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首页> 外文期刊>ACS applied materials & interfaces >Simultaneous Ultrasensitive Detection and Elimination of Drug-Resistant Bacteria by Cyclometalated Iridium(III) Complexes
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Simultaneous Ultrasensitive Detection and Elimination of Drug-Resistant Bacteria by Cyclometalated Iridium(III) Complexes

机译:通过环状铱(III)复合物同时超敏检测和消除耐药细菌

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Antimicrobial resistance has become a major threat to public health due to the rampant and empirical use of antibiotics. Rapid diagnosis of bacteria with the desired sensitivity and selectivity still, however, remains an open challenge. We report a special class of water-soluble metal-based aggregation-induced emission luminogens (AlEgens), namely, cyclometalated iridium(III) polypyridine complexes of the type [Ir(PQ)(2)(N<^>N)]CI (1-3), where PQ = 2-phenylquinoline and N<^>N = 2,2'-bipyridine derivatives, that demonstrate dual capability for detection and elimination of drug-resistant bacteria in aqueous solutions. These AlEgens exhibit selective and rapid sensing of endotoxins, such as lipopolysaccharides (LPS) and lipoteichoic acid (LTA) released by the bacteria, with a detection limit in the lower nanomolar range. Targeting these naturally amplified biomarkers (approximately 1 million copies per cell) by iridium(III) complexes induces strong AIE in the presence of different Gram-negative and Gram-positive bacteria including carbapenem-resistant A. baumannii (CRAB) and methicillin-resistant S. aureus (MRSA) at concentrations as low as 1.2 CFU/mL within 5 min in spiked water samples. Detection of bacteria by the complexes is also visible to the naked eye at higher (10(8) CFU/mL) cell concentrations. More notably, complexes 1 and 2 show potent antibacterial activity against drug-resistant bacteria with low minimum inhibitory concentrations (MICs) <= 5 mu g/mL (1-4 mu M) via ROS generation and cell membrane disintegrity. To the best of our knowledge, this work is the "first-in-class" example of a metal-based theranostic system that integrates selective, sensitive, rapid, naked-eye, wash-free, and real-time detection of bacteria using broad-spectrum antibiotics into a single platform. This dual capability of AIEgens makes them ideal scaffolds for monitoring bacterial contamination in aqueous samples and pharmaceutical applications.
机译:由于抗生素的猖獗和实证使用,抗微生物抗性已成为对公共卫生的重大威胁。然而,随着所需的敏感性和选择性的快速诊断细菌仍然是开放的挑战。我们报告了一类特殊的水溶性金属基聚集诱导的发光荧光炎(Alegens),即环状氧化铱(III)吡啶吡啶复合物[IR(PQ)(2)(n ^)] CI (1-3),其中PQ = 2-苯基喹啉和N = N = 2,2'-双赖氨酸衍生物,其证明了在水溶液中检测和消除耐药细菌的双能力。这些血糖表现出由细菌释放的脂多糖(LPS)和脂蛋白酸(LTA)的选择性和快速感测,在下纳米摩尔范围内具有检测限。铱(III)复合物靶向这些天然扩增的生物标志物(每种细胞每种细胞约100万份)诱导强烈的AIE在不同革兰氏阴性和革兰氏阳性细菌存在下,包括鲤鱼蛋白抗性A.Baumannii(蟹)和甲氧西林的S. 。在尖刺水样中5分钟内以1.2 cfu / ml低至1.2 cfu / ml的金黄色葡萄球菌(mrsa)。通过复合物检测细菌对肉眼较高(10(8)CFU / mL)细胞浓度的肉眼也可见。更值得注意的是,复合物1和2显示有效的抗菌活性对抗耐药细菌,耐药细菌,通过ROS产生和细胞膜崩解的最小抑制浓度(MICS)<=5μg/ mL(1-4μm)。据我们所知,这项工作是金属的Heranostic系统的“一流的”例子,它集成了选择性,敏感,快速,裸眼,无洗涤和使用的实时检测广谱抗生素进入一个平台。这种双重能力的透镜使其成为监测水样和药物应用中的细菌污染的理想支架。

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