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KMID : 1150720160050020131
Integrative Medicine Research
2016 Volume.5 No. 2 p.131 ~ p.139
Ulmus davidiana ethanol extract inhibits monocyte adhesion to tumor necrosis factor-alpha-stimulated endothelial cells
Lee Ki-Mo

Joo Hee-Kyoung
Lee Yu-Ran
Park Myoung-Soo
Kang Gun
Choi Sung-A
Lee Kwon-Ho
Jeon Byeong-Hwa
Abstract
Background: Ulmus davidiana var. japonica Rehder (UD) has long been used in traditional folk medicine in Asia. This study is designed to investigate the antiadhesive activity of the ethanol extract of UD (UDE) and its underlying mechanisms in cultured endothelial cells.

Methods: The dried root bark of UD was extracted with 80% (v/v) ethanol. The antiadhesive activity of the UDE was investigated in cultured human umbilical vein endothelial cells and human embryonic kidney epithelial 293T (HEK 293T) cells stably transfected with pGL3-vascular cell adhesion molecule (VCAM)-1-luc. Monocyte adhesion in endothelial cells was induced by tumor necrosis factor-alpha (TNF-¥á), and the protective effects of UDE on monocyte?endothelial cell adhesion, VCAM-1 expression, reactive oxygen species production, and nuclear factor-¥êB activity were determined.

Results: Exposure to UDE at a concentration of 3?30 ¥ìg/mL for 24 hours produced no detectable cytotoxicity in human umbilical vein endothelial cells, but it significantly inhibited TNF-¥á-induced monocyte adhesion and VCAM-1 expression. TNF-¥á treatment of HEK 293T/VCAM-1-luc cells resulted in increased luciferase activity of the VCAM-1 promoter, which was inhibited by treatment with UDE. Additionally, TNF-¥á-induced reactive oxygen species generation, nuclear translocation of nuclear factor-¥êB, and I¥êB¥á degradation in human umbilical vein endothelial cells were effectively reduced by treatment with 30 ¥ìg/mL of UDE.

Conclusion: Our results indicated that UDE treatment inhibited TNF-¥á-induced monocyte adhesion in endothelial cells, suggesting that UD may reduce vascular endothelial inflammation.
KEYWORD
endothelial cells, monocyte adhesion, Ulmus davidiana var. japonica, vascular cell adhesion molecule-1
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