| Literature DB >> 29725552 |
Peng Li1, Yongcheng Hu2.
Abstract
As common bisphosphonates drugs,Entities:
Year: 2018 PMID: 29725552 PMCID: PMC5872615 DOI: 10.1155/2018/3631249
Source DB: PubMed Journal: J Anal Methods Chem ISSN: 2090-8873 Impact factor: 2.193
Figure 1(a) UV-Vis spectrum of CDs (black line) and excitation-dependent of the CD fluorescence in water at room temperature. (b) The photograph of the CD solution under UV light of 365?nm (left) and under visible light (right). (c) FTIR spectra of CDs and (d) HRTEM images of CDs.
Figure 2(a) XPS survey spectrum of CDs. (b) C1s, (c) O1s, and (d) N1s high-resolution XPS spectra of the CQDs.
Figure 3Fluorescence quenching behavior of CDs after the addition of various concentrations (5 × 10−9 mol·L−1 to 4 × 10−7 mol·L−1) of pamidronate disodium (A-I (a)) and the addition of various concentrations (6 × 10−9 mol·L−1 to 8 × 10−7 mol·L−1) of zoledronic acid (A-G (c)). The linear plot of relative fluorescence intensity (F0/F1) of CDs as a function of pamidronate disodium (5 × 10−9 mol·L−1 to 4 × 10−7 mol·L−1 (b) and zoledronic acid (6 × 10−9 mol·L−1 to 8 × 10−7 mol·L−1 (d)). Every data point was the mean of three measurements. The error bars were the standard deviation.
Figure 4Fluorescence turn-off behavior of CDs in the presence of the same concentration of pamidronate disodium or zoledronic acid (4.0 × 10−7 mol·L−1).
Scheme 1The chemical structure of pamidronate disodium or zoledronic acid and the illustration of turn-off fluorescent sensor for pamidronate disodium and zoledronic acid based on carbon dots from black tea.
Figure 5The lifetime of CDs after adding different bisphosphonates.
Figure 6The influence of naturally abundant foreign metal ions and biomolecules (1.0 × 10−5 mol·L−1) for the turn-off sensor ((a) pamidronate disodium: 4 × 10−7 mol·L−1 and (b) zoledronic acid: 8 × 10−7 mol·L−1) and the comparison of different quenching abilities towards CDs of different bisphosphonates at the concentration of 4 × 10−7 mol·L−1 (c).