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8-Hydroxyguanosine (8-OHDG) Antikörper

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8-Hydroxyguanosine (8-OHDG)

Klonalität Monoklonal (15A3)
Wirt
Applikation
Alternativen ELISA, Immunhistochemie (Paraffinschnitte) (IHC (p))
4 Publikationen vorhanden
Produktnummer ABIN234190
Menge 100ug  (1mg/ml (OD280nm))  (Varianten)
Preis 385,71 €   Zzgl. Versandkosten €20,00 und MWSt
Lieferung nach
Verfügbarkeit Lieferung in 5 bis 7 Werktagen

Produktbeschreibung

Weitere Bezeichnung 8-Hydroxyguanosine
Immunogen 8-hydroxyguanosine (oh8G)-BSA and ?casein conjugates
Format Purified, Liquid
Isotyp IgG2a  (Passende Sekundärantikörper)
Klon 15A3
Beschreibung MAb to 8-Hydroxyguanosine Monoclonal Antibody to 8-Hydroxyguanosine
Spezifität Recognizes 8-hydroxy-2?-deoxyguanosine (oh8dG), 8-hydroxyguanine (oh8G), and 8-hydroxyguanosine (oh8G). These are markers of oxidative damage to DNA and RNA.

Anwendungen

Applikationshinweise Suitable for use in ELISA and immunohistochemistry (PLP-fixed sections) to detect the markers of oxidative damage to DNA and RNA. May also be used on immunoaffinity columns to isolate oxidative DNA damage adducts from biological fluids. Each laboratory should determine an optimum working titer for use in its particular application. Other applications have not been tested but use in such assays should not necessarily be excluded.
Konzentration 1mg/ml (OD280nm)
Reinigung Protein G chromatography. Source: Ascites
Buffer TBS, pH 7.4. Preservative: 0.1% Sodium azide
Lagerung Store at 2-8°C. DO NOT FREEZE!
Beschränkungen Nur für Forschungszwecke einsetzbar

Publikationen

Publikationen Park, Shigenaga, Degan et al.: "Assay of excised oxidative DNA lesions: isolation of 8-oxoguanine and its nucleoside derivatives from biological fluids with a monoclonal antibody column." in: Proceedings of the National Academy of Sciences of the United States of America, Vol. 89, Issue 8, pp. 3375-9, 1992 (PubMed).

Nunomura, Perry, Pappolla et al.: "RNA oxidation is a prominent feature of vulnerable neurons in Alzheimer's disease." in: The Journal of neuroscience : the official journal of the Society for Neuroscience, Vol. 19, Issue 6, pp. 1959-64, 1999 (PubMed).

Cui, Holmes, Liu: "Oxidative damage to the c-fos gene and reduction of its transcription after focal cerebral ischemia." in: Journal of neurochemistry, Vol. 73, Issue 3, pp. 1164-74, 1999 (PubMed).

Salganik, Albright, Rodgers et al.: "Dietary antioxidant depletion: enhancement of tumor apoptosis and inhibition of brain tumor growth in transgenic mice." in: Carcinogenesis, Vol. 21, Issue 5, pp. 909-14, 2000 (PubMed).