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GRPr介导的前列腺癌光热与热力学双重疗法及其协同抗凋亡机制

GRPr-mediated photothermal and thermodynamic dual-therapy for prostate cancer with synergistic anti-apoptosis mechanism.

作者信息

Xu Hang, Sheng Gang, Lu Lu, Wang Cuirong, Zhang Yu, Feng Lili, Meng Lingtong, Min Pengxiang, Zhang Li, Wang Yijun, Han Feng

机构信息

Key Laboratory of Cardiovascular & Cerebrovascular Medicine, Drug Target and Drug Discovery Center, School of Pharmacy, Nanjing Medical University, Nanjing, 211166, China.

Department of Pharmacology, School of Pharmacy, Nanjing Medical University, Nanjing, 211166, China.

出版信息

Nanoscale. 2021 Feb 25;13(7):4249-4261. doi: 10.1039/d0nr07196j.

Abstract

Conventional prostate cancer treatment strategies, including chemotherapy and radiotherapy, cannot effectively eradicate prostate cancer, especially castration resistance prostate cancer. Herein, we developed a novel nanotherapy platform that consists of synergic photothermal and photodynamic therapy via the unique properties of photothermal conversion by gold nanorods and free radicals generation by encapsulated initiators (AIPH). Mesoporous silica was employed as a coating material, and the bombesin peptide was conjugated onto the mesoporous silica coating layer as the targeting moiety to prostate cancer via its overexpressed gastrin-releasing peptide receptors. An in vitro study with the castration resistance prostate cancer cell exhibited a significant photothermal therapeutic effect as well as enhanced thermodynamic therapy via generating free radicals. P-p38 and p-JNK proteins, as key proteins involved in the cells' stress responses, were found to be upregulated by the synergetic treatment. The in vivo study demonstrated that a significant eradication of prostate tumour could be achieved by the nanoparticle therapeutic platform with a good biocompatibility profile. This work pioneers a novel approach for high-efficient castration resistance prostate cancer treatment by combining photothermal, thermodynamic, and site-specific drug delivery directed by an integrated nanoparticle system.

摘要

传统的前列腺癌治疗策略,包括化疗和放疗,无法有效根除前列腺癌,尤其是去势抵抗性前列腺癌。在此,我们开发了一种新型纳米治疗平台,该平台通过金纳米棒的光热转换独特特性和封装引发剂(AIPH)产生自由基,实现光热和光动力协同治疗。采用介孔二氧化硅作为涂层材料,并将蛙皮素肽缀合到介孔二氧化硅涂层上,作为通过其过表达的胃泌素释放肽受体靶向前列腺癌的部分。对去势抵抗性前列腺癌细胞的体外研究显示出显著的光热治疗效果以及通过产生自由基增强的热动力治疗效果。作为细胞应激反应中涉及的关键蛋白,P-p38和p-JNK蛋白被协同治疗上调。体内研究表明,具有良好生物相容性的纳米颗粒治疗平台可显著根除前列腺肿瘤。这项工作开创了一种通过结合光热、热动力和由集成纳米颗粒系统引导的位点特异性药物递送,高效治疗去势抵抗性前列腺癌的新方法。

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