| Literature DB >> 31945234 |
Cheng-Zhang Yang1, Yong-Chang Liu1, Cheng Xu1, Ai-Min Bai1, Yan-Jun Hu1.
Abstract
Cefixime is a third generation orally administered cephalosporin that is frequently used as a broad spectrum antibiotic against various gram-negative and gram-positive bacteria. In this study, a simple and sensitive fluorescent sensor for the determination of the cefixime and ctDNA was established based on the CdTe:Zn2+ quantum dots (QDs). The fluorescence of CdTe:Zn2+ QDs can be effectively quenched by cefixime in virtue of the surface binding of cefixime on CdTe:Zn2+ QDs and the subsequent photoinduced electron transfer process from CdTe:Zn2+ QDs to cefixime, in particular, the high sensitivity of QDs fluorescence emission to cefixime at the micromole per liter level, which render the cefixime-CdTe:Zn2+ QDs system into fluorescence "OFF" status, then turn on in the presence of ctDNA. Furthermore, the Fourier transform infrared (FTIR) spectra of characteristic bands of C-N and N-H groups of cefixime endow evidence for the interaction of cefixime with CdTe:Zn2+ QDs. The relative electrochemical behavior of the affinity of CdTe:Zn2+ QDs for cefixime and ctDNA reveals the potential molecular binding mechanism.Entities:
Keywords: CdTe:Zn2+ QDs; cefixime; ctDNA; fluorescent sensor; photoinduced electron transfer
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Year: 2020 PMID: 31945234 DOI: 10.1002/jmr.2816
Source DB: PubMed Journal: J Mol Recognit ISSN: 0952-3499 Impact factor: 2.137