Synthesis of a new ratiometric emission Ca2+ indicator for in vivo bioimaging
摘要:
A novel fluorescent calcium indicator with a 490/582 nm ratiometric emission has been designed and synthesized. The indicator exhibits a highly selective ratiometric emission response to Ca2+ over other metal cations and a large Stokes shift of 202 nm. Moreover, its practical cell imaging capability for intracellular Ca2+ in the resting- and dynamic-state has been demonstrated in human umbilical vein endothelial cells using a confocal laser scanning microscope. (C) 2012 Chuan Dong. Published by Elsevier B.V. on behalf of Chinese Chemical Society. All rights reserved.
Synthesis of a new ratiometric emission Ca2+ indicator for in vivo bioimaging
摘要:
A novel fluorescent calcium indicator with a 490/582 nm ratiometric emission has been designed and synthesized. The indicator exhibits a highly selective ratiometric emission response to Ca2+ over other metal cations and a large Stokes shift of 202 nm. Moreover, its practical cell imaging capability for intracellular Ca2+ in the resting- and dynamic-state has been demonstrated in human umbilical vein endothelial cells using a confocal laser scanning microscope. (C) 2012 Chuan Dong. Published by Elsevier B.V. on behalf of Chinese Chemical Society. All rights reserved.
A novel ratiometric emission probe for Ca<sup>2+</sup>in living cells
作者:Qiaoling Liu、Wei Bian、Heping Shi、Li Fan、Shaomin Shuang、Chuan Dong、Martin M. F. Choi
DOI:10.1039/c2ob26888d
日期:——
A ratiometric fluorescent probe for Ca2+ based on 1,3,4-oxadiazole derivative has been designed and developed. The probe exhibits a large Stokes shift of 202 nm and a highly selective ratiometric emission response (490/582 nm) to Ca2+ over other metal cations. Additionally, the probe can readily reveal the changes of intracellular Ca2+ concentration in living human umbilical vein endothelial cells.
A novel fluorescent calcium indicator with a 490/582 nm ratiometric emission has been designed and synthesized. The indicator exhibits a highly selective ratiometric emission response to Ca2+ over other metal cations and a large Stokes shift of 202 nm. Moreover, its practical cell imaging capability for intracellular Ca2+ in the resting- and dynamic-state has been demonstrated in human umbilical vein endothelial cells using a confocal laser scanning microscope. (C) 2012 Chuan Dong. Published by Elsevier B.V. on behalf of Chinese Chemical Society. All rights reserved.