Epifriedelanol from the root bark of Ulmus davidiana inhibits cellular senescence in human primary cells.
@article{Yang2011EpifriedelanolFT, title={Epifriedelanol from the root bark of Ulmus davidiana inhibits cellular senescence in human primary cells.}, author={Hyo Hyun Yang and Jong Keun Son and Bo Chan Jung and Ming Shan Zheng and Jae-Ryong Kim}, journal={Planta medica}, year={2011}, volume={77 5}, pages={ 441-9 } }
Since cellular senescence involves organismal aging as well as diverse diseases, aging intervention might contribute to inhibit the aging process as well as aging-associated diseases. We tried to search for effective compounds from the root bark of ULMUS DAVIDIANA that are able to inhibit cellular senescence in human fibroblasts (HDFs) and human umbilical vein endothelial cells (HUVECs). Twenty-two compounds from the root bark of U. DAVIDIANA were isolated and screened for their inhibitory…
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Quercetin-3-O-β-d-glucuronide isolated from Polygonum aviculare inhibits cellular senescence in human primary cells
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Data imply that compound 9 represses cellular senescence in human primary cells and might be useful for the development of dietary supplements or cosmetics that ameliorate tissue aging or aging-associated diseases.
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- Biology, MedicineArchives of pharmacal research
- 2015
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- Medicine, BiologyArchives of Pharmacal Research
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This review summarizes how the biological compounds listed above affect cell morphology, cell proliferation, specific cell functions, the activity of senescence-associated β-galactosidase (SA-β-gal), the shortening of telomeres and reduction of telomerase activity, production of intracellular reactive oxygen species (ROS) and lipid peroxidation products, expression of antioxidant enzymes and expression of p53 and p21 are summarized.
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Several isolated compounds from U. minor samaras supporting their possible alimentary use are highlighted, including one new flavan-3-ol, one new trihydroxy fatty acid, and two glycosylated flavonoids whose NMR data are not available in the literature.
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