TY - JOUR
T1 - An ESIPT-based fluorescent probe with large Stokes shift for peroxynitrite detection in HeLa cells and zebrafish
AU - Yu, Jin
AU - Shu, Wei
AU - Kang, Hao
AU - Han, Rubing
AU - Zhang, Xiaoli
AU - Zhang, Rubo
AU - Jing, Jing
AU - Zhang, Xiaoling
N1 - Publisher Copyright:
© 2022
PY - 2022/8
Y1 - 2022/8
N2 - The quick coupled reaction of nitric oxide (NO) with superoxide free radicals (·O2−) produces peroxynitrite (ONOO−), it is a powerful biological oxidant. And according to interact with proteins, lipids, nucleic acids and other organisms, the ONOO− eventually leads to all sorts of diseases, for instance, Alzheimer's disease, diabetes, cancer, inflammation. To fully understand the multiple pathological processes of ONOO− in vivo, it is imperative to exploit effective tools to realize the precise, fast and sensitive detection of endogenous ONOO−. We described a novel fluorescent probe named YV in this work, covering the synthesis, characterization and biological application. YV can detect ONOO− by means of fluorescence imaging. Because of the borate group cleavage, YV exhibited a fluorescence intensity change toward ONOO−. It was, the principle of ESIPT that resulted in fluorescence enhancement. The probe YV shows a series of advantages such as high selectivity, fast response, significant Stokes shift and low detection limit. Fluorescence imaging can be used to identify variations in ONOO− in Hela cells and zebrafish. YV will be a robust imaging tool for detecting endogenous ONOO−.
AB - The quick coupled reaction of nitric oxide (NO) with superoxide free radicals (·O2−) produces peroxynitrite (ONOO−), it is a powerful biological oxidant. And according to interact with proteins, lipids, nucleic acids and other organisms, the ONOO− eventually leads to all sorts of diseases, for instance, Alzheimer's disease, diabetes, cancer, inflammation. To fully understand the multiple pathological processes of ONOO− in vivo, it is imperative to exploit effective tools to realize the precise, fast and sensitive detection of endogenous ONOO−. We described a novel fluorescent probe named YV in this work, covering the synthesis, characterization and biological application. YV can detect ONOO− by means of fluorescence imaging. Because of the borate group cleavage, YV exhibited a fluorescence intensity change toward ONOO−. It was, the principle of ESIPT that resulted in fluorescence enhancement. The probe YV shows a series of advantages such as high selectivity, fast response, significant Stokes shift and low detection limit. Fluorescence imaging can be used to identify variations in ONOO− in Hela cells and zebrafish. YV will be a robust imaging tool for detecting endogenous ONOO−.
KW - Bioimaging
KW - ESIPT
KW - Fluorescent probe
KW - Peroxynitrite
KW - Zebrafish
UR - http://www.scopus.com/inward/record.url?scp=85131460555&partnerID=8YFLogxK
U2 - 10.1016/j.dyepig.2022.110334
DO - 10.1016/j.dyepig.2022.110334
M3 - Article
AN - SCOPUS:85131460555
SN - 0143-7208
VL - 204
JO - Dyes and Pigments
JF - Dyes and Pigments
M1 - 110334
ER -