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基于铁-环糊精配合物的催化氧化及二茂铁基表面活性剂的耗散自组装在DNA捕获与释放中的应用

Fe-CP-based Catalytic Oxidation and Dissipative Self-Assembly of a Ferrocenyl Surfactant Applied in DNA Capture and Release.

作者信息

Liu Ting, Zhu Liwei, Li Chencan, Yu Yang, Zhang Zhuo, Liu Huizhong, Wang Ling, Li Yawen

机构信息

School of Chemistry and Chemical Engineering, Center of Cosmetics, Qilu Normal University, Jinan 250200, Shandong Province, China.

School of Mechatronics and Automobile Engineering, Yantai University, Yantai 264005, Shandong Province, China.

出版信息

ACS Omega. 2024 May 21;9(22):23772-23781. doi: 10.1021/acsomega.4c01715. eCollection 2024 Jun 4.

Abstract

Dissipative self-assembly plays a vital role in fabricating intelligent and transient materials. The selection and design of the molecular structure is critical, and the introduction of valuable stimuli-responsive motifs into building blocks would bring about a novel perspective on the fuel driven nonequilibrium assemblies. For redox-responsive surfactants, novel methods of catalytic oxidation are very important for their activation/deactivation process through designing fuel input/energy dissipation. As an enzyme with a fast catalytic rate, Fe-based coordination polymers (Fe-CPs) are found to be highly effective oxidase-like enzymes to induce a reversible switch of a ferrocene-based surfactant over a wide range of temperatures and pH. This builds a bridge between the CPs materials and surfactants. Furthermore, glucose oxidase can also induce a switchable transition of a ferrocene-based surfactant. The GOX-catalyzed, glucose-fueled transient surfactant assemblies have been fabricated for many cycles, which has a successful application in a time-controlled and autonomous DNA capture and release process. The intelligent use of enzymes including CPs and GOX in ferrocene-based surfactants will pave the way for the oxidation of redox surfactants, which extends the application of stable or transient ferrocenyl self-assemblies.

摘要

耗散自组装在制备智能和瞬态材料中起着至关重要的作用。分子结构的选择和设计至关重要,将有价值的刺激响应基序引入构建块将为燃料驱动的非平衡组装带来新的视角。对于氧化还原响应性表面活性剂,新颖的催化氧化方法对于其通过设计燃料输入/能量耗散的激活/失活过程非常重要。作为一种具有快速催化速率的酶,铁基金属有机框架(Fe-CPs)被发现是高效的类氧化酶,可在很宽的温度和pH范围内诱导基于二茂铁的表面活性剂发生可逆转变。这在金属有机框架材料和表面活性剂之间架起了一座桥梁。此外,葡萄糖氧化酶也能诱导基于二茂铁的表面活性剂发生可切换转变。由葡萄糖氧化酶催化、以葡萄糖为燃料的瞬态表面活性剂组装体已制备了多个循环,并成功应用于时间控制的自主DNA捕获和释放过程。在基于二茂铁的表面活性剂中智能使用包括金属有机框架和葡萄糖氧化酶在内的酶将为氧化还原表面活性剂的氧化铺平道路,这扩展了稳定或瞬态二茂铁基自组装体的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08ea/11154932/7453335b319d/ao4c01715_0001.jpg

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