袁景利Jingli Yuan

(研究员)

 博士生导师  硕士生导师
学位:博士
性别:男
毕业院校:早稻田大学
所在单位:化学学院
电子邮箱:jlyuan@dlut.edu.cn

论文成果

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Responsive nanosensor for ratiometric luminescence detection of hydrogen sulfide in inflammatory cancer cells

发表时间:2020-06-13 点击次数:

论文名称:Responsive nanosensor for ratiometric luminescence detection of hydrogen sulfide in inflammatory cancer cells
论文类型:期刊论文
发表刊物:ANALYTICA CHIMICA ACTA
收录刊物:EI、SCIE、PubMed
卷号:1103
页面范围:156-163
ISSN号:0003-2670
关键字:Responsive nanosensor; Ratiometric luminescence; Hydrogen sulfide detection; Mesoporous silica nanoparticle; Inflammatory cancer cells
摘要:Gasotransmitter hydrogen sulfide (H2S), produced enzymatically in body, has important functions in biological signaling and metabolic processes. An abnormal level of H2S expression is associated with different diseases, therefore, development of novel bioanalytical methods for rapid and effective detection of H2S in biological conditions is of great importance. In this work, we report the development of a new responsive nanosensor for ratiometric luminescence detection of H2S in aqueous solution and live cells. The nanosensor (Ru@FITC-MSN) was prepared by immobilizing a luminescent ruthenium(II) (Ru(II)) complex into a fluorescein isothiocyanate (FITC) conjugated water-dispersible mesoporous silica nano-particle (MSN), showing dual emission bands at 520 nm (FITC) and 600 nm (Ru complex). The red luminescence of the formed Ru@FITC-MSN was quenched in the presence of Cu2+. The in-situ generated Ru-Cu@FITC-MSN responded to H2S rapidly and selectively, showing a linear ratiometric luminescence change in FITC and Ru(II) channels with the H2S concentration (0.5-4 mu M). Limit of detection (LoD) and limit of quantification (LoQ) were determined to be 0.36 and 1.21 mu M. Followed by investigation of cellular uptake processes, the utility of the nanosensor for ratiometric imaging of H2S in live cells and its capability to monitor H2S levels in inflammatory breast cancer cells were then demonstrated. This study provides a powerful approach for detection of highly reactive and unstable H2S biomolecules in live systems. (c) 2019 Elsevier B.V. All rights reserved.
发表时间:2020-03-22