基于聚合物纳米药物的癌症联合免疫疗法的先进策略

BMEMat Pub Date : 2024-01-12 DOI:10.1002/bmm2.12067
Kaisheng You, Qi Wang, Mohamed Syazwan Osman, Dongpyo Kim, Qian Li, Chao Feng, Lei Wang, Kuikun Yang
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摘要

尽管免疫疗法能有效抑制肿瘤生长、长期防止复发并将副作用降至最低,从而为癌症治疗带来了革命性的变化,但由于反应率低,大大限制了免疫疗法在各类实体瘤中的临床应用。为了提高疗效,放疗、化疗、光疗和化学动力疗法等传统疗法被用来与免疫疗法相结合,以激发更强的抗肿瘤免疫反应。聚合物纳米药物因其可调整的理化特性、高载药能力、易改性和低毒性,经常被用于协同免疫疗法和其他疗法。通过精心设计和量身定制的特性,聚合物纳米药物可以通过增强肿瘤特异性、激活免疫细胞和扩大肿瘤免疫反应来显著提高抗肿瘤疗效。然而,到目前为止,还没有专门针对基于聚合物的癌症联合免疫疗法平台的全面发展的综述。本文总结了聚合物纳米药物在联合免疫疗法和传统抗肿瘤策略(包括放疗、化疗、光热疗法、光动力疗法和其他疗法)中的设计、制造和应用方面的最新进展。文章还展望了聚合物纳米药物在弥合免疫疗法与传统疗法之间差距方面的发展轨迹和潜在挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advanced strategies for combinational immunotherapy of cancer based on polymeric nanomedicines

Advanced strategies for combinational immunotherapy of cancer based on polymeric nanomedicines

Although immunotherapy has revolutionized cancer therapy by providing efficient tumor growth suppression, long-term protection from recurrence as well as minimized side effects, the low response rate significantly limits the clinical application of immunotherapy in board types of solid tumors. In order to improve the therapeutic efficacy, conventional therapies including radiotherapy, chemotherapy, phototherapy and chemodynamic therapy are employed to combine with immunotherapy to elicit stronger antitumor immune responses. Polymer nanomedicines are frequently utilized in synergistic immunotherapy and other therapies owing to their tunable physiochemical properties, high drug loading capacity, ease of modification and low toxicity. With elaborate design and tailored properties, polymer nanomedicines can significantly enhance antitumor efficacy by enhancing tumor specificity, priming immune cells and amplifying immune responses in tumors. However, until now, there is no review solely dedicated to the comprehensive development of polymer-based platforms for combinational immunotherapy of cancers. Herein, this paper summarizes latest advances in the design, fabrication and application of polymer nanomedicines in combinational immunotherapy and traditional antitumor strategies including radiotherapy, chemotherapy, photothermal therapy, photodynamic therapy and other therapies. An outlook on the trajectory and potential challenges of polymer nanomedicines in bridging the gap between immunotherapy and conventional therapies is also discussed.

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