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Louisiana State University in Shreveport Redox Molecular Signaling Core Facility (RRID:SCR_024778)Copy Citation Copied
URL: https://www.lsuhs.edu/centers/cardiovascular-diseases-and-sciences/cobre/cobre-core-facilities
Proper Citation: Louisiana State University in Shreveport Redox Molecular Signaling Core Facility (RRID:SCR_024778)
Description: Facility includes Analytic Redox Biology and Molecular Signaling Sub-Cores. Provided services include measurements of reactive oxygen species, reactive nitrogen species, reactive sulfide species, protein, peptides, metabolites, and lipids in cell culture and tissue samples. High-performance liquid chromatography systems, coupled with UV-vis and fluorescence detectors to quantify cellular and mitochondrial superoxide production, hydrogen sulfide pools (free sulfide, sulfide bound to transitional metals, and sulfane sulfur), and thiols (glutathione, GSH/GSSG, cysteine, cystine, homocysteine, persulfides, and glutathionylation).Instruments include Sievers NO Analyzer (NOA 280i, GE), Agilent 8890 GC and 8335 sulfur chemiluminescence detector ,Thermo Scientific Orbitrap Exploris 480 and SCIEX Triple Quad 7500 mass spectrometer. Molecular Signaling Sub-Core offers services for molecular cloning and site-directed mutagenesis, design and production of vectors for CRISPR/Cas9 modification of vascular cells, services for endothelial, smooth muscle, and cardiac myocyte cell isolation, for generation of vascular cell lines, and for lentivirus production for transient or stable modification of cardiovascular cells, access to equipment and expertise for studying cellular effects of hypoxia/reoxygenation injury (Coy Hypoxic Chamber, CLARIOstar Spectrofluorometer), for automated capillary Western blot analysis (ProteinSimple Jess Simple Western), and for high-resolution fluo-respirometry to study mitochondrial function (Oroboros O2k modular system).
Synonyms: , CoBRE Redox Molecular Signaling Core, Redox Molecular Signaling Core
Resource Type: service resource, core facility, access service resource
Keywords: ABRF, Analytic Redox Biology, Molecular Signaling,
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