We present a sensitive and rapid screening method for the determination of β-lactamase activity of antibiotic-resistant bacteria, by designing a pH-sensitive fluorescent dye-doped mesoporous silica nanoparticle encapsulated with penicillin G as a substrate. When penicillin G was hydrolysed by β-lactamase and converted into penicilloic acid, the acidic environment resulted in fluorescence quenching of the dye. The dye-doped mesoporous nanoparticles not only enhanced the β-lactamase-catalyzed reaction rate but also stablized the substrate, penicillin G, which degrades into penicilloic acid in a water solution without β-lactamase. Twentyfive clinical bacterial samples were tested and the antibiotic resistant and susceptible strains were identified. The proposed method may detect the presence of β -lactamases of clinically relevant samples in less than 1â hour. Moreover, the detection limit of β-lactamase activity was as low as 7.8Ã10(-4)â U/mL, which was determined within two hours.
Fluorescent Mesoporous Nanoparticles for β-Lactamase Screening Assays.
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作者:Tummala Srikrishna, Huang Wei-An, Wu Bo-Hong, Chang Kai-Chih, Ho Yen-Peng
| 期刊: | ChemistryOpen | 影响因子: | 3.100 |
| 时间: | 2020 | 起止号: | 2020 Oct 23; 9(10):1074-1081 |
| doi: | 10.1002/open.202000221 | ||
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