基于特定相互作用的药物负载策略。

IF 6.6 2区 材料科学 Q1 CHEMISTRY, PHYSICAL
Haoqi Yu, Shuhui Zhang, Huiru Yang, Jiamin Miao, Xu Ma, Wei Xiong, Gang Chen and Tianjiao Ji
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引用次数: 1

摘要

药物载体通常用于药物控制释放、增强药物疗效和/或最小化副作用。然而,在封装治疗指数较窄的超亲水性药物(如许多神经毒素)时,仍然难以获得高的负载效率。增加载体比例可以在一定程度上提高药物载量,而制剂进入体内时释放的药物可能会引起过量副作用。此外,高剂量携带者本身可能会增加身体的代谢负担。因此,迫切需要新的药物载体和/或装载策略来促进这些药物的应用。这篇小型综述将介绍基于特定相互作用(药物和载体之间)的药物装载策略,并将讨论这些策略的挑战和前景。这项工作有望为亲水性药物的递送提供替代灵感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Specific interaction based drug loading strategies

Specific interaction based drug loading strategies

Drug carriers have been commonly used for drug control release, enhancing drug efficacy and/or minimizing side-effects. However, it is still difficult to get a high loading efficiency when encapsulating super hydrophilic drugs with a narrow therapeutic index, such as many neurotoxins. Increasing the carrier proportion can improve drug loading to a certain degree, while the burst released drug when the formulation enters the body may cause overdose side-effects. Moreover, high-dose carriers themselves may increase the metabolic burden of the body. Hence, new drug carriers and/or loading strategies are urgently needed to promote the applications of these drugs. This minireview will introduce drug loading strategies based on specific interactions (between drugs and carriers) and will discuss the challenges and perspectives of these strategies. This work is expected to provide alternative inspiration for the delivery of hydrophilic drugs.

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来源期刊
Nanoscale Horizons
Nanoscale Horizons Materials Science-General Materials Science
CiteScore
16.30
自引率
1.00%
发文量
141
期刊介绍: Nanoscale Horizons stands out as a premier journal for publishing exceptionally high-quality and innovative nanoscience and nanotechnology. The emphasis lies on original research that introduces a new concept or a novel perspective (a conceptual advance), prioritizing this over reporting technological improvements. Nevertheless, outstanding articles showcasing truly groundbreaking developments, including record-breaking performance, may also find a place in the journal. Published work must be of substantial general interest to our broad and diverse readership across the nanoscience and nanotechnology community.
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