Yu Hai-Jia, Liu Jian-Hua, Liu Wei, Niu Rui, Zhang Bin, Xiong Yuan, Liu Yang, Wang Ying-Hui, Zhang Hong-Jie
Department of Radiology, The Second Hospital of Jilin University, Changchun, 130041, China.
Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Mil Med Res. 2025 Jul 30;12(1):41. doi: 10.1186/s40779-025-00627-x.
The heterogeneity and invasiveness of cancer cells pose serious challenges in cancer diagnosis and treatment. Advancements and innovations in metal-based nanomedicines provide novel avenues for addressing these challenges. Metal-based nanomedicines possess unique physicochemical properties that enable their interaction with living organisms, thereby inducing complex biological responses. These nanomaterials have been extensively used to enhance the contrast and sensitivity of cancer imaging and to amplify the distinction between cancerous and healthy tissues. Moreover, these nanomaterials can effectively combat a wide spectrum of cancers through various methods, including drug delivery, radiotherapy, photothermal therapy (PTT), photodynamic therapy (PDT), sonodynamic therapy (SDT), biocatalytic therapy, ion interference therapy (IIT), and immunotherapy. Currently, there is still a need for a comprehensive summary on the metal-based nanomaterials for cancer diagnosis and treatment. Herein, we present a systematic and complete overview of action mechanisms and the applications of metal-based nanomaterials in cancer theranostics. A summary of common strategies for synthesizing and modifying metal-based nanomedicines is presented, and their biosafety is analyzed. Then, the latest developments in their applications for cancer imaging and anticancer treatment are provided. Finally, the key technical challenges and reasonable perspectives of metal-based nanomedicines for cancer theranostics in clinical applications are discussed.
癌细胞的异质性和侵袭性给癌症诊断和治疗带来了严峻挑战。基于金属的纳米药物的进步和创新为应对这些挑战提供了新途径。基于金属的纳米药物具有独特的物理化学性质,使其能够与生物体相互作用,从而引发复杂的生物学反应。这些纳米材料已被广泛用于提高癌症成像的对比度和灵敏度,并放大癌组织与健康组织之间的差异。此外,这些纳米材料可以通过多种方法有效对抗多种癌症,包括药物递送、放射治疗、光热疗法(PTT)、光动力疗法(PDT)、声动力疗法(SDT)、生物催化疗法、离子干扰疗法(IIT)和免疫疗法。目前,仍需要对用于癌症诊断和治疗的基于金属的纳米材料进行全面总结。在此,我们对基于金属的纳米材料在癌症诊疗中的作用机制和应用进行了系统而完整的概述。介绍了合成和修饰基于金属的纳米药物的常见策略,并分析了它们的生物安全性。然后,提供了它们在癌症成像和抗癌治疗应用中的最新进展。最后,讨论了基于金属的纳米药物在临床应用中用于癌症诊疗的关键技术挑战和合理展望。