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HERO ID
6314664
Reference Type
Journal Article
Title
Aqueous extract of Schizandra chinensis fruit causes endothelium-dependent and -independent relaxation of isolated rat thoracic aorta
Author(s)
Rhyu, MR; Kim, EY; Yoon, BK; Lee, YJ; Chen, SN
Year
2006
Is Peer Reviewed?
1
Journal
Phytomedicine
ISSN:
0944-7113
EISSN:
1618-095X
Volume
13
Issue
9-10
Page Numbers
651-657
Language
English
PMID
16704926
DOI
10.1016/j.phymed.2006.02.003
Web of Science Id
WOS:000242980800007
Abstract
An aqueous extract of Schizandra chinensis fruit (ScEx) has long been used to promote the vascular health of postmenopausal women in Korea. This study investigated the ability of ScEx to relax rat aorta constricted with norepinephrine (NE) and the mechanism(s) of such relaxation. ScEx induced partial, endothelium-dependent relaxation. In particular, the relaxation induced by lower concentrations of ScEx (0.1 and 0.3 mg/ml) was largely endothelium-dependent, and was essentially abolished by NG-nitro-L-arginine, methylene blue, 1H-[1,2,3] oxadiazole [4,4-a] quinoxalin-1-one, indomethacin, or ICI 182,780. The results indicate that the response to ScEx involves enhancement of the nitric oxide (NO)-cGMP system, and that it occurs via estrogen receptors. The magnitude of the inhibition with these treatments decreased with increasing ScEx concentration, however, indicating that other vasorelaxation mechanisms are involved, which depend on the ScEx concentration. Calcium concentration-dependent contraction curves in high potassium depolarization medium were shifted significantly to the right and downward after incubation with ScEx (0.3 and 1.0 mg/ml), implying that ScEx is also involved in inhibition of the extracellular calcium influx to vascular smooth muscle. These data demonstrate that ScEx caused both endothelium-dependent and -independent vasorelaxation, which may contribute to understanding the cardiovascular protective effect of ScEx.
Keywords
calcium influx; endothelium-dependent; endo thelium-independent; nitric oxide; rat aorta; Schizandra chinensis fruit
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PFAS
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Additional PFAS (formerly XAgency)
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