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四盎司可移千钧物:纳米材料在肿瘤免疫治疗中的巨大价值。

Four Ounces Can Move a Thousand Pounds: The Enormous Value of Nanomaterials in Tumor Immunotherapy.

机构信息

Department of Urology, China-Japan Friendship Hospital, 100029, Beijing, P. R. China.

Department of Forensic Medicine, Harbin Medical University, 150001, Harbin, P. R. China.

出版信息

Adv Healthc Mater. 2023 Oct;12(26):e2300882. doi: 10.1002/adhm.202300882. Epub 2023 Aug 11.

Abstract

The application of nanomaterials in healthcare has emerged as a promising strategy due to their unique structural diversity, surface properties, and compositional diversity. In particular, nanomaterials have found a significant role in improving drug delivery and inhibiting the growth and metastasis of tumor cells. Moreover, recent studies have highlighted their potential in modulating the tumor microenvironment (TME) and enhancing the activity of immune cells to improve tumor therapy efficacy. Various types of nanomaterials are currently utilized as drug carriers, immunosuppressants, immune activators, immunoassay reagents, and more for tumor immunotherapy. Necessarily, nanomaterials used for tumor immunotherapy can be grouped into two categories: organic and inorganic nanomaterials. Though both have shown the ability to achieve the purpose of tumor immunotherapy, their composition and structural properties result in differences in their mechanisms and modes of action. Organic nanomaterials can be further divided into organic polymers, cell membranes, nanoemulsion-modified, and hydrogel forms. At the same time, inorganic nanomaterials can be broadly classified as nonmetallic and metallic nanomaterials. The current work aims to explore the mechanisms of action of these different types of nanomaterials and their prospects for promoting tumor immunotherapy.

摘要

纳米材料在医疗保健中的应用因其独特的结构多样性、表面特性和组成多样性而成为一种很有前途的策略。特别是,纳米材料在改善药物传递和抑制肿瘤细胞生长和转移方面发挥了重要作用。此外,最近的研究强调了它们在调节肿瘤微环境(TME)和增强免疫细胞活性以提高肿瘤治疗效果方面的潜力。目前,各种类型的纳米材料被用作药物载体、免疫抑制剂、免疫激活剂、免疫分析试剂等,用于肿瘤免疫治疗。用于肿瘤免疫治疗的纳米材料必然可以分为有机纳米材料和无机纳米材料两类。尽管两者都显示出实现肿瘤免疫治疗目的的能力,但它们的组成和结构特性导致其机制和作用方式存在差异。有机纳米材料可进一步分为有机聚合物、细胞膜、纳米乳液修饰和水凝胶形式。同时,无机纳米材料可以广泛地分为非金属和金属纳米材料。目前的工作旨在探索这些不同类型的纳米材料的作用机制及其在促进肿瘤免疫治疗方面的前景。

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