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首页> 外文期刊>Expert opinion on drug delivery >Mesoporous silica nanoparticles: synthesis, classification, drug loading, pharmacokinetics, biocompatibility, and application in drug delivery
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Mesoporous silica nanoparticles: synthesis, classification, drug loading, pharmacokinetics, biocompatibility, and application in drug delivery

机译:中孔二氧化硅纳米粒子:合成,分类,药物载荷,药代动力学,生物相容性和药物递送中的应用

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摘要

Introduction: Mesoporous silica nanoparticles (MSNs) feature a high surface area and large pore volume, uniform and tunable pore size, and stable framework; thus, they have been used extensively as drug carriers. Areas covered: The synthesis, classification, and the latest generation of MSNs, drug loading methods, modification of MSNs, pharmacokinetic studies, biocompatibility, and toxicity of MSNs, and their application in drug delivery systems (DDS) are covered in this review. Expert opinion: It is crucial to uncover the mechanism for the formation of MSNs. Before drug loading, the characteristics of MSNs should be taken into consideration. In addition, the porosity, particle size and morphology, surface oxidation and surface functionalization can also influence the in vivo fate of MSNs, which is worthy of further study. Coating MSNs with novel materials may improve their biocompatibility, control the release of drugs loaded into the MSNs or enhance the uptake of the coated MSNs by tumor cells. MSNs can also be used as carriers for combination therapy in the treatment of cancer. Despite the rapid development of MSNs, the biological effects of these biomaterials remain relatively less understood.
机译:简介:中孔二氧化硅纳米粒子(MSNS)具有高表面积和大孔体积,均匀和可调孔径,稳定框架;因此,它们已被广泛使用作为药物载体。涵盖了合成,分类和MSNS,药代动力学研究,生物相容性和毒性的最新一代MSN,药代动力学研究,生物相容性,以及它们在药物递送系统(DDS)中的应用。专家意见:对MSNS形成的机制至关重要。在药物载荷之前,应考虑MSN的特征。此外,孔隙率,粒度和形态,表面氧化和表面官能化也可以影响MSN的体内命运,这是值得进一步的研究。用新型材料涂覆MSN可以改善它们的生物相容性,控制释放装入MSN的药物或通过肿瘤细胞增强涂覆的MSN的摄取。 MSN也可以用作治疗癌症的联合治疗的载体。尽管MSNS的快速发展,但这些生物材料的生物学效果仍然相对较低。

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