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首页> 外文期刊>Biomaterials >Nanostructured polyelectrolyte multilayer drug delivery systems for bone metastasis prevention.
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Nanostructured polyelectrolyte multilayer drug delivery systems for bone metastasis prevention.

机译:用于预防骨转移的纳米结构聚电解质多层药物递送系统。

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摘要

Polyelectrolyte multilayers (PEM) are well established nanoarchitectures with numerous potential applications, in particular as biomaterial coatings. They may exhibit specific biological properties in terms of controlled cell activation or local drug delivery. Here, in a new approach for bone metastasis prevention, we employed poly-l-lysine covalently grafted with beta-cyclodextrin as a polycationic vector (PLL-CD) for the antitumor bisphosphonate drug risedronate (RIS). Molar ratio for maximum loading of the PLL-CD vector with RIS was determined by Raman microspectroscopy. The efficacy of RIS at inhibiting cancer cell invasion in vitro was strongly enhanced upon complexation, whatever PLL-CD:RIS complexes were in solution or embedded into PEM nanoarchitectures. Complexes in solution also clearly prevented cancer-induced bone metastasis in animals. Incorporation of the complexes into PEM nanoarchitectures covering bone implants appears of interest for in situ prevention of bone metastasis after ablation.
机译:聚电解质多层(PEM)是成熟的纳米结构,具有许多潜在应用,尤其是作为生物材料涂层。它们可以在受控的细胞活化或局部药物递送方面表现出特定的生物学特性。在这里,在预防骨转移的新方法中,我们采用了与β-环糊精共价接枝的聚-1-赖氨酸作为聚阳离子载体(PLL-CD)用于抗肿瘤双膦酸盐药物利塞膦酸盐(RIS)。通过拉曼光谱法测定了RIS最大的PLL-CD载体的摩尔比。络合后,无论溶液中或嵌入到PEM纳米结构中,无论PLL-CD:RIS络合物如何,RIS在体外抑制癌细胞侵袭的功效都得到了大大增强。溶液中的复合物也清楚地预防了动物引起的癌症引起的骨转移。将复合物掺入覆盖骨植入物的PEM纳米结构中对于在消融后原位预防骨转移方面是令人感兴趣的。

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