Cargando…

A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect

Alkaline phosphatase (ALP) is an important biomarker whose abnormal level in activity is associated with hepatobiliary, skeletal, and renal diseases as well as cancer. Herein, we synthesized ZnSe@ZnS quantum dots (ZnSe@ZnS QDs) and Mn-doped ZnS quantum dots (Mn:ZnS QDs) as fluorophores to establish...

Descripción completa

Detalles Bibliográficos
Autores principales: Hu, Penghui, Huang, Ruiyan, Xu, Ye, Li, Tengfei, Yin, Jun, Yang, Yu, Liang, Yuan, Mao, Xiaohan, Ding, Li, Shu, Chang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9841509/
https://www.ncbi.nlm.nih.gov/pubmed/36741147
http://dx.doi.org/10.1039/d2ra06956c
_version_ 1784869857889615872
author Hu, Penghui
Huang, Ruiyan
Xu, Ye
Li, Tengfei
Yin, Jun
Yang, Yu
Liang, Yuan
Mao, Xiaohan
Ding, Li
Shu, Chang
author_facet Hu, Penghui
Huang, Ruiyan
Xu, Ye
Li, Tengfei
Yin, Jun
Yang, Yu
Liang, Yuan
Mao, Xiaohan
Ding, Li
Shu, Chang
author_sort Hu, Penghui
collection PubMed
description Alkaline phosphatase (ALP) is an important biomarker whose abnormal level in activity is associated with hepatobiliary, skeletal, and renal diseases as well as cancer. Herein, we synthesized ZnSe@ZnS quantum dots (ZnSe@ZnS QDs) and Mn-doped ZnS quantum dots (Mn:ZnS QDs) as fluorophores to establish the ratiometric fluorescent assay for ALP activity detection in biological samples. p-Nitrophenyl phosphate (PNPP) was used as a substrate for ALP, and the overlaps between absorption spectra of PNPP and excitation spectra of QDs resulted in sharp fluorescence quenching. Under the catalysis of ALP, PNPP was hydrolyzed into p-nitrophenol (PNP), which caused a red shift of absorption band of PNPP and fluorescence recovery of Mn:ZnS QDs (585 nm). However, the overlaps between absorption spectra of PNP and emission spectra of ZnSe@ZnS QDs led a further quenching of ZnSe@ZnS QDs (405 nm). Therefore, the ratiometric fluorescent signals (F(585)/F(405)) were associated with activity of ALP based on bidirectional responses of QDs to the concentration of PNPP. Under the optimum conditions, the method exhibited a good linear relationship from 4 to 96 U per L (R(2) = 0.9969) with the detection limit of 0.57 U per L. Moreover, the method was successfully applied for detecting the ALP activity in a complex biological matrix (human serum and HepG2 cells) with impressive specificity. In particular, the complicated chemical modifications of QDs and pretreatments of biological samples were not required in the whole detection procedures. Therefore, it not only provided a sensitive, specific and simple approach to clinical ALP activity detection, but it also provided support for early diagnosis of diseases.
format Online
Article
Text
id pubmed-9841509
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-98415092023-02-03 A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect Hu, Penghui Huang, Ruiyan Xu, Ye Li, Tengfei Yin, Jun Yang, Yu Liang, Yuan Mao, Xiaohan Ding, Li Shu, Chang RSC Adv Chemistry Alkaline phosphatase (ALP) is an important biomarker whose abnormal level in activity is associated with hepatobiliary, skeletal, and renal diseases as well as cancer. Herein, we synthesized ZnSe@ZnS quantum dots (ZnSe@ZnS QDs) and Mn-doped ZnS quantum dots (Mn:ZnS QDs) as fluorophores to establish the ratiometric fluorescent assay for ALP activity detection in biological samples. p-Nitrophenyl phosphate (PNPP) was used as a substrate for ALP, and the overlaps between absorption spectra of PNPP and excitation spectra of QDs resulted in sharp fluorescence quenching. Under the catalysis of ALP, PNPP was hydrolyzed into p-nitrophenol (PNP), which caused a red shift of absorption band of PNPP and fluorescence recovery of Mn:ZnS QDs (585 nm). However, the overlaps between absorption spectra of PNP and emission spectra of ZnSe@ZnS QDs led a further quenching of ZnSe@ZnS QDs (405 nm). Therefore, the ratiometric fluorescent signals (F(585)/F(405)) were associated with activity of ALP based on bidirectional responses of QDs to the concentration of PNPP. Under the optimum conditions, the method exhibited a good linear relationship from 4 to 96 U per L (R(2) = 0.9969) with the detection limit of 0.57 U per L. Moreover, the method was successfully applied for detecting the ALP activity in a complex biological matrix (human serum and HepG2 cells) with impressive specificity. In particular, the complicated chemical modifications of QDs and pretreatments of biological samples were not required in the whole detection procedures. Therefore, it not only provided a sensitive, specific and simple approach to clinical ALP activity detection, but it also provided support for early diagnosis of diseases. The Royal Society of Chemistry 2023-01-16 /pmc/articles/PMC9841509/ /pubmed/36741147 http://dx.doi.org/10.1039/d2ra06956c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hu, Penghui
Huang, Ruiyan
Xu, Ye
Li, Tengfei
Yin, Jun
Yang, Yu
Liang, Yuan
Mao, Xiaohan
Ding, Li
Shu, Chang
A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect
title A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect
title_full A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect
title_fullStr A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect
title_full_unstemmed A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect
title_short A novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect
title_sort novel and sensitive ratiometric fluorescent quantum dot-based biosensor for alkaline phosphatase detection in biological samples via the inner-filter effect
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9841509/
https://www.ncbi.nlm.nih.gov/pubmed/36741147
http://dx.doi.org/10.1039/d2ra06956c
work_keys_str_mv AT hupenghui anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT huangruiyan anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT xuye anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT litengfei anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT yinjun anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT yangyu anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT liangyuan anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT maoxiaohan anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT dingli anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT shuchang anovelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT hupenghui novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT huangruiyan novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT xuye novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT litengfei novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT yinjun novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT yangyu novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT liangyuan novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT maoxiaohan novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT dingli novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect
AT shuchang novelandsensitiveratiometricfluorescentquantumdotbasedbiosensorforalkalinephosphatasedetectioninbiologicalsamplesviatheinnerfiltereffect