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Self-assembled Supramolecular Artificial Transmembrane Ion Channels:Recent Progress and Application
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作者 LUO Yichen ZHU Canhong +2 位作者 ZHANG Tianlong YAN Tengfei LIU Junqiu 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2023年第1期3-12,共10页
Natural protein channels have evolved with fantastic spatial structures,which play pivotal physiological functions in all living systems.Learning from nature,chemical scientists have developed a myriad of artificial t... Natural protein channels have evolved with fantastic spatial structures,which play pivotal physiological functions in all living systems.Learning from nature,chemical scientists have developed a myriad of artificial transmembrane ion channels by using various chemical strategies,among which the non-covalent supramolecular ion channels exhibit remarkable advantages over other forms(e.g.,single-molecule ion channel),which exhibited facile preparation methods,easier structural modification and functionalization.In this review,we have systematically summarized the recent progress of supramolecular self-assembled artificial transmembrane ion channels,which were classified by different self-assembly mechanisms,such as hydrogen bonds,π-πinteractions,etc.Detailed preparation process and self-assembly strategies of the supramolecular ion channels have been described.Moreover,potential biomedical applications of the supramolecular ion channels have also been carefully discussed in this review.Finally,future opportunities and challenges facing this field were also elaborately discussed.It is anticipated that this review could provide a panoramic sketch and future directions towards the construction of novel artificial ion channels with novel functions and biomedical applications. 展开更多
关键词 SELF-ASSEMBLY SUPRAMOLECULAR artificial ion channel Biomedical application
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Molecular rotaxane shuttle-relay accelerates K^(+)/Cl^(-) symport across a lipid membrane
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作者 Kai Ye Zekai Zhang +7 位作者 Zexin Yan Shihao Pang Huiting Yang Xiaonan Sun Can Liu Linyong Zhu Cheng Lian Chunyan Bao 《Science China Chemistry》 SCIE EI CAS CSCD 2023年第8期2300-2308,共9页
Synthetic molecules that can mediate the coupled transport of Cl^(-) with K^(+) and/or Na+across the lipid bilayers have aroused great interest due to their potential as a novel therapeutic strategy by disrupting cell... Synthetic molecules that can mediate the coupled transport of Cl^(-) with K^(+) and/or Na+across the lipid bilayers have aroused great interest due to their potential as a novel therapeutic strategy by disrupting cellular ion homeostasis.Based on the structural advantages of molecular rotaxanes,we herein show that two rotaxane-based transporters[2]R and[3]R induce coupled K^(+)/Cl^(-) channel transport by introducing Cl^(-) recognition sites in the thread and K^(+) binding group in the wheel,respectively.The welldesigned molecular structures allow the insertion of unimolecular rotaxanes into the lipid bilayer,thus achieving effective ion transport by means of thermodynamically controlled movement and driven by the difference in ion concentration inside and outside the vesicles.In addition,the use of a three-component rotaxane can accelerate ion transport through a cooperative shuttlerelay mechanism in which two wheels move along the thread in the lipid membrane,thereby enabling[3]R to have higher ion transport capacity.This work represents a major advance in the use of rotaxane molecules to accomplish more complex and effective tasks. 展开更多
关键词 K^(+)/Cl^(-)symport molecular rotaxane artificial ion channel ion-pair recognition
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