4.8 Article

Ultrasensitive detection of β-lactamase-associated drug-resistant bacteria using a novel mass-tagged probe-mediated cascaded signal amplification strategy

期刊

CHEMICAL SCIENCE
卷 13, 期 43, 页码 12799-12807

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2sc01530g

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资金

  1. National Natural Science Foundation of China [22174068, 21722504]
  2. Natural Science Foundation of Jiangsu Province [BK20221303]
  3. Jiangsu Provincial Key Research and Development Program [BE2022796]
  4. Open Foundation of State Key Laboratory of Reproductive Medicine [SKLRM-2022BP1]
  5. Science and Technology Development Fundation of NJMU [NMUB2019014, NJMUQY2022003]
  6. Leading Technology Foundation Research Project of Jiangsu Province [BK20192005]
  7. Changzhou Siyao Hospital Pharmaceutical Foundation of Nanjing Pharmaceutical Association [2019YX012]
  8. SEU-NJMU-CPU Cooperation Project [2242019K3DNZ2]

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This study developed a mass-tagged probe-mediated enzyme- and light-assisted cascaded signal amplification strategy for the ultrasensitive detection of beta-lactamase, which is closely associated with drug-resistant bacteria. The sensitivity of beta-lactamase detection was significantly enhanced by this approach, and the released mass tags were quantified by mass spectrometry.
The emergence and spread of drug-resistant bacteria (DRB) is a global health threat. Early and accurate detection of DRB is a critical step in the treatment of DRB infection. However, traditional assays for DRB detection are time-consuming and have inferior analytical sensitivity and quantification capability. Herein, a mass-tagged probe (MP-CMSA)-mediated enzyme- and light-assisted cascaded signal amplification strategy was developed for the ultrasensitive detection of beta-lactamase (BLA), an enzyme closely associated with most DRB. Each MP-CMSA probe contained multiple poly(amidoamine) (PAMAM) dendrimer molecules immobilized on a streptavidin agarose bead via a BLA-cleavable linker, and each dendrimer was modified with multiple mass tags via a photo-cleavable linker. In BLA detection, BLA could cleave the BLA-cleavable linker, leading to dendrimers shedding from the MP-CMSA probe to achieve enzyme-assisted signal amplification. Then, each dendrimer can further release mass tags under UV light to achieve light-assisted signal amplification. After this cascaded signal amplification, the released mass tags were ultimately quantified by mass spectrometry. Consequently, the sensitivity of BLA detection can be significantly enhanced by four orders of magnitude with a detection limit of 50.0 fM. Finally, this approach was applied to the blood samples from patients with DRB. This platform provides a potential strategy for the sensitive, rapid and quantitative detection of DRB infection.

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