Litcius/Paper detail

Ultrastable radical-doped coordination compounds with antimicrobial activity against antibiotic-resistant bacteria

Hua Ke, Fen Hu, Lingyi Meng, Qihua Chen, Qian-Sheng Lai, Ze-Chen Li, Ze-Long Huang, Jian‐Zhen Liao, Jian‐Ding Qiu, Can‐Zhong Lu

2020Chemical Communications24 citationsDOI

Abstract

In the present work, we have introduced a series of stable radical-doped coordination compounds composed of donor-acceptor structures and shown to produce organic radicals in situ as a result of unconventional lone pair-π interactions in ambient conditions. Inconspicuous lone pair-π and C-Hπ interactions were shown to play a key role in self-assembly as well as the charge transfer process, resulting in a long-lived charge-separated state able to generate organic radicals. The resultant species displayed broad-spectrum antimicrobial activity, including against multi-drug-resistant bacteria. This study unveiled the promise of reactive organic radical-doped materials as a new platform for developing antimicrobial agents that can overcome antibiotic resistance.

Topics & Concepts

AntimicrobialBacteriaLone pairChemistryBroad spectrumPhotochromismDopingCoordination complexAntibioticsCombinatorial chemistryPhotochemistryOrganic chemistryBiochemistryMaterials scienceMoleculeBiologyMetalOptoelectronicsGeneticsMetal-Organic Frameworks: Synthesis and ApplicationsPhotochromic and Fluorescence ChemistryNanoplatforms for cancer theranostics