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介孔硅纳米粒子负载的纳米载体,具有增强的药物负载、包封稳定性和靶向效率。

Mesoporous silica nanoparticle-supported nanocarriers with enhanced drug loading, encapsulation stability, and targeting efficiency.

机构信息

Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Republic of Korea.

出版信息

Biomater Sci. 2022 Mar 15;10(6):1448-1455. doi: 10.1039/d2bm00010e.

Abstract

For efficient drug delivery, stable encapsulation of a large amount of anticancer drugs is crucial, not to mention cell-specific delivery. Among many possible nanocarriers, mesoporous silica nanoparticles are versatile frameworks that satisfy those requirements owing to their characteristic internal pores with a large surface area and a tunable surface composition. By using a noncovalent post-modification strategy, MSN-based drug delivery systems with enhanced therapeutic efficiency can be prepared in a simple one-pot process by loading small anticancer drugs in the unmodified mesopores and by subsequently blocking the drug-loaded pores with a stimuli-responsive polymer gatekeeper. For targeted delivery, drug-loaded MSNs can be functionalized with suitable targeting components such as targeting ligands or artificial protein corona. This mini-review highlights the recent research in which MSN-supported nanocarriers are designed, synthesized, and characterized to possess a high drug loading capacity and encapsulation stability along with targeting capability for more efficient cancer treatment.

摘要

为了实现高效的药物输送,稳定地封装大量抗癌药物至关重要,更不用说细胞特异性输送了。在许多可能的纳米载体中,介孔硅纳米粒子是多功能的框架,由于其具有大表面积和可调节表面组成的特征内部孔,因此满足了这些要求。通过使用非共价的后修饰策略,可以通过在未修饰的介孔中装载小的抗癌药物,并随后用响应性聚合物门控分子封闭载药孔,在简单的一锅法中制备具有增强治疗效果的基于 MSN 的药物输送系统。为了进行靶向输送,可以用合适的靶向成分(如靶向配体或人工蛋白冠)对载药 MSN 进行功能化。这篇迷你综述强调了最近的研究,其中设计、合成和表征了 MSN 支持的纳米载体,以具有高载药能力和封装稳定性,以及针对更有效的癌症治疗的靶向能力。

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