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靶向抑制淋巴管生成形成用 CREKA 肽修饰的硅纳米囊泡以增强膀胱癌化疗

Targeted Inhibition of Lymphovascular Invasion Formation with CREKA Peptide-Modified Silicasomes to Boost Chemotherapy in Bladder Cancer.

机构信息

Department of Urology, Tianjin Institute of Urology, The Second Hospital of Tianjin Medical University, Tianjin Medical University, Tianjin 300211, China.

CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing 100190, China.

出版信息

Nano Lett. 2024 Aug 21;24(33):10186-10195. doi: 10.1021/acs.nanolett.4c02485. Epub 2024 Aug 13.

Abstract

Despite its significant clinical efficacy as a first-line treatment for advanced bladder cancer, cisplatin-based chemotherapy provides a limited benefit for patients with lymphovascular invasion (LVI), which is characterized by the presence of tumor emboli within blood vessels and associated with enhanced cisplatin resistance and metastatic potential. Notably, platelets, a critical component of LVI, hinder the delivery of chemotherapeutic agents to tumors and facilitate metastasis. Consequently, platelet function inhibition holds the potential to disrupt LVI formation, as well as augment the antitumor activity of cisplatin. Herein, we developed a tumor microenvironment-targeted nanodrug with lipid-coated mesoporous silica nanoparticles (silicasomes) that synergistically combines cisplatin with an antiplatelet agent, tirofiban, for bladder cancer treatment. The customized nanodrug can concurrently prevent LVI formation and enhance the chemotherapeutic efficacy without significant adverse effects. This study supports the integration of chemotherapy and antiplatelet therapy via a silicasome-based nanosystem as a highly promising strategy for bladder cancer management.

摘要

尽管顺铂为基础的化疗作为晚期膀胱癌的一线治疗方法具有显著的临床疗效,但对于有血管淋巴管侵犯(LVI)的患者,其益处有限。LVI 的特征是肿瘤栓子存在于血管内,并与顺铂耐药性和转移潜能增强相关。值得注意的是,血小板是 LVI 的一个关键组成部分,它阻碍了化疗药物向肿瘤的输送,并促进了转移。因此,血小板功能抑制有可能破坏 LVI 的形成,并增强顺铂的抗肿瘤活性。在此,我们开发了一种肿瘤微环境靶向纳米药物,该药物使用脂质包覆的介孔硅纳米粒子(硅纳米球)将顺铂与抗血小板药物替罗非班联合用于膀胱癌治疗。这种定制的纳米药物可以同时预防 LVI 的形成,并增强化疗效果,而没有明显的不良反应。这项研究支持通过基于硅纳米球的纳米系统将化疗和抗血小板治疗相结合,作为膀胱癌管理的一种极具前景的策略。

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