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利用离子液体微滴的趋化性模拟自然以用于药物递送目的。

Mimic Nature Using Chemotaxis of Ionic Liquid Microdroplets for Drug Delivery Purposes.

作者信息

Khodarahmian Kobra, Ghiasvand Alireza

机构信息

Department of Chemistry, Lorestan University, Khoramabad 6815144316, Iran.

出版信息

Molecules. 2022 Jan 25;27(3):786. doi: 10.3390/molecules27030786.

Abstract

Due to the growing prevalence of incurable diseases, such as cancer, worldwide, nowadays, the development of smart drug delivery systems is an inevitable necessity. Chemotaxis-driven movement of ionic liquid microdroplets containing therapeutic compounds is a well-known example of a smart drug delivery system. This review aims to classify, summarize, and compare ionic liquid-based chemotaxis systems in an easily understandable article. Chemotaxis is the basis of the movement of cells and microorganisms in biological environments, which is the cause of many vital biochemical and biological processes. This review attempts to summarize the available literature on single-component biomimetic and self-propelling microdroplet systems based on ionic liquids, which exhibit chemotaxis and spontaneously move in a determined direction by an external gradient, particularly a chemical change. It also aims to review artificial ionic liquid-based chemotaxis systems that can be used as drug carriers for medical purposes. The various ionic liquids used for this purpose are discussed, and different forms of chemical gradients and mechanisms that cause movement in microfluidic channels will be reviewed.

摘要

由于诸如癌症等不治之症在全球范围内的发病率不断上升,如今,智能药物递送系统的开发已成为必然需求。含有治疗性化合物的离子液体微滴的趋化性驱动运动是智能药物递送系统的一个著名例子。本综述旨在以一篇易于理解的文章对基于离子液体的趋化性系统进行分类、总结和比较。趋化性是细胞和微生物在生物环境中运动的基础,是许多重要生化和生物过程的原因。本综述试图总结关于基于离子液体的单组分仿生和自推进微滴系统的现有文献,这些系统表现出趋化性,并通过外部梯度,特别是化学变化,在确定的方向上自发移动。它还旨在综述可用于医疗目的作为药物载体的基于人工离子液体的趋化性系统。讨论了用于此目的的各种离子液体,并将综述导致微流体通道中运动的不同形式的化学梯度和机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a2f/8839142/cdfa9620582d/molecules-27-00786-g001.jpg

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