Department of Central Laboratory, Binhai County People's Hospital, Yancheng, China.
Department of Obstetrics and Gynecology, Binhai County People's Hospital, Yancheng, China.
Medicine (Baltimore). 2024 Sep 27;103(39):e39845. doi: 10.1097/MD.0000000000039845.
The combination of chemotherapy and photodynamic therapy (PDT), enabled by core-shell nano-platforms, is a promising method to improve cancer therapy by overcoming hypoxia and boosting drug penetration in breast tumor. Core-shell magnetic (iron oxide: Fe3O4)@platinum-metal organic framework/epirubicin (abbreviated as M@Pt-MOF/EPI) nano-platform is considered an effective cancer therapeutic agent. Relatively small particle size, round shape, and specific response to pH, are the key features of these nanomaterials to be used as promising therapeutic agents. Chemotherapy and photodynamic therapy, when applied in addition to the anticancer effects of nanomaterials, further enhance the therapeutic efficacy. The extensive use, utilization, and efficacy of Core-Shell Magnetic@Platinium-Metal Organic Framework/epirubicin Nano-Platforms for chemo-photodynamic combination therapy in the treatment of several cancers, including triple-negative breast cancer, are examined in this in-depth investigation.
基于核壳纳米平台的化疗和光动力疗法(PDT)相结合,是一种通过克服缺氧和增强药物在乳腺癌中的渗透来提高癌症治疗效果的有前途的方法。核壳磁性(氧化铁:Fe3O4)@铂金属有机骨架/表阿霉素(简称 M@Pt-MOF/EPI)纳米平台被认为是一种有效的癌症治疗剂。较小的颗粒尺寸、圆形形状以及对 pH 的特异性响应是这些纳米材料用作有前途的治疗剂的关键特征。化疗和光动力疗法在应用于纳米材料的抗癌作用之外,还进一步增强了治疗效果。本深入研究考察了核壳磁性@铂金属有机骨架/表阿霉素纳米平台在包括三阴性乳腺癌在内的几种癌症的化学光动力联合治疗中的广泛使用、利用和疗效。
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