PO.IM01.05 · 免疫学

利用TGF-beta抵抗性和IL-18诱导性产生改善靶向BCMA的CAR-T细胞治疗骨髓瘤

Improving BCMA-targeted CAR-T cell therapy of myeloma using TGF-beta resistance and inducible production of IL-18

海报缩略图:利用TGF-beta抵抗性和IL-18诱导性产生改善靶向BCMA的CAR-T细胞治疗骨髓瘤
编号 1520 展板 2 时间 4/20 09:00–12:00 区域 Section 7 主讲 Sandhya Rai, PhD
分会场 CAR T Cell Targets and TME Reprogramming
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作者与单位 Authors & Affiliations

Sandhya Rai1, Shijing Wang1, Bin Sun1, Tyce Kearl1, Peiman Hematti1, Joseph Zenga2, Heather Himburg3, Musaddiq Awan3, Deepak Parashar1, Binod Dhakal1, Siegfried Janz1, Fumou Sun1

1Department of Medicine, Medical College of Wisconsin, Milwaukee, WI,2Department of Otolaryngology, Medical College of Wisconsin, Milwaukee, WI,3Department of Radiation Oncology, Medical College of Wisconsin, Milwaukee, WI

摘要 Abstract

中文摘要
背景:尽管采用B细胞成熟抗原(BCMA)靶向嵌合抗原受体(CAR)T细胞(简称BCMA CART)的免疫治疗在复发和/或难治性多发性骨髓瘤(RRMM)患者中取得了前所未有的治疗应答,但在大多数情况下,其疗效因缺乏持久性而受限。这在很大程度上被归因于RRMM的免疫抑制性骨髓环境(BME),导致BCMA CART失活、耗竭和消耗。能够克服BME依赖性抑制约束的下一代CART,可能为RRMM带来更持久的治疗选择。 方法:为指导能在骨髓瘤浸润的骨髓中维持长期活性的BCMA CART的设计,我们利用了近期发表的一个单细胞RNA测序数据集GSE210079,该数据集来自9例RRMM患者的BME。根据临床结局,将患者分层为早期复发(<3个月)和晚期复发(>12个月)组。生物计算分析显示,TGF-beta信号传导和T细胞耗竭通路的激活,以及IL-18驱动的免疫应答的抑制,与BCMA CAR-T治疗后早期复发的驱动机制相关。受这些发现的启发,我们采用标准分子生物学工具制造了兼具TGF-beta抵抗性并同时破坏PD-1表达且能实现诱导性IL-18分泌的BCMA CART。 结果:与晚期复发骨髓瘤的T细胞相比,早期复发骨髓瘤的T细胞表现出上调的致癌信号回路(p53、FoxO、AMPK)、耗竭相关基因的升高表达(PDCD1、HAVCR2、LAG3、CTLA4、TIGIT;p < 0.01)以及关键TGF-beta通路基因(TGFB1、SMAD2/3/4、TGFBR2)mRNA水平的增加。早期复发骨髓瘤表现出由IL-18调控的TCR信号传导和Th1/Th2分化的减弱。通过强制表达一个显性负性、可结合配体但不传导信号的转化生长因子beta受体2(dnTFGBR2),使BCMA CART获得对TGF-beta的抵抗性。在PDCD1位点单等位基因“敲入”一个编码IL-18的基因依赖于CRISPR/Cas9介导的编辑。经基因修饰的BCMA CAR-T细胞在体外对骨髓瘤细胞表现出强效的细胞毒活性、对TGF-beta介导的抑制增加的抵抗性,以及由内源性PDCD1启动子驱动的诱导性IL-18分泌。IL-18水平的升高与T细胞激活相关,同时伴随PD-1表达的沉默。 结论:当BCMA CART在BME中受到耗竭挑战时能产生IL-18并因而破坏PD-1,具有TGF-beta抵抗性的此类细胞可能是为RRMM患者提供比现有疗法更强效、更持久治疗的可行途径。这一假设将在我们实验室正在进行的临床前体内研究中得到更深入的评估。
查看英文原文 English abstract
Background: Although immunotherapy with B cell maturation antigen (BCMA)-targeted chimeric antigen receptor (CAR) T cells, or BCMA CARTs for short, has yielded unprecedented treatment responses in patients with relapsed and/or refractory multiple myeloma (RRMM), efficacy is limited by lack of durability in most cases. This has been attributed, in large part, to the immunosuppressive bone marrow environment (BME) of RRMM, leading to inactivation, exhaustion and attrition of BCMA CARTs. Next-generation CARTs, capable of overcoming BME-dependent inhibitory constraints, may lead to more durable treatment options for RRMM. Methods: To inform the design of BCMA CARTs that can maintain long-term activity in the myeloma-laden bone marrow, we leveraged a recently published single-cell RNA sequencing dataset, GSE210079, of the BME from 9 patients with RRMM. Based on