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免疫检查点的基因组编辑:CRISPR 介导的肿瘤中 PD-1 抑制

英文原题:Genome editing of immune checkpoints: CRISPR-mediated PD-1 inhibition in cancer.

PubMed 2025/11/04(内容时间) Semin Oncol Q1 · IF 6.8(JCR 2025)

研究概要

程序性细胞死亡蛋白1(PD-1)/程序性死亡配体1(PD-L1)免疫检查点是肿瘤逃避免疫监视的主要机制,限制了细胞毒性T淋巴细胞(CTLs)和TIL(肿瘤浸润淋巴细胞)(TILs)的疗效。

中文摘要

程序性细胞死亡蛋白1(PD-1)/程序性死亡配体1(PD-L1)免疫检查点是肿瘤逃避免疫监视的主要机制,限制了细胞毒性T淋巴细胞(CTL)和TIL(肿瘤浸润淋巴细胞)的疗效。尽管免疫检查点阻断疗法已经彻底改变了癌症治疗,但其疗效受到获得性耐药、T细胞耗竭和肿瘤异质性的限制。CRISPR-Cas9基因组编辑技术的出现提供了一种精确且多用途的方法来破坏PD-1或PD-L1,直接增强抗肿瘤免疫应答。临床前研究表明,在原发性人T细胞或TIL中进行离体PD-1敲除可增强增殖、细胞因子产生和细胞毒性,从而在异种移植和人源化小鼠模型中改善肿瘤清除。在嵌合抗原受体(CAR)T细胞治疗中,CRISPR介导的PD-1破坏可改善效应功能、持久性和抗耗竭能力,通用型和异体CAR-T平台从多重基因组编辑中获益。肿瘤细胞中直接的PD-L1敲除,通常通过纳米颗粒或生物材料辅助递送实现,可重塑免疫抑制性肿瘤微环境,促进T细胞浸润,并增强过继性细胞治疗的疗效。将PD-1编辑与病毒抗原靶向、长链非编码RNA(lncRNA)调控或常规检查点阻断相结合的组合策略显示出协同抗肿瘤效应。在临床上,非小细胞肺癌、间皮素阳性实体瘤和血液系统恶性肿瘤的早期试验已确立了PD-1缺陷T细胞的可行性、安全性和初步疗效。尽管取得了这些有希望的结果,但脱靶效应、递送效率、免疫原性、长期持久性和监管考量等挑战仍然存在。本综述旨在全面评估研究CRISPR介导的PD-1/PD-L1抑制在多种癌症中的临床前和临床研究,总结机制见解,并强调临床转化的机遇与挑战。

展开英文摘要原文

The programmed cell death protein 1 (PD-1)/programmed death-ligand 1 (PD-L1) immune checkpoint is a primary mechanism by which tumors evade immune surveillance, limiting the efficacy of cytotoxic T lymphocytes (CTLs) and tumor-infiltrating lymphocytes (TILs). Although immune checkpoint blockade therapies have revolutionized cancer treatment, their efficacy is restricted by acquired resistance, T-cell exhaustion, and tumor heterogeneity. The advent of CRISPR-Cas9 genome editing provides a precise and versatile approach to disrupt PD-1 or PD-L1, directly enhancing anti-tumor immune responses. Preclinical studies demonstrate that ex vivo PD-1 knockout in primary human T cells or TILs enhances proliferation, cytokine production, and cytotoxicity, resulting in improved tumor clearance in xenograft and humanized mouse models. In chimeric antigen receptor (CAR) T cell therapy, CRISPR-mediated disruption of PD-1 improves effector function, persistence, and resistance to exhaustion, with universal and allogeneic CAR-T platforms benefiting from multiplex genome editing. Direct PD-L1 knockout in tumor cells, often facilitated via nanoparticle- or biomaterial-assisted delivery, reshapes the immunosuppressive tumor microenvironment, promotes T cell infiltration, and enhances the efficacy of adoptive cellular therapy. Combination approaches integrating PD-1 editing with viral antigen targeting, long noncoding RNA (lncRNA) modulation, or conventional checkpoint blockade demonstrate synergistic anti-tumor effects. Clinically, early-phase trials in non-small cell lung cancer, mesothelin-positive solid tumors, and hematological malignancies establish the feasibility, safety, and preliminary efficacy of PD-1-deficient T cells. Despite these promising outcomes, challenges such as off-target effects, delivery efficiency, immunogenicity, long-term persistence, and regulatory considerations remain. This review aims to comprehensively evaluate preclinical and clinical studies investigating CRISPR-mediated PD-1/PD-L1 inhibition across various cancers, summarize mechanistic insights, and highlight translational opportunities and challenges for clinical implementation.

论文信息

作者
Mohammad SI、Kareem AK、Vasudevan A、Rekha MM、Jabir MS、Nayak P、AlKhafaje Z、Arora V
第一作者单位
Electronic Marketing and Social Media, Economic and Administrative Sciences Zarqa University, Jordan; Research follower, INTI International University, Negeri Sembilan 71800, Malaysia. Electronic address: dr_sliman@yahoo.com.Malaysia
通讯作者单位
Faculty of Business and Communications, INTI International University, Negeri Sembilan 71800, Malaysia; Shinawatra University, 99 Moo 10, Bangtoey, Samkhok, Pathum Thani 12160, Thailand. Electronic address: asokan.vasudevan@newinti.edu.my.Malaysia
文献类型
综述
期刊
Seminars in oncology2026 Feb
原文标识
PubMed 41313840 · DOI 10.1016/j.seminoncol.2025.152438