Title : Fluorescent Probe Based on Azobenzene-Cyclopalladium for the Selective Imaging of Endogenous Carbon Monoxide under Hypoxia Conditions.

Pub. Date : 2016 Nov 15

PMID : 27748113






6 Functional Relationships(s)
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1 In this work, based on metal palladium-catalyzed reaction, we present the rational design, synthesis, and biological utility of an azobenzene-cyclopalladium-based fluorescent probe, ACP-2, for CO monitoring. Metals acid phosphatase 2, lysosomal Homo sapiens
2 In this work, based on metal palladium-catalyzed reaction, we present the rational design, synthesis, and biological utility of an azobenzene-cyclopalladium-based fluorescent probe, ACP-2, for CO monitoring. Palladium acid phosphatase 2, lysosomal Homo sapiens
3 In this work, based on metal palladium-catalyzed reaction, we present the rational design, synthesis, and biological utility of an azobenzene-cyclopalladium-based fluorescent probe, ACP-2, for CO monitoring. azobenzene acid phosphatase 2, lysosomal Homo sapiens
4 In this work, based on metal palladium-catalyzed reaction, we present the rational design, synthesis, and biological utility of an azobenzene-cyclopalladium-based fluorescent probe, ACP-2, for CO monitoring. cyclopalladium acid phosphatase 2, lysosomal Homo sapiens
5 Moreover, CO up-regulation during oxygen-glucose deprivation/reperfusion (OGD/R) was also imaged and certified by ACP-2. Oxygen acid phosphatase 2, lysosomal Homo sapiens
6 Moreover, CO up-regulation during oxygen-glucose deprivation/reperfusion (OGD/R) was also imaged and certified by ACP-2. Glucose acid phosphatase 2, lysosomal Homo sapiens