clinical outcomes, patients were stratified into early relapse (<3 months) and late relapse (>12 months) groups. Biocomputational analyses revealed that activation of TGF-beta signaling and T cell exhaustion pathways, along with suppression of IL-18-driven immune responses, were implicated in the mechanisms driving early-relapse post-BCMA CAR-T treatment. Inspired by these findings, we employed standard molecular biology tools to manufacture BCMA CARTs that feature both TGF-beta resistance and simultaneously disrupt PD‑1 expression and enabling inducible IL‑18 secretion. Result: Compared to T cells from late-relapse myeloma, T cells from early-relapse myeloma demonstrated upregulated oncogenic signaling circuits (p53, FoxO, AMPK), elevated expression of exhaustion-related genes ( PDCD1 , HAVCR2 , LAG3 , CTLA4, TIGIT; p < 0.01), and increased mRNA levels of key TGF-beta pathway genes ( TGFB1 , SMAD2/3 / 4 , TGFBR2 ). Early-relapse myeloma exhibits reduced TCR signaling and Th1/Th2 differentiation, which are regulated by IL-18. BCMA CARTs were rendered resistant to TGF-beta by enforced expression of a dominant-negative ligand-binding but non-signaling transforming growth factor beta receptor 2 (dnTFGBR2). Monoallelic “knock-in” of an IL-18 encoding gene in the PDCD1 locus relied on CRISPR/Cas9-mediated editing. The genetically modified BCMA CAR-T cells demonstrated potent cytotoxic activity against myeloma cells in vitro, increased resistance to TGF-beta-mediated suppression, and inducible secretion of IL-18 driven by the endogenous PDCD1 promoter. IL‑18 levels increased in correlation with T cell activation, accompanied by a concomitant silencing of PD‑1 expression. Conclusion: TGF-beta-resistant BCMA CARTs that produce IL-18 when the cells are challenged by exhaustion in the BME, and thus disrupt PD-1, may be viable way forward to a more potent and durable therapy for patients with RRMM than available today. This hypothesis will be evaluated in greater depth in preclinical in vivo studies ongoing in our laboratory.
利益披露 Disclosure
S. Rai, None.. S. Wang, None.. B. Sun, None.. T. Kearl, None.. P. Hematti, None.. J. Zenga, None.. H. Himburg, None.. M. Awan, None.. D. Parashar, None. B. Dhakal, Natera Other, Honoraria. GlaxoSmithKline Other, Honoraria. Genentech Other, Consultancy. Caribou ), Other, Consultancy. Ichnos ). Menarini Other, Honoraria. Johnson & Johnson Other, Consultancy. Kite ), Other, Honoraria. Karyopharm Other, Consultancy and Honoraria. Carsgen ). Bristol Myers Squibb ), Other, Consultancy and Honoraria. Janssen ), Other, Consultancy and Honoraria. Arcellx ), Other, Consultancy and Honoraria. AstraZeneca Other, Honoraria. Pfizer ), Other, Consultancy. S. Janz, None.. F. Sun, None.

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