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

机译:GRPr-mediated光热光谱分析和热力学接受前列腺癌与协同抗凋亡机制

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摘要

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.
机译:传统的前列腺癌的治疗策略,包括化疗和放疗,不能有效地消除前列腺癌,特别是前列腺癌去势抵抗。开发了一种小说nanotherapy平台由协同光热光谱分析和光动力治疗的独特属性通过金纳米棒光热光谱分析转换和自由自由基生成封装发起者(AIPH)。涂层材料,蛙皮素肽共轭到介孔二氧化硅涂层层的针对一部分前列腺癌通过其过表达胃泌素释放肽受体。抗前列腺癌的细胞表现出一个重要的光热光谱分析治疗效果也增强了热力学疗法通过产生自由基。参与细胞的蛋白质,作为关键蛋白质应激反应,被认为是调节协同作用的治疗。证明了一个重要的根除前列腺肿瘤可以通过纳米颗粒治疗与一个好的平台生物相容性。高效阉割的新途径抗前列腺癌治疗相结合光热光谱分析、热力学和特定站点药物输送由一个集成纳米粒子系统。

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  • 专利
  • 1. PROSTATE CANCER GEN. [P] . 外国专利: ES2190925T3 . 2003-09-01

    机译:prostate cancer gen.

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