Department of Chemistry and Biotechnology, Faculty of Engineering, Tottori University.
Center for Research on Green Sustainable Chemistry, Tottori University.
J Oleo Sci. 2024;73(6):839-846. doi: 10.5650/jos.ess24047.
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.
通过光辐照控制由表面活性剂形成的分子组装体的形态,可以实现所包含物质的控制释放,这可应用于药物和有效成分的递药系统。另一方面,传统的光响应表面活性剂和分子组装体的响应速度较慢,难以在所需时间控制其功能。在本综述中,我讨论了我们最近使用洛菲定二聚体作为光致变色化合物加速控制光响应分子组装体功能的进展。洛菲定二聚体衍生物解离成一对洛菲自由基,在紫外 (UV) 光照射下,这些自由基物种会热重组,尽管由于洛菲自由基的扩散,重组反应非常缓慢。通过使用表面活性剂形成的胶束的受限内部空间,观察到由两亲性洛菲定二聚体形成的胶束的快速形态变化,使用原位小角中子散射 (原位 SANS) 系统。此外,通过使用光响应胶束进行 UV 光照射,实现了钙黄绿素作为模型药物的快速控制释放。该快速系统可以真正在所需时间实现药物的控制释放,开发出高效、精确的药物递送系统 (DDS)。此外,它可以应用于各种领域,如有效成分的释放控制、高效热交换控制和致动系统。