PO.CL06.01 · 临床研究
表位编码mRNA-LNP疫苗增强PHOX2B肽中心型CAR-T细胞的抗肿瘤效力和持久性
Epitope-encoded mRNA-LNP vaccine to enhance anti-tumor potency and persistence of PHOX2B peptide-centric CAR T cells
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:一项1/1b期临床试验正在测试肽中心型嵌合抗原受体(PC-CAR)T细胞,该细胞识别源自主要神经母细胞瘤癌蛋白PHOX2B、在HLA-A*24:02及其他20种HLA-A等位基因背景下呈递的肽,早期显示出安全性和疗效的迹象(NCT07007117)。预期实现持久治愈的障碍包括持久性不佳和恶劣的肿瘤免疫微环境(TIME)。我们假设,通过部署一种"CAR增强"型PHOX2B表位编码mRNA-脂质纳米颗粒(LNP)疫苗,可在不损害安全性的前提下增强持久性和效力。
方法:我们建立了一个筛选平台,以测试各种PHOX2B mRNA和LNP设计,此处报告优先选择的配方:由FDA批准的LNP SM-102包封的核苷修饰PHOX2B 9聚体单体。同时,我们建立了NB的基因工程小鼠模型(GEMM),以在体内部署我们的PHOX2B表位mRNA-LNP疫苗接种策略。
结果:用疫苗处理的A24+健康供体或NB患者单核细胞来源树突状细胞(moDC),相较于肿瘤细胞表现出对数级更高的PHOX2B 9聚体呈递,并上调T细胞共刺激配体CD80/86和CD40。暴露于疫苗处理moDC的PC-CAR-T细胞,相较于与HLA匹配的NB细胞系共培养,其增殖、多功能性和迁移标志物显著增加。此外,与肿瘤诱导的PD1ʰⁱ CD39ʰⁱ终末效应细胞相比,疫苗处理的moDC富集了中央、效应和/或干细胞记忆型PC-CAR-T细胞免疫表型(依赖于供体/患者)。用疫苗处理moDC预激的PC-CAR-T细胞在连续肿瘤再攻击中维持了显著更强的细胞毒性。使用O-link蛋白质组学和转录谱对mRNA-LNP对DC和PC-CAR-T细胞功能的免疫生物学效应进行的全面表征正在进行中,将另行报告。
GEMM来源的同种异体移植物忠实地重现了人类疾病,并表达一种嵌合HLA-A*24:02/H-2Kb MHC,呈递保守的PHOX2B 9聚体。用临床scFv与鼠源41BB-或CD28-CD3ζ连接而构建的鼠源(m)PC-CAR-T细胞对A24/H-2Kb同种异体移植物具有多功能性和细胞毒性。疫苗处理的A24/H-2Kb敲入小鼠通过脾脏和淋巴结中的DC呈递PHOX2B 9聚体,激活PC-CAR-T细胞。对mPC-CAR-T扩增、记忆形成和抗肿瘤效力以及TIME空间组学分析的全面体内评估正在进行中,将另行报告。
结论:这些支持IND申报的研究将为我们在即将进行的试验修订中,以推荐的2期PC-CAR-T细胞剂量制定临床疫苗给药策略提供信息。这种CAR增强疫苗不仅可能改善PC-CAR-T细胞治疗NB的疗效,还可能为其他过继性细胞疗法的mRNA-LNP增强策略提供指导。
查看英文原文 English abstract
Background: A Phase 1/1b clinical trial testing peptide-centric chimeric antigen receptor (PC-CAR) T cells that recognize a peptide derived from the major neuroblastoma oncoprotein PHOX2B presented in the context of HLA-A*24:02 and 20 other HLA-A alleles is showing early signs of safety and efficacy (NCT07007117). Anticipated barriers to durable cures include poor persistence and a hostile tumor immune microenvironment (TIME). We hypothesize that persistence and potency can be enhanced, without compromising safety, through the deployment of a “CAR boosting” PHOX2B epitope-encoding mRNA-lipid nanoparticle (LNP) vaccine.
Methods: We established a screening platform to test various PHOX2B mRNAs and LNP designs, and here report on the prioritized formulation: a nucleoside-modified PHOX2B 9mer monomer encapsulated by FDA-approved LNP SM-102. In parallel, we established a genetically engineered mouse model (GEMM) of NB to deploy our PHOX2B epitope mRNA-LNP vaccination strategy in vivo .
Results: A24 + healthy donor or NB patient monocyte-derived dendritic cells (moDCs) treated with vaccine exhibited log-fold higher PHOX2B 9mer presentation compared to tumor cells and upregulated T cell costimulatory ligands CD80/86 and CD40. PC-CAR T cells exposed to vaccine-treated moDCs had significantly increased proliferation, polyfunctionality, and migratory markers compared to co-cultures with HLA matched NB cell lines. Moreover, vaccine-treated moDCs enriched central, effector, and/or stem cell memory PC-CAR T cell immunophenotypes (donor/patient-dependent) compared to tumor-induced PD1 hi CD39 hi terminal effectors. PC-CAR T cells primed with vaccine-treated moDCs maintained significantly greater cytotoxicity in serial tumor rechallenges. A comprehensive characterization of the immunobiological effects of mRNA-LNP on DC and PC-CAR T cell function using O-link proteomics and transcriptional profiling are ongoing and will be reported.
GEMM-derived allografts faithfully recapitulate human disease and express a chimeric HLA-A*24:02/H-2K b MHC that presents a conserved PHOX2B 9mer. Murine (m)PC-CAR T cells engineered with clinical scFv conjoined to murine 41BB- or CD28-CD3ζ were polyfunctional and cytotoxic against A24/H-2K b allografts. Vaccine-treated A24/H-2K b knock-in mice presented PHOX2B 9mer by DCs in spleen and lymph nodes, activating PC-CAR T cells. Comprehensive in vivo evaluation of mPC-CAR-T expansion, memory formation, and anti-tumor potency with TIME spatialomic profiling are ongoing and will be reported.
Conclusion: These IND-enabling studies will inform our clinical vaccine dosing strategy with the recommended Phase 2 PC-CAR T cell dose in an upcoming trial amendment. This CAR boosting vaccine may not only improve efficacy of PC-CAR T cells for NB but also guide mRNA-LNP enhancement strategies for other adoptive cellular therapies.
利益披露 Disclosure
T. T. Spear, None..
N. Hartnett, None..
E. Posthill, None..
D. Groff, None..
D. Al-Halawani, None..
M. Samanta, None..
K. O'Reilly, None..
R. Kapoor, None..
M. Want, None..
L. Liu, None..
T. Wang, None..
R. Madnick, None..
I. Shkundina, None..
K. R. Bosse, None..
M. Alameh, None..
D. Weissman, None..
J. M. Maris, None.