(±)13-HDHA
Based on 1 Customer Validation
(±)13-HDHA is an autoxidation product of docosahexaenoic acid (DHA) in vitro. It is also produced from incubations of DHA in rat liver, brain, and intestinal microsomes. Fresh water hydra is shown to metabolize DHA to 13(R)-HDHA, presumably via the 11R-lipoxygenase activity. (±)13-HDHA is a potential marker of oxidative stress in brain and retina where DHA is an abundant polyunsaturated fatty acid.
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- Pureté : 98.8%
- CAS No.: 90780-53-3
- Formule: C22H34O
- Masse moléculaire:314.50
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Stockage:
Solution, -20°C, 2 years
Activité biologique
Description
Chemical Information
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CAS No. 90780-53-3
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Appearance Liquid
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Masse moléculaire 314.50
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Formule C22H34O
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Color Colorless to light yellow
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SMILES
CCC/C=C\C/C=C\C/C=C\CC(/C=C/C=C/C/C=C\CC)O
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Synonyms
(±)13-HDoHE; 13-hydroxy Docosahexaenoic acid; (±)13-HDoHE
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Livraison
Room temperature in continental US; may vary elsewhere.
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Stockage
Solution, -20°C, 2 years
Protocole
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ROS/oxidative-stress fluorescent staining
ROS/oxidative-stress fluorescent staining uses cell-permeant fluorogenic probes that become fluorescent after oxidation inside cells or tissues; commonly used examples include DCFH-DA/DCFDA for broad cellular oxidant detection, DHE for superoxide-related signal detection, MitoSOX for mitochondrial superoxide-related signal detection, and CellROX probes for oxidative-stress-associated fluorescence readouts. The assay detects probe oxidation rather than a single ROS species unless the probe and analysis method have been chemically validated for that species. DCFH-DA enters cells, is deacetylated by intracellular esterases to DCFH, and produces fluorescent DCF after oxidation, so the readout is used as an operational measure of total cellular oxidative stress rather than a species-specific ROS measurement. DHE and MitoSOX can report superoxide-related oxidation, but red fluorescence alone can include non-specific ethidium-like oxidation products; HPLC or optimized spectral approaches are
Pureté et documentation
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Fiche technique (262 KB)
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SDS (393 KB)
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Instruction de manipulation (2659 KB)
Références
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)