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先天免疫介导的肿瘤微环境重塑的工程方法

英文原题:Engineering approaches for innate immune-mediated tumor microenvironment remodeling.

查看英文原题

Engineering approaches for innate immune-mediated tumor microenvironment remodeling.

PubMed 2023/10/06(内容时间) Immunooncol Technol

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中文摘要

癌症免疫疗法为治疗致命性癌症带来了变革性的希望,尤其是因为经过正确训练的免疫系统能够全面协调肿瘤清除,而无需持续的治疗干预。历史上,大多数免疫疗法都以T细胞为核心,包括免疫检查点抑制剂、CAR-T 细胞和T细胞疫苗。遗憾的是,以T细胞为核心的疗法在大多数实体瘤中未能实现最佳疗效,主要原因在于高度免疫抑制的“冷”或免疫排斥型肿瘤微环境(TME)。近年来,一种快速发展的治疗范式已经出现,其重点在于激活肿瘤驻留的固有抗原呈递细胞,如树突状细胞和巨噬细胞,这些细胞能够驱动促炎免疫反应,将TME从“冷”或免疫排斥型重塑为“热”型。早期的TME重塑策略以游离细胞因子和激动剂为中心,但这些方法在递送和疗效方面都面临重大障碍。脱靶炎症引起的全身毒性是这些疗法的首要关注问题。为弥补这一关键缺口,工程学方法提供了机会,为细胞因子、激动剂和其他治疗药物添加“内置”能力,以改善递送和疗效。这些能力包括保护性封装以使其免受降解、靶向修饰以高特异性将其导向肿瘤,以及共递送策略以利用协同促炎通路。

在此,我们综述了聚焦于细胞因子、先天免疫激动剂、免疫原性病毒和细胞方法的先天免疫介导的TME重塑工程策略,重点介绍了新兴的临床前方法以及正在临床试验中测试或已获美国食品药品监督管理局批准的策略。

展开英文摘要原文

Cancer immunotherapy offers transformative promise particularly for the treatment of lethal cancers, since a correctly trained immune system can comprehensively orchestrate tumor clearance with no need for continued therapeutic intervention. Historically, the majority of immunotherapies have been T cell-focused and have included immune checkpoint inhibitors, chimeric antigen receptor T cells, and T-cell vaccines. Unfortunately T-cell-focused therapies have failed to achieve optimal efficacy in most solid tumors largely because of a highly immunosuppressed 'cold' or immune-excluded tumor microenvironment (TME). Recently, a rapidly growing treatment paradigm has emerged that focuses on activation of tumor-resident innate antigen-presenting cells, such as dendritic cells and macrophages, which can drive a proinflammatory immune response to remodel the TME from 'cold' or immune-excluded to 'hot'.

Early strategies for TME remodeling centered on free cytokines and agonists, but these approaches have faced significant hurdles in both delivery and efficacy. Systemic toxicity from off-target inflammation is a paramount concern in these therapies.

To address this critical gap, engineering approaches have provided the opportunity to add 'built-in' capabilities to cytokines, agonists, and other therapeutic agents to mediate improved delivery and efficacy. Such capabilities have included protective encapsulation to shield them from degradation, targeting to direct them with high specificity to tumors, and co-delivery strategies to harness synergistic proinflammatory pathways.

Here, we review innate immune-mediated TME remodeling engineering approaches that focus on cytokines, innate immune agonists, immunogenic viruses, and cell-based methods, highlighting emerging preclinical approaches and strategies that are either being tested in clinical trials or already Food and Drug Administration approved.

论文信息

作者
Kane GI、Lusi CF、Brassil ML、Atukorale PU
单位
Department of Biomedical Engineering, University of Massachusetts Amherst, Amherst.United States
文献类型
综述
期刊
Immuno-oncology technology2024 Mar
原文标识
PubMed 38213392 · DOI 10.1016/j.iotech.2023.100406