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基于生物材料的平台用于调节免疫组分以对抗癌症和癌症干细胞

英文原题:Biomaterial-based platforms for modulating immune components against cancer and cancer stem cells.

查看英文原题

Biomaterial-based platforms for modulating immune components against cancer and cancer stem cells.

PubMed 2023/03/10(内容时间) Acta Biomater Q1 · IF 10.4(JCR 2025)

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中文摘要

免疫治疗涉及对患者免疫系统进行治疗性改造,以识别、靶向和消除癌细胞。树突状细胞、巨噬细胞、髓源性抑制细胞和调节性T细胞构成了肿瘤微环境。在癌症中,这些免疫成分(与一些非免疫细胞群体如癌症相关成纤维细胞相关联)在细胞水平上被直接改变。通过分子串扰主导免疫细胞,癌细胞可以不受控制地增殖。当前的临床免疫治疗策略仅限于传统的过继性细胞治疗或免疫检查点阻断。靶向和调节关键免疫成分提供了一个有效的机会。免疫刺激药物是一个研究热点,但其较差的药代动力学、低肿瘤积累和非特异性全身毒性限制了其使用。本综述描述了在纳米技术和材料科学领域开展的前沿研究,以开发基于生物材料的平台作为有效的免疫治疗剂。探讨了各种生物材料类型(聚合物基、脂质基、碳基、细胞衍生等)以及用于调节肿瘤相关免疫/非免疫细胞的功能化方法。

此外,重点讨论了这些平台如何用于对抗癌症干细胞,癌症干细胞是化疗耐药、肿瘤复发/转移和免疫治疗失败的根本原因。总体而言,这篇综合性综述旨在为在生物材料和癌症免疫治疗交叉领域工作的读者提供最新信息。意义声明:癌症免疫治疗具有巨大的潜力,并已成功转变为临床上具有盈利潜力的传统抗癌疗法的替代方案。随着新的免疫治疗药物迅速获得临床批准,与免疫系统动态特性相关的基本问题(如有限的临床缓解率和自身免疫相关的不良反应)仍未得到解决。

在此背景下,聚焦于调节肿瘤微环境中受损免疫成分的治疗策略已引起科学界的广泛关注。本综述旨在批判性地讨论如何将各种生物材料(基于聚合物的、基于脂质的、基于碳的、细胞来源的等)与免疫刺激剂联合使用,以设计用于针对癌症和癌症干细胞的选择性免疫治疗的创新平台。

展开英文摘要原文

Immunotherapy involves the therapeutic alteration of the patient's immune system to identify, target, and eliminate cancer cells. Dendritic cells, macrophages, myeloid-derived suppressor cells, and regulatory T cells make up the tumor microenvironment. In cancer, these immune components (in association with some non-immune cell populations like cancer-associated fibroblasts) are directly altered at a cellular level. By dominating immune cells with molecular cross-talk, cancer cells can proliferate unchecked. Current clinical immunotherapy strategies are limited to conventional adoptive cell therapy or immune checkpoint blockade.

Targeting and modulating key immune components presents an effective opportunity. Immunostimulatory drugs are a research hotspot, but their poor pharmacokinetics, low tumor accumulation, and non-specific systemic toxicity limit their use.

This review describes the cutting-edge research undertaken in the field of nanotechnology and material science to develop biomaterials-based platforms as effective immunotherapeutics. Various biomaterial types (polymer-based, lipid-based, carbon-based, cell-derived, etc.) and functionalization methodologies for modulating tumor-associated immune/non-immune cells are explored.

Additionally, emphasis has been laid on discussing how these platforms can be used against cancer stem cells, a fundamental contributor to chemoresistance, tumor relapse/metastasis, and failure of immunotherapy.

Overall, this comprehensive review strives to provide up-to-date information to an audience working at the juncture of biomaterials and cancer immunotherapy. STATEMENT OF SIGNIFICANCE: Cancer immunotherapy possesses incredible potential and has successfully transitioned into a clinically lucrative alternative to conventional anti-cancer therapies. With new immunotherapeutics getting rapid clinical approval, fundamental problems associated with the dynamic nature of the immune system (like limited clinical response rates and autoimmunity-related adverse effects) have remained unanswered.

In this context, treatment approaches that focus on modulating the compromised immune components within the tumor microenvironment have garnered significant attention amongst the scientific community. This review aims to provide a critical discussion on how various biomaterials (polymer-based, lipid-based, carbon-based, cell-derived, etc.) can be employed along with immunostimulatory agents to design innovative platforms for selective immunotherapy directed against cancer and cancer stem cells.

论文信息

作者
Desai N、Hasan U、K J、Mani R、Chauhan M、Basu SM、Giri J
第一作者单位
Department of Biomedical Engineering, Indian Institute of Technology Hyderabad, Kandi, Telangana, India.India
通讯作者单位
Department of Biomedical Engineering, Indian Institute of Technology Hyderabad, Kandi, Telangana, India. Electronic address: jgiri@bme.iith.ac.in.India
文献类型
综述 · 非美国政府资助研究
期刊
Acta biomaterialia2023 Apr 15
原文标识
PubMed 36907233 · DOI 10.1016/j.actbio.2023.03.004