压电催化免疫疗法:肿瘤治疗的机制和可行性。

IF 13.3 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Theranostics Pub Date : 2025-05-09 eCollection Date: 2025-01-01 DOI:10.7150/thno.114676
Zhiguang Chen, Liang Sang, Donglin Bian, Yanjun Liu, Zhiqun Bai
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引用次数: 0

摘要

在过去的十年里,免疫疗法已经彻底改变了许多癌症类型的临床管理。然而,只有一小部分患者从中获得长期持久的肿瘤控制。有趣的是,利用活性氧(ROS)介导的免疫原性细胞死亡(ICD)的几种新兴治疗策略有望实现癌症的精确免疫治疗,其中声动力治疗是一个值得注意的例子。利用压电材料作为声敏剂可以有效地促进ROS的产生,从而提高icd诱导免疫治疗的疗效。此外,压电效应产生的电刺激可以进一步诱导免疫反应激活和坏死下垂,在压电催化免疫治疗中达到协同效应。在此,我们将系统地回顾压电催化免疫治疗的途径和潜在机制,为癌症免疫治疗策略的探索提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Piezo-catalytic immunotherapy: mechanisms and feasibility in cancer treatment.

Over the past decade, immunotherapy has revolutionized the clinical management of numerous cancer types. However, only a subset of patients derives long-term durable tumor control from it. Intriguingly, several emerging therapeutic strategies harnessing reactive oxygen species (ROS)-mediated immunogenic cell death (ICD) hold promise for enabling precision immunotherapy in cancer, with sonodynamic therapy emerging as a notable example. The utilization of piezoelectric materials as sonosensitizers can effectively enhance ROS production, thereby augmenting the efficacy of ICD-induced immunotherapy. Additionally, electrical stimulation generated by the piezoelectric effect can further induce immune response activation and necroptosis, achieving a synergistic effect in piezo-catalytic immunotherapy. Herein, we will systematically review the pathways and potential mechanisms underlying piezo-catalytic immunotherapy, offering novel insights for the exploration of cancer immunotherapy strategies.

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来源期刊
Theranostics
Theranostics MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
25.40
自引率
1.60%
发文量
433
审稿时长
1 months
期刊介绍: Theranostics serves as a pivotal platform for the exchange of clinical and scientific insights within the diagnostic and therapeutic molecular and nanomedicine community, along with allied professions engaged in integrating molecular imaging and therapy. As a multidisciplinary journal, Theranostics showcases innovative research articles spanning fields such as in vitro diagnostics and prognostics, in vivo molecular imaging, molecular therapeutics, image-guided therapy, biosensor technology, nanobiosensors, bioelectronics, system biology, translational medicine, point-of-care applications, and personalized medicine. Encouraging a broad spectrum of biomedical research with potential theranostic applications, the journal rigorously peer-reviews primary research, alongside publishing reviews, news, and commentary that aim to bridge the gap between the laboratory, clinic, and biotechnology industries.
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