通过纳米材料的热效应改变免疫疗法疗效的研究进展

Lan Lei , Pengyuan Liu , Wu Jing , Zhibing Wu
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引用次数: 0

摘要

肿瘤免疫疗法是一种通过改变体内免疫微环境来对抗肿瘤的复杂方法。然而,免疫疗法的成功率有限,而且可能诱发全身毒性反应,这给其治疗效果带来了不确定性。纳米粒子(NPs)作为治疗和诊断工具具有多方面的应用,可精确输送各种免疫治疗药物并监测组织细胞反应。这些功能有助于对影响免疫活动的因素进行动态评估,从而优化未来的治疗策略。多模式抗肿瘤疗法的应用为诱导强效免疫反应铺平了道路,同时还能最大限度地减少不良反应并促进对免疫活动的监测。本文介绍了当前的治疗方法,并探讨了纳米材料与热疗相结合刺激全身免疫反应的作用机制。此外,还重点介绍、总结并广泛讨论了光热疗法(PPT)和磁热疗法(MHT)用于肿瘤治疗的协同免疫疗法的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancements in modifying the efficacy of immunotherapies through the thermal effects of nanomaterials

Tumor immunotherapy represents an intricate approach to combat tumors by modifying the immune microenvironment within the body. Nevertheless, the limited success rate and potential induction of systemic toxic reactions associated with immunotherapy introduce uncertainty regarding its therapeutic effectiveness. Nanoparticles (NPs) exhibit multifaceted applications as therapeutic and diagnostic tools, enabling precise delivery of various immunotherapeutic agents and monitoring of tissue cellular responses. These capabilities facilitate the dynamic assessment of factors influencing immune activity, thereby optimizing future treatment strategies. The utilization of multimodal anti-tumor therapies has paved the way for the induction of potent immune responses, while simultaneously minimizing adverse effects and facilitating the monitoring of immune activities.This review aims to provide an overview of this emerging field and highlight new technologies for next-generation immunotherapy. The current therapeutic approaches are introduced, and the mechanism of action of nanomaterials in combination with thermotherapy to stimulate systemic immune responses is explored. Furthermore, recent advancements in synergistic immunotherapy involving photothermal therapy (PPT) and magnetic hyperthermia therapy (MHT) for tumor treatment are highlighted, summarized, and extensively discussed.

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