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金纳米颗粒介导的光热疗法:拓展癌症治疗与诊疗一体化的前沿领域。

Gold nanoparticle-mediated photothermal therapy: Expanding the frontiers of cancer treatment and theragnostics.

作者信息

Amaral Mariana Neves, Kumar Pradeep, Faísca Pedro, Ferreira Hugo Alexandre, Coelho João M P, Gaspar M Manuela, Reis Catarina Pinto

机构信息

Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, Universidade de Lisboa, Av. Professor Gama Pinto, Lisboa 1649-003, Portugal; Instituto de Biofísica e Engenharia Biomédica (IBEB), Faculdade de Ciências, Universidade de Lisboa, Campo Grande, Lisboa 1749-016, Portugal.

Department of Pharmacy and Pharmacology, School of Therapeutic Sciences, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.

出版信息

Biomed Pharmacother. 2025 Sep;190:118399. doi: 10.1016/j.biopha.2025.118399. Epub 2025 Aug 9.

Abstract

Gold nanoparticle (AuNP)-mediated photothermal therapy (PTT) has emerged as a promising approach for cancer treatment, offering high precision, minimal invasiveness, and selective tumor ablation through localized hyperthermia. This review explores the fundamental principles of AuNP-mediated PTT, including the design of AuNPs, synthesis strategies, and surface modifications that enhance their biocompatibility and targeting efficiency. Additionally, the integration of AuNPs with other therapeutic modalities is also discussed, such as chemotherapy, radiotherapy, and immunotherapy, to achieve synergistic treatment outcomes. The theragnostic potential of AuNPs, combining diagnostic imaging with therapeutic applications, is also highlighted, emphasizing their role in personalized medicine. But, despite significant advancements, challenges such as biodistribution, long-term safety, and regulatory approval remain key barriers to clinical translation. Ongoing research is expected to refine AuNP-based PTT, paving the way for its widespread clinical application in cancer treatment.

摘要

金纳米颗粒(AuNP)介导的光热疗法(PTT)已成为一种很有前景的癌症治疗方法,通过局部热疗实现高精度、微创性和选择性肿瘤消融。本文综述探讨了AuNP介导的PTT的基本原理,包括AuNP的设计、合成策略以及增强其生物相容性和靶向效率的表面修饰。此外,还讨论了AuNP与其他治疗方式(如化疗、放疗和免疫疗法)的联合应用,以实现协同治疗效果。还强调了AuNP的诊疗潜力,即将诊断成像与治疗应用相结合,突出其在个性化医疗中的作用。但是,尽管取得了重大进展,生物分布、长期安全性和监管批准等挑战仍然是临床转化的关键障碍。预计正在进行的研究将改进基于AuNP的PTT,为其在癌症治疗中的广泛临床应用铺平道路。

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