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基于精确肽自组装设计的超分子癌症光免疫疗法。

Supramolecular cancer photoimmunotherapy based on precise peptide self-assembly design.

机构信息

State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, 100190 Beijing, China.

State Key Laboratory of Polymer Physics & Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, 130022 Changchun, China.

出版信息

Chem Commun (Camb). 2022 Feb 15;58(14):2247-2258. doi: 10.1039/d1cc06355c.

Abstract

Combinational photoimmunotherapy (PIT) is considered to be an ideal strategy for the treatment of highly recurrent and metastatic cancer, because it can ablate the primary tumor and provide an autologous tumor vaccine to induce the host immune response, ultimately achieving the goal of controlling tumor growth and distal metastasis. Significant efforts have been devoted to enhancing the immune response caused by phototherapy-eliminated tumors. Recently, supramolecular PIT nanoagents based on precise peptide self-assembly design have been employed to improve the efficacy of photoimmunotherapy by utilizing the stability, targeting capability and flexibility of drugs, increasing tumor immunogenicity and realizing the synergistic amplification of immune effects through multiple pathways and collaborative strategy. This review summarizes peptide-based supramolecular PIT nanoagents for phototherapy-synergized cancer immunotherapy and its progress in enhancing the effect of photoimmunotherapy, especially focusing on the design of peptide-based PIT nanoagents, the progress of bioactive peptides combined photoimmunotherapy, and the synergistic immune-response mechanism.

摘要

联合光免疫疗法(PIT)被认为是治疗高度复发性和转移性癌症的理想策略,因为它可以消融原发性肿瘤,并提供自体肿瘤疫苗来诱导宿主免疫反应,最终实现控制肿瘤生长和远端转移的目标。人们已经做出了巨大的努力来增强光疗消除的肿瘤引起的免疫反应。最近,基于精确肽自组装设计的超分子 PIT 纳米制剂已被用于通过利用药物的稳定性、靶向性和灵活性来提高光免疫疗法的疗效,增加肿瘤免疫原性,并通过多种途径和协同策略实现免疫效果的协同放大。本综述总结了基于肽的超分子 PIT 纳米制剂在光疗协同癌症免疫治疗及其在增强光免疫治疗效果方面的进展,特别是重点介绍了基于肽的 PIT 纳米制剂的设计、结合光免疫治疗的生物活性肽的进展以及协同免疫反应机制。

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