,同时实现持久的抗肿瘤反应。恒定型自然杀伤T(iNKT)细胞是一类罕见的、特化的非常规T细胞亚群,代表了一种理想的同种异体细胞治疗平台。它们表达一种半恒定型T细胞受体(iTCR),可识别由单态、MHC样分子CD1d呈递的糖脂抗原。既往研究表明,iNKT细胞不诱导急性移植物抗宿主病,而经工程化改造以表达嵌合抗原受体(CAR)的iNKT细胞已显示出治疗潜力。除了通过CAR识别肿瘤外,iNKT细胞还可通过内源性iTCR结合糖脂结合的CD1d以及通过NKG2D受体来结合肿瘤。CAR-iNKT细胞由于其天然的归巢到组织、浸润肿瘤并调节肿瘤微环境的能力,在治疗实体瘤方面具有独特优势。 Claudin 18.2(CLDN18.2)已成为新型癌症疗法的一个高优先级靶点。在正常生理条件下,其表达仅限于上皮细胞间的紧密连接,且在细胞表面无法被接触到。然而,在包括胃癌、食管癌和胰腺癌在内的多种恶性肿瘤中,随着肿瘤细胞在生长和侵袭过程中丧失正常组织结构,CLDN18.2变得暴露于表面。这种在恶性组织中的异常呈递使CLDN18.2成为CAR导向细胞疗法的一个有吸引力的靶点。 在此,我们展示了首个靶向CLDN18.2的PBMC来源CAR-iNKT细胞治疗产品。这种第二代CAR具有一个源自SPX-101的单链可变片段(scFv),SPX-101是一种为增强对CLDN18.2的亲和力和选择性而工程化改造的新型单克隆抗体。为支持iNKT细胞功能,纳入了膜结合IL-12(IL-12-TM)以提供细胞因子铠甲,此举已被证明可增强CAR-iNKT细胞活性。在本研究中,从健康供体PBMC中分离iNKT细胞,进行活化,转导使其表达CLDN18.2 CAR(伴或不伴IL-12-TM共表达),并在培养中扩增。使用针对CLDN18.2阳性胃癌和胰腺癌细胞系的连续肿瘤再攻击实验评估细胞毒性活性和效应细胞扩增。CLDN18.2 CAR-iNKT细胞对CLDN18.2阳性肿瘤细胞表现出强效且持续的细胞毒性活性,而IL-12-TM的共表达改善了在反复高肿瘤负荷下反应的持久性和持续性。这些发现支持细胞因子铠甲化的CLDN18.2导向CAR-iNKT细胞作为治疗胃癌和胰腺癌的同种异体细胞疗法的潜力。
查看英文原文 English abstract
Allogeneic cell therapy offers the advantage of immediate and scalable access to healthy and potent effector cells for the treatment of solid tumors, overcoming patient immune dysfunction and potential manufacturing delays, while enabling durable anti-tumor responses. Invariant natural killer T (iNKT) cells are a rare, specialized subset of unconventional T cells that represent an ideal allogeneic cell therapy platform. They express a semi-invariant T cell receptor (iTCR) that recognizes glycolipid antigens presented by the monomorphic, MHC-like molecule, CD1d. Previous studies have shown that iNKT cells do not induce acute graft-versus-host disease, and iNKT cells engineered to express chimeric antigen receptors (CARs) have demonstrated therapeutic potential. In addition to tumor recognition via the CAR, iNKT cells can engage tumors via the endogenous iTCR binding to glycolipid-bound CD1d and via the NKG2D receptor. CAR-iNKT cells offer distinct advantages in the treatment of solid tumors due to their natural ability to home to tissues, infiltrate tumors, and modulate the tumor microenvironment. Claudin 18.2 (CLDN18.2) has emerged as a high-priority target for novel cancer therapies. Under normal physiological conditions, its expression is limited to tight junctions between epithelial cells and remains inaccessible on the cell surface. However, in several malignancies, including gastric, esophageal, and pancreatic cancers, CLDN18.2 becomes surface-exposed as tumor cells lose normal tissue architecture during growth and invasion. This aberrant presentation in malignant tissue makes CLDN18.2 an attractive target for CAR-directed cell therapies. Here, we present the first PBMC-derived CAR-iNKT cell therapy product targeting CLDN18.2. This second-generation CAR features a short chain variable fragment (scFv) derived from SPX-101, a novel monoclonal antibody engineered for enhanced affinity and selectivity for CLDN18.2. To support iNKT cell function, membrane-bound IL-12 (IL-12-TM) was incorporated to provide cytokine armouring, which has been shown to enhance CAR-iNKT cell activity. In this work, iNKT cells were isolated from healthy donor PBMCs, activated, transduced to express the CLDN18.2 CAR with and without IL-12-TM co-expression, and expanded in culture. Cytotoxic activity and effector expansion were evaluated using a serial tumor re-challenge assay against CLDN18.2-positive gastric and pancreatic cancer cell lines. CLDN18.2 CAR-iNKT cells exhibited potent and sustained cytotoxic activity against CLDN18.2-positive tumor cells, and co-expression of IL-12-TM improved the persistence and durability of response under repeated high tumour burden. These findings support the potential of cytokine-armoured CLDN18.2-directed CAR-iNKT cells as an allogeneic cell therapy for the treatment of gastric and pancreatic cancers.
利益披露 Disclosure
C. M. Heinze, Arovella Therapeutics Employment, Stock, Stock Option. E. Landoni, Arovella Therapeutics ). M. Ferguson, Arovella Therapeutics Employment, Stock, Stock Option. N. van der Weerden, Arovella Therapeutics Employment, Stock, Stock Option. R. Dossa, Arovella Therapeutics Employment, Stock, Stock Option. S. Poon, Arovella Therapeutics Employment, Stock, Stock Option. K. Yip, Arovella Therapeutics Employment, Stock, Stock Option. J. Cumming, Arovella Therapeutics Employment, Stock, Stock Option. A. Baker, Arovella Therapeutics Employment, Stock, Stock Option. S. Sarah, Arovella Therapeutics Employment, Stock, Stock Option. M. J. Baker, Arovella Therapeutics Employment, Stock, Stock Option. B. Savoldo, Arovella Therapeutics ). G. Dotti, Arovella Therapeutics ).

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