4-Hydroxynonenal Datasheet DC Chemicals
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Cat.No DC28309
Name 4-Hydroxynonenal

Chemical Properties

CAS 75899-68-2
Formula C9H16O2
MW 156.22214
Storage 2 years -20°C Powder, 2 weeks 4°C in DMSO, 6 months -80°C in DMSO

Biological activity

Description CAS NO.:75899-68-2
Product Name:2-Nonenal, 4-hydroxy-,(2E)-
Synonyms:2-Nonenal, 4-hydroxy-,(2E)-;4-hydroxy Nonenal;HNE;4-hydroxy-2,3-trans-nonenal;4-hydroxy-2E-nonenal;4-hydroxy-2-nonena;4-HYDROXY-2-NONENAL;4-hydroxy-trans-2-nonenal;4-Hydroxynonenal
EINEC:
Molecular Formula:C9H16O2
Molecular Weight:156.22214
Target: Human Endogenous Metabolite
In Vivo Following 24 h after fluid percussion injury (FPI), the mouse brain tissue is analyzed for the expression level of NADPH oxidase 1 (NOX1), inducible nitric oxide synthase (iNOS), 4-Hydroxynonenal (4-HNE. Both wild-type (Nrf2+/+) and Nrf2-deficient mice (Nrf2−/−) results in increased expression of 4-Hydroxynonenal following 15 psi injury (moderate injury) when compared to uninjured Nrf2+/+ and Nrf2−/− mice. Similar to iNOS result, in Nrf2−/− KO mice, the expression level of 4-Hydroxynonenal is significantly high when compared to corresponding injured and uninjured Nrf2+/+ WT animals[2].
In Vitro 4-Hydroxynonenal is both a substrate and an inhibitor of ALDH2; inhibition of ALDH2 by 4-Hydroxynonenal is reversible at low concentration and become irreversible when the concentration of 4-HNE reaches 10 µM[1]. 4-Hydroxynonenal can induce antioxidant defense mechanisms to restrain its own production and to enhance the cellular protection against oxidative stress[1]. 4-Hydroxynonenal, the product of lipid peroxidation, is mutagenic and genotoxic in viruses, bacteria and mammalian cells. It reacts with all four DNA bases but with different efficiency: G >C > A >T. 4-Hydroxynonenal-dG represents the best biomarker of the genotoxic effects of 4-Hydroxynonenal and these adducts are primarily found in nuclear DNA. A classic example of etiological relevance of 4-Hydroxynonenal-dG in human cancers is 4-Hydroxynonenal-dG induced p53 mutation. 4-Hydroxynonenal-dG adducts were preferentially formed at the third base of codon 249 in the p53 gene, causing gene mutation and affecting diverse biological processes including cell cycle arrest, apoptosis, DNA repair, and differentiation[1].
Kinase Assay
Cell Assay
Animal Administration

References

[1]. Zhong H, et al. Role of lipid peroxidation derived 4-hydroxynonenal (4-HNE) in cancer: focusing on mitochondria. Redox Biol. 2015;4:193-9. [2]. Csala M, et al. On the role of 4-hydroxynonenal in health and disease. Biochim Biophys Acta. 2015 May;1852(5):826-38. [3]. Bhowmick S, et al. Traumatic brain injury-induced downregulation of Nrf2 activates inflammatory response and apoptotic cell death. J Mol Med (Berl). 2019 Nov 22.
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