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首页> 外文期刊>ACS applied materials & interfaces >Hybrid Collagenase Nanocapsules for Enhanced Nanocarrier Penetration in Tumoral Tissues
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Hybrid Collagenase Nanocapsules for Enhanced Nanocarrier Penetration in Tumoral Tissues

机译:杂交胶原酶纳米胶囊,用于增强肿瘤组织中的纳米载体渗透

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摘要

Poor penetration of drug delivery nanocarriers within dense extracellular matrices constitutes one of the main liabilities of current nanomedicines. The conjugation of proteolytic enzymes on the nanoparticle surface constitutes an attractive alternative. However, the scarce resistance of these enzymes against the action of proteases or other aggressive agents present in the bloodstream strongly limits their application. Herein, a novel nanodevice able to transport proteolytic enzymes coated with an engineered pH-responsive polymeric is presented.' This degradable coat protects the housed enzymes against proteolytic attack at the same time that it triggers their release under mild acidic conditions, usually present in many tumoral tissues. These enzyme nanocapsules have been attached on the surface of mesoporous silica nanoparticles, as nanocarrier model, showing a significatively higher penetration of the nanoparticles within 3D collagen matrices which housed human osteosarcoma cells (HOS). This strategy can improve the therapeutic efficacy of the current nanomedicines, allowing a more homogeneous and deeper distribution of the therapeutic nanosystems in cancerous tissues.
机译:致密细胞外基质中药物递送纳米载体的渗透性不良构成了当前纳米胺的主要负债之一。蛋白水解酶对纳米颗粒表面的缀合构成有吸引力的替代方案。然而,这些酶对血液中存在的蛋白酶或其他腐蚀性剂的作用的缺乏抗性强烈限制它们的应用。在此,呈现了一种能够运输涂有工程化pH-响应聚合物的蛋白水解酶的新型纳米型纳米型纳米型纳米细胞。这种可降解的涂层在其在许多酸性条件下触发其释放的同时,这种可降解的涂层可在诸如轻微的酸性条件下捕获,通常存在于许多肿瘤组织中。这些酶纳米胶囊已经附着在介孔二氧化硅纳米粒子的表面上,作为纳米载体模型,显示出纳米颗粒在容纳人骨肉瘤细胞(HOS)的3D胶原基质中的显着更高渗透。该策略可以提高当前纳米型细胞的治疗效果,从而使治疗性纳米系统在癌组织中更均匀和更深地分布。

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