胶束中 Lophyl Radicals 的加速重组:两亲性洛芬二聚体形成的胶束的快速受控自组装以及通过光照射释放溶解物质

IF 1.6 4区 农林科学 Q3 CHEMISTRY, APPLIED
Masaaki Akamatsu
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引用次数: 0

摘要

通过光照射来控制表面活性剂形成的分子组装体的形态,可实现掺入物质的控制释放,这可应用于药物和活性成分的递送系统。另一方面,传统的光致表面活性剂和分子组装体反应速度较慢,很难在所需时间内控制其功能。在这篇综述中,我将讨论我们最近在用洛芬二聚体作为光致变色化合物加速控制光致分子组装体功能方面取得的进展。在紫外线(UV)照射下,洛芬二聚体衍生物会解离成一对洛芬自由基,这些自由基物种会发生热重组,但由于洛芬自由基的扩散,重组反应极其缓慢。利用表面活性剂形成的胶束的封闭内部空间,重组反应速度大大加快。在紫外线照射下,利用原位小角中子散射(in situ SANS)系统观察到两亲性洛芬二聚体形成的胶束形态发生了快速变化。此外,利用光致伸缩性胶束,通过紫外线照射实现了对钙黄绿素模型药物的快速控释。这种快速系统能真正实现药物在所需时间的控制释放,开发出一种高效、精确的给药系统(DDS)。此外,它还可广泛应用于活性成分释放控制、高效热交换控制和执行系统等领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accelerated Recombination of Lophyl Radicals in Micelles: Rapid Controlled Self-Assembly of Micelles Formed by Amphiphilic Lophine Dimers and Release of Solubilized Substance by Photoirradiation

Controlling the morphology of molecular assemblies formed by surfactants by photoirradiation enables the controlled release of incorporated substances, which can be applied to delivery systems for drugs and active ingredients. On the other hand, conventional photoresponsive surfactants and molecular assemblies have a slow response speed, making it difficult to control their functions at the desired time. In this review, I discuss our recent progress in the accelerated control of functions of photoresponsive molecular assemblies by using lophine dimer as a photochromic compound. The lophine dimer derivative dissociates into a pair of lophyl radicals that upon ultraviolet (UV) light irradiation, and these radical species thermally recombine although the recombination reaction is extremely slow due to the diffusion of lophyl radicals. By using the confined inner space of micelles formed by surfactants, the recombination reaction was extremely accelerated. With UV light irradiation, rapid morphological changes in micelles, formed by amphiphilic lophine dimers were observed by using in situ small-angle neutron scattering (in situ SANS) system. Moreover, the rapid controlled release of calcein as a model drug was achieved by UV light irradiation using the photoresponsive micelles. This rapid system can realize the controlled release of drugs truly at the desired time, developing an efficient and precise drug delivery system (DDS). Furthermore, it can be applied in a wide range of fields such as release control of active ingredients, efficient heat exchange control, and actuating systems.

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来源期刊
Journal of oleo science
Journal of oleo science CHEMISTRY, APPLIED-FOOD SCIENCE & TECHNOLOGY
CiteScore
3.20
自引率
6.70%
发文量
173
审稿时长
3 months
期刊介绍: The J. Oleo Sci. publishes original researches of high quality on chemistry, biochemistry and science of fats and oils such as related food products, detergents, natural products, petroleum products, lipids and related proteins and sugars. The Journal also encourages papers on chemistry and/or biochemistry as a major component combined with biological/ sensory/nutritional/toxicological evaluation related to agriculture and/or food.
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