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主体客体相互作用增强的冠醚空腔内的一氧化氮光生成用于抗菌气体治疗。

Host-Guest-Interaction Enhanced Nitric Oxide Photo-Generation within a Pillar[5]arene Cavity for Antibacterial Gas Therapy.

机构信息

Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of the Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an 710127, China.

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610064, China.

出版信息

ACS Appl Mater Interfaces. 2023 Nov 29;15(47):54266-54279. doi: 10.1021/acsami.3c10862. Epub 2023 Nov 16.

Abstract

Supramolecular macrocycles with intrinsic cavities have been widely explored as containers to fabricate versatile functional materials specific host-guest recognitions. However, relatively few studies have focused on the modulation of guest reactivity within a macrocyclic cavity. Here, we demonstrate the confinement effect of pillar[5]arene with an electron-rich and precise cavity that can dramatically enhance guest photoactivity and nitric oxide (NO) generation upon visible light irradiation. Mechanism studies reveal that it is achieved through increasing the ground state nitro-aromatic torsion angle, suppressing the intersystem crossing relaxation path of the state, and accelerating the isomerization reaction path of guest molecules. This NO-generating system displays broad-spectrum antibacterial, biofilm inhibition, and dispersal activities. Moreover, it can accelerate the healing of methicillin-resistant (MRSA)-infected wounds .

摘要

具有内在空腔的超分子大环作为容器,已被广泛探索用于制造多功能功能材料,具有特定的主客体识别能力。然而,相对较少的研究集中在调节大环空腔内客体的反应性。在这里,我们展示了富电子和精确空腔的柱芳烃的限制效应,该空腔可以在可见光照射下显著增强客体的光活性和一氧化氮(NO)的生成。机理研究表明,这是通过增加硝基芳烃的扭转角、抑制激发态的系间穿越弛豫途径以及加速客体分子的异构化反应途径来实现的。这种产生 NO 的系统具有广谱抗菌、抑制生物膜和分散活性。此外,它还可以加速耐甲氧西林金黄色葡萄球菌(MRSA)感染伤口的愈合。

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