• Title/Summary/Keyword: vascular endotherial cells

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Effect of Radix Polygoni Multiflori on Cultured Vascular Endotherial Cells Damaged by Xanthine Oxidase and Hypoxanthine (하수오가 Xanthine Oxidase와 Hypoxanthine에 의해 손상된 혈관내피세포에 미치는 영향에 관한 연구)

  • Lee Yang Suk;Kim Hyeong Su;Son Young Woo;Yoo Kyo Sang;Lee Jung Hun;Lee Kang Chang;Choi Kyu Chul;Shin Hong Chul;Park Seung Taeck
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.16 no.4
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    • pp.720-723
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    • 2002
  • To clarify the vasculotoxicity of reactive oxygen intermediate(ROI) in cultured vascular endotherial cells(VEC), of mouse, cytototoxicity was measured by MTS assay after VEC was incubated to 10~80mU/ml xanthine oxidase(XO) and hypoxanthine(HX) for 2 hours. and also, the protective effect of Radix Polygoni Multiflori(RPM) was determined by MTT assay in these cultrures. Cell viability was positively decreased dose-, and time-dependently, after the treatment with 40mU/ml XO/0.1 mM HX to cultured VEC for 2 hours. In the vasculoprotective effect of RPM on the toxicity induced by XO/HX, RPM prevented the XO/HX-induced cytotoxicity in these cultures. From above the results, it suggests that XO/HX is toxic in cultured VEC and herb extract, RPM has protective effect against the vasculotoxicity induced by XO/HX.

Effect of Salviae Multiorrhizae Radix on the Vasculotoxicity induced by glucose oxidase in cultured Pumonary Endotherial cells (Glucose Oxidase에 의해서 손상된 혈관내피세포에 대한 단삼의 영향)

  • Bak Sang Myeon;Lee Joung Hwa;Yang Hyun Woong;Lee Kang Chang
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.17 no.1
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    • pp.136-139
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    • 2003
  • Cytotoxicity of glucose oxidase(GO) and cardioprotective effect of Salviae Multiorrhizae Radix(SMR) against GO-induced cardiotoxicity were measured for evaluation of cardiotoxicity on cultured mouse pulmonary endotherial cells(PEC) by MTT assay after PEC were cultured for 8 hours at various concentrations of GO. GO was toxic in a time and dose-dependent manner on cultured PEC after PEC were grown for 8 hours in media containing 1~60mU/ml GO. While, cultures were pretreated with 60 μg/ml SMR for 2 hours increased remarkably cell viability. From the above results, it is suggested that GO is toxic on cultured PEC by the decrease of cell viability, and herb medicine such as SMR is very effective in the prevention of vascular toxicity induced by GO.

An extract of the root of Lithospermun erythrorhison accelerates wound healing

  • Fujita, Naoko;Sakaguchi, Ikuyo;Ikeda, Norikazu;Kato, Yoshiko;Minamino, Miki
    • Proceedings of the SCSK Conference
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    • 2003.09a
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    • pp.540-567
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    • 2003
  • Metabolic disease such as diabetes, which is caused by stress or imbalanced diet, has been increasing. A diabetic tend to suffer from a delay or difficulty of wound healing. The extract of SHIKON (SK), that is the root of Lithospermun erythrorhison, has been reported to have an effect on healing for normal wound, but has never studies for intractable wound so far. Therefore we examined the effect of SK extract on wound healing with healing impaired mouse model. Full-thickness round wounds were created on the backs of db/db mice and applied SK, and we observed neovascularization and collagen synthesis, distribution of apoptotic cells, and vascular endothelial growth factor (VEGF)- positive cells in granulation tissue. After two weeks, a number of capillary vessel and collagen synthesis were increased in SK-treated wounds. Infiltration of VEGF-positive neutrophils was also seen in the wound, besides apoptotic fibroblasts and endothelial cells were appeared in the granulation tissue. After three weeks, the wound closed completely with SK-treated but not in control. These results suggest that SK enhanced neovascularization by VEGF and this kind of apoptosis process makes the scar smooth. In this study, it is obvious that SK also accelerates healing of intractable wound.

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Anti-inflammatory Effect of Evodia Officinalis $D_{ODE}$ in Mouse Macrophage and Human Vascular Endotherial Cells (마우스 대식세포 및 사람 혈관 내피세포에서 오수유(Evodia officinalis $D_{ODE}$) 메탄올 추출물의 항염증 효과)

  • Yun, Hyun-Jeung;Heo, Sook-Kyoung;Lee, Young-Tae;Park, Won-Hwan;Park, Sun-Dong
    • The Korea Journal of Herbology
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    • v.23 no.1
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    • pp.29-38
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    • 2008
  • Objectives : Evodia officinalis DODE (EO), an herbal plant, has been widely used in traditional Korean medicine for the treatment of vascular diseases such as hypertension. The crude extract of EO contains phenolic compounds that are effective in protecting liver microsomes, hepatocytes, and erythrocytes against oxidative damage. But EO has been little found to have an anti-inflammatory activity. We investigated anti-inflammatory activity of EO in RAW 264.7 cells and human umbilical vein endothelial cells (HUVECs). Methods : Cytotoxic activity of EO on RAW 264.7 cells was investigated by using 5-(3-caroboxymeth-oxyphenyl)-2H-tetra-zolium inner salt (MTS) assay. The nitric oxide (NO) production was measured by Griess reagent system. And proinflammatory cytokines were measured by ELISA kit. The levels of intracellular adhesion molecule-1 (ICAM-1) and vascular cell adhesion molecule-1 (VCAM-1) expression were measured by flow cytometer. Results : EO decreased LPS-induced NO production in RAW 264.7 cells. The inhibitory activity of EO on LPS-induced NO release is probably associated with suppressing TNF-${\alpha}$, IL-6 and MCP-1 formation. These results indicate that EO has potential as an anti-inflammatory agent. Moreover, EO decreased TNF-${\alpha}$-induced IL-8, IL-6 production, and ICAM-1 and VCAM-1 expression in HUVECs. Conclusions : EO inhibits TNF-${\alpha}$-induced inflammation via decreasing cytokines production and adhesion molecules expression. These results indicate that EO has potential as an anti-inflammation and anti-artherosclerosis agent.

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Crataegi Fructus-Induced Vascular Relaxation through Release of Endotherial Nitric Oxide (내피세포 Nitric Oxide 유리를 통한 산사의 혈관이완 작용)

  • Chae Jong Koo;Kim Gil-Whon;Shin Heung Mook
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.17 no.1
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    • pp.146-150
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    • 2003
  • It had been known for a while that Crataegi Fructus(CF; Crataegus pinnatifida Bunge) had only a digestive effect. Recently, it has been demonstrated that CF also has an anti-hypertensive effect. However, its mechanism of relaxant effect has not been investigated yet. This study was examined to investigate the mechanism of vascular relaxation effect of CF in isolated rat thoracic aorta. CF revealed significant relaxation to phenylephrine(PE)-induced arterial contraction but much less to KCI-induced one. When CF was pretreated, it inhibited PE-induced contraction non-competitively. Methylene blue(10/sup