Recent development in chemosensor probes for the detection and imaging of zinc ions: a systematic review

被引:0
|
作者
D. Sadananda
A. M. M. Mallikarjunaswamy
C. N. Prashantha
Ramanjaneyulu Mala
Kuruvalli Gouthami
Lavanya Lakshminarayana
Luiz Fernando Romanholo Ferreira
Muhammad Bilal
Abbas Rahdar
Sikandar I. Mulla
机构
[1] Institute of Wood Science and Technology,WPU Division
[2] REVA University,Department of Chemistry, School of Applied Sciences
[3] REVA University,Department of Biotechnology, School of Applied Sciences
[4] Academy of Scientific and Innovative Research (AcSIR),Organic and Bioorganic Chemistry Laboratory
[5] CSIR-Central Leather Research Institute,Department of Biochemistry, School of Allied Health Sciences
[6] REVA University,Institute of Technology and Research (ITP)
[7] Graduate Program in Process Engineering,School of Life Science and Food Engineering
[8] Tiradentes University,Department of Physics
[9] Tiradentes University,undefined
[10] Huaiyin Institute of Technology,undefined
[11] University of Zabol,undefined
来源
Chemical Papers | 2022年 / 76卷
关键词
Zinc ion; Fluorescent chemosensors; Internal charge transfer; Photo induced electron transfer; Fluorescence resonance energy transfer;
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中图分类号
学科分类号
摘要
Zinc is an essential and second most abundant transition element in the human body after the iron (Fe3+). Chemosensors have unique nature for detection of various selective metal ions [including Zinc (Zn2+ ion)]. On the other hand, zinc is required for a variety of biological activities and enzymatic reactions proceed in the human body. However, the presence of certain of them in the environment, such as cadmium, lead, mercury, and others, poses health concerns and dangers. Fluorescent imaging has been shown to be the best tool for in vivo monitoring of zinc, a vital biological element for all living things. Which are in cell death, gene expression control, brain signal transmission, pathogenic, and other physiological activities. However, the question of how quickly to detect Zn2+ in biology remains difficult and important. Using appropriate fluorescent chemosensors, here, we aim to highlight current developments in detecting and bioimaging physiologically, ecologically, and industrially relevant metal ion(s) such as Zn2+. Additionally, this review has given a brief account of various detection methods Zn2+ sensors such as an internal charge transfer, photo induced electron transfer, fluorescence resonance energy transfer, chelation-enhanced fluorescence, and the importance of fluorescent chemosensors and their photophysical properties. This review will helpful to environmental chemists.
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页码:5997 / 6015
页数:18
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