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基于硼酸功能化荧光金属有机框架@共价有机框架的多重耐药菌超灵敏检测

Ultrasensitive Detection of Multidrug-Resistant Bacteria Based on Boric Acid-Functionalized Fluorescent MOF@COF.

作者信息

Li Ruiwen, Yan Jintao, Feng Bin, Sun Min, Ding Chuanfan, Shen Hao, Zhu Jianhua, Yu Shaoning

机构信息

Institute of Mass Spectrometry, School of Material Science and Chemical Engineering, Ningbo University, Ningbo, Zhejiang 315211, China.

Department of Intensive Care Unit, The First Affiliated Hospital of Ningbo University, Ningbo, Zhejiang 315211, China.

出版信息

ACS Appl Mater Interfaces. 2023 Apr 19;15(15):18663-18671. doi: 10.1021/acsami.3c00632. Epub 2023 Apr 10.

Abstract

The widespread use of antibiotics has made multidrug-resistant bacteria (MDRB) one of the greatest threats toward global health. Current conventional microbial detection methods are usually time-consuming, labor-intensive, expensive, and unable to detect low concentrations of bacteria, which cause great difficulties in clinical diagnosis and treatment. Herein, we constructed a versatile biosensing platform on the basis of boric acid-functionalized porous framework composites (MOF@COF-BA), which were able to realize highly efficient and sensitive label-free MDRB detection via fluorescence. In this design, MDRB were captured using aptamer-coated nanoparticles and the fluorescent probe MOF@COF-BA was tightly anchored onto the surface of MDRB due to interactions between boric acid groups and glycolipids on bacteria cells. Benefitting from the remarkable fluorescence performance of MOF@COF-BA, rapid and specific detection of MDRB, such as methicillin-resistant (MRSA) and (AB), was realized with a detection range of 20-10 CFU/mL (for both) and limits of detection of 7 CFU/mL (MRSA) and 5 CFU/mL (AB). The feasibility of using the developed platform to selectively detect MRSA and AB from complex urine, human serum, and cerebrospinal fluid samples was also demonstrated. This work provides a promising strategy for accurate MDRB diagnosis, avoiding serious infection using rational antibiotic therapy.

摘要

抗生素的广泛使用使多重耐药菌(MDRB)成为全球健康面临的最大威胁之一。当前传统的微生物检测方法通常耗时、费力、昂贵,且无法检测低浓度细菌,这给临床诊断和治疗带来了极大困难。在此,我们基于硼酸功能化多孔框架复合材料(MOF@COF-BA)构建了一个多功能生物传感平台,该平台能够通过荧光实现高效、灵敏的无标记MDRB检测。在这种设计中,使用适配体包被的纳米颗粒捕获MDRB,由于硼酸基团与细菌细胞上糖脂之间的相互作用,荧光探针MOF@COF-BA被紧密锚定在MDRB表面。受益于MOF@COF-BA卓越的荧光性能,实现了对耐甲氧西林金黄色葡萄球菌(MRSA)和鲍曼不动杆菌(AB)等MDRB的快速、特异性检测,检测范围为20 - 10⁶ CFU/mL(两者均如此),检测限分别为7 CFU/mL(MRSA)和5 CFU/mL(AB)。还证明了使用所开发平台从复杂的尿液、人血清和脑脊液样本中选择性检测MRSA和AB的可行性。这项工作为准确诊断MDRB提供了一种有前景的策略,通过合理的抗生素治疗避免严重感染。

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