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阳离子双子表面活性剂的性质、作为有前途的生物应用候选物的潜力,以及提高其生物相容性的策略:综述。

Cationic gemini surfactant properties, its potential as a promising bioapplication candidate, and strategies for improving its biocompatibility: A review.

机构信息

Department of Biomedical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.

Department of Textile Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.

出版信息

Adv Colloid Interface Sci. 2022 Jan;299:102581. doi: 10.1016/j.cis.2021.102581. Epub 2021 Dec 6.

DOI:10.1016/j.cis.2021.102581
PMID:34891074
Abstract

Gemini surfactants consist of two cationic monomers of a surfactant linked together with a spacer. The specific structure of a cationic gemini surfactant is the reason for both its high surface activity and its ability to decrease the surface tension of water. The high surface activity and unique structure of gemini surfactants result in outstanding properties, including antibacterial and antifungal activity, anticorrosion properties, unique aggregation behaviour, the ability to form various structures reversibly in response to environmental conditions, and interactions with biomacromolecules such as DNA and proteins. These properties can be tailored by selecting the optimal structure of a gemini surfactant in terms of the nature and length of its alkyl substituents, spacer, and head group. Additionally, regarding their properties, comparison with their monomeric counterparts demonstrates that gemini surfactants have higher performance efficacy at lower concentrations. Hence, less material is needed, and the toxicity is lower. However, there are some limitations regarding their biocompatibility that have led researchers to develop amino acid-based and sugar-based gemini surfactants. Owing to their remarkable properties, cationic gemini surfactants are promising candidates for bioapplications such as drug delivery systems, gene carriers, and biomaterial surface modification.

摘要

双子表面活性剂由两个连接在一起的带有间隔基的阳离子单体组成。阳离子双子表面活性剂的特殊结构是其具有高表面活性和降低水表面张力能力的原因。双子表面活性剂的高表面活性和独特结构导致其具有出色的性能,包括抗菌和抗真菌活性、抗腐蚀性、独特的聚集行为、能够根据环境条件可逆地形成各种结构的能力以及与生物大分子如 DNA 和蛋白质的相互作用。通过选择具有最佳结构的双子表面活性剂,可以根据其烷基取代基、间隔基和头基的性质和长度来调整这些性能。此外,就其性能而言,与单体相比,双子表面活性剂在较低浓度下表现出更高的性能效果。因此,所需的材料更少,毒性更低。然而,由于其生物相容性存在一些限制,研究人员已经开发出基于氨基酸和糖的双子表面活性剂。由于其显著的性能,阳离子双子表面活性剂是药物输送系统、基因载体和生物材料表面改性等生物应用的有前途的候选物。

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