Bioactive poly(amino acid)s for multi-modal cancer therapy.

Guanqing Yang, Jianxun Ding, Xuesi Chen
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引用次数: 0

Abstract

The interplay between the tumor cells and their microenvironments is as inseparable as the relationship between "seeds" and "soil." The tumor microenvironments (TMEs) exacerbate malignancy by enriching malignant cell subclones, generating extracellular matrices, and recruiting immunosuppressive cells, thereby diminishing the efficacy of clinical therapies. Modulating TMEs has emerged as a promising strategy to enhance cancer therapy. However, the existing drugs used in clinical settings do not target the TMEs specifically, underscoring the urgent need for advanced strategies. Bioactive materials present unique opportunities for modulating TMEs. Poly(amino acid)s with precisely controllable structures and properties offer exceptional characteristics, such as diverse structural units, excellent biosafety, ease of modification, sensitive biological responsiveness, and unique secondary structures. These attributes hold significant potential for the modulation of TMEs and clinical applications further. Consequently, developing bioactive poly(amino acid)s capable of modulating the TMEs by elucidating structure-activity relationships and mechanisms is a promising approach for innovative clinical oncology therapy. This review summarizes the recent progress of our research team in developing bioactive poly(amino acid)s for multi-modal tumor therapy. First, a brief overview of poly(amino acid) synthesis and their advantages as nanocarriers is provided. Subsequently, the pioneering research of our research group on synthesizing the biologically responsive, dynamically allosteric, and immunologically effective poly(amino acid)s are highlighted. These poly(amino acid)s are designed to enhance tumor therapy by modulating the intracellular, extracellular matrix, and stromal cell microenvironments. Finally, the future development of poly(amino acid)s is discussed. This review will guide and inspire the construction of bioactive poly(amino acid)s with promising clinical applications in cancer therapy. This article is categorized under: Therapeutic Approaches and Drug Discovery > Nanomedicine for Oncologic Disease Biology-Inspired Nanomaterials > Peptide-Based Structures.

Abstract Image

用于多模式癌症治疗的生物活性聚氨基酸。
肿瘤细胞与其微环境之间的相互作用就像 "种子 "与 "土壤 "之间的关系一样密不可分。肿瘤微环境(TMEs)通过富集恶性细胞亚克隆、生成细胞外基质和招募免疫抑制细胞来加剧恶性肿瘤,从而降低临床疗法的疗效。调节 TMEs 已成为一种很有前景的癌症治疗策略。然而,临床上使用的现有药物并不专门针对TMEs,因此迫切需要先进的策略。生物活性材料为调节 TMEs 提供了独特的机会。结构和性质可精确控制的聚氨基酸具有独特的特性,如结构单元多样、生物安全性高、易于修饰、生物反应灵敏以及二级结构独特。这些特性为进一步调节 TME 和临床应用提供了巨大的潜力。因此,通过阐明结构-活性关系和机制来开发能够调节 TMEs 的生物活性聚(氨基酸)是一种很有前景的创新型临床肿瘤治疗方法。本综述总结了我们的研究团队在开发用于多模式肿瘤治疗的生物活性聚(氨基酸)方面的最新进展。首先,简要介绍了聚(氨基酸)的合成及其作为纳米载体的优势。随后,重点介绍了我们研究小组在合成具有生物响应性、动态异构性和免疫有效性的聚(氨基酸)方面的开创性研究。这些聚(氨基酸)旨在通过调节细胞内、细胞外基质和基质细胞的微环境来提高肿瘤治疗效果。最后,还讨论了聚(氨基酸)的未来发展。这篇综述将指导和启发人们构建生物活性聚(氨基酸),并在癌症治疗中具有广阔的临床应用前景。本文归类于治疗方法与药物发现 > 用于肿瘤疾病的纳米药物 生物学启发的纳米材料 > 肽基结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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