Intraperitoneal programming of tailored CAR macrophages via mRNA-LNP to boost cancer immunotherapy

Author:

Gu Kedan,Liang Ting,Hu Luting,Zhao Yifan,Ying Weiyang,Zhang Mengke,Chen Yashuang,Liang Benmeng,Lin Xinrui,Zhang Yanqi,Wu Hongyu,Wang Meng,Zhu Yuping,Wang Wenxi,Zhang Yu,Zuo Chao,Du Zhen,Zhang Penghui,Song Jia,Liu XiangshengORCID,Xie SitaoORCID,Tan WeihongORCID

Abstract

ABSTRACTTherapeutic strategies for peritoneal metastasis in solid tumors are urgently needed in the clinic. Programming chimeric antigen receptor macrophages (CAR-Ms)in situoffers opportunities for an unmet demand. However, potential intracellular domains (ICDs) for CAR design and their antitumor mechanisms for macrophage empowerment remain to be explored systematically. By developing a targeted mRNA-LNP delivery system for macrophages, we have investigated 36 CAR combinations to determine the impact of CAR-Ms on immune regulationin vitroandin vivo. In two solid tumor mouse models, intraperitoneal programming of CAR-Ms was shown to elicit robust adaptive immune activation and significantly synergize with PD-1/L1 therapy. Single-cell RNA sequencing (scRNA-seq) analysis revealed that CAR-Ms could reshape the immunosuppressive tumor microenvironment (TME) and boost the TCF1+PD-1+progenitor- exhausted CD8+T cells (Tpex) population. Meanwhile, we found that tailored CAR-M with CD3ζ/TLR4 ICDs could favorably maintain proinflammatory phenotype and simultaneously upregulate MHC I and PD-L1 expression by perturbing NF-κB pathways. Moreover, the synergism between macrophage PD-L1 knockdown and CAR-M therapy highlighted the need to block the PD-1/L1 axis in antigen cross-presentation. In short, we developed an mRNA-LNP delivery system for intraperitoneal programming of tailored CAR-Msin vivoand broadened understanding of both regulatory and feedback mechanisms for CAR-M therapies against solid tumors.

Publisher

Cold Spring Harbor Laboratory

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