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首页> 外文期刊>Pharmaceutics >Deep Tumor Penetration of Doxorubicin-Loaded Glycol Chitosan Nanoparticles Using High-Intensity Focused Ultrasound
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Deep Tumor Penetration of Doxorubicin-Loaded Glycol Chitosan Nanoparticles Using High-Intensity Focused Ultrasound

机译:使用高强度聚焦超声波的多柔比蛋白加载的二甲酰壳聚糖纳米粒子的深肿瘤渗透

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The dense extracellular matrix (ECM) in heterogeneous tumor tissues can prevent the deep tumor penetration of drug-loaded nanoparticles, resulting in a limited therapeutic efficacy in cancer treatment. Herein, we suggest that the deep tumor penetration of doxorubicin (DOX)-loaded glycol chitosan nanoparticles (CNPs) can be improved using high-intensity focused ultrasound (HIFU) technology. Firstly, we prepared amphiphilic glycol chitosan-5β-cholanic acid conjugates that can self-assemble to form stable nanoparticles with an average of 283.7 ± 5.3 nm. Next, the anticancer drug DOX was simply loaded into the CNPs via a dialysis method. DOX-loaded CNPs (DOX-CNPs) had stable nanoparticle structures with an average size of 265.9 ± 35.5 nm in aqueous condition. In cultured cells, HIFU-treated DOX-CNPs showed rapid drug release and enhanced cellular uptake in A549 cells, resulting in increased cytotoxicity, compared to untreated DOX-CNPs. In ECM-rich A549 tumor-bearing mice, the tumor-targeting efficacy of intravenously injected DOX-CNPs with HIFU treatment was 1.84 times higher than that of untreated DOX-CNPs. Furthermore, the deep tumor penetration of HIFU-treated DOX-CNPs was clearly observed at targeted tumor tissues, due to the destruction of the ECM structure via HIFU treatment. Finally, HIFU-treated DOX-CNPs greatly increased the therapeutic efficacy at ECM-rich A549 tumor-bearing mice, compared to free DOX and untreated DOX-CNPs. This deep penetration of drug-loaded nanoparticles via HIFU treatment is a promising strategy to treat heterogeneous tumors with dense ECM structures.
机译:非均相肿瘤组织中的致密细胞外基质(ECM)可以防止药物负载纳米颗粒的深肿瘤渗透,导致癌症治疗中有限的治疗疗效。在此,我们建议使用高强度聚焦超声(HIFU)技术来改善多柔比蛋白(DOX)加载的二醇壳聚糖纳米粒子(CNP)的深肿瘤渗透。首先,我们制备的两亲乙二醇壳聚糖-5β-胆杀酸缀合物,其可以自组装以形成稳定的纳米颗粒,平均为283.7±5.3nm。接下来,通过透析方法简单地将抗癌药物DOX加载到CNPS中。 DOX加载的CNPS(DOX-CNP)具有稳定的纳米粒子结构,平均尺寸为265.9±35.5nm的水性条件。在培养的细胞中,HIFU处理的DOX-CNPS显示出快速的药物释放和增强的A549细胞中的细胞摄取,导致细胞毒性增加,与未经处理的DOX-CNP相比。在富含ECM的A549肿瘤患者中,静脉注射DOX-CNP与HIFU处理的肿瘤靶向疗效比未处理的DOX-CNPS高1.84倍。此外,由于通过HIFU处理破坏ECM结构,在靶向肿瘤组织中清楚地观察到HIFU处理的DOX-CNP的深肿瘤渗透。最后,与游离DOX和未经治疗的DOX-CNP相比,HIFU治疗的DOX-CNP大大增加了ECM的A549肿瘤患者的治疗效果。通过HIFU治疗的这种含药纳米颗粒的这种深入渗透是一种有希望用致密的ECM结构治疗异质肿瘤的有希望的策略。

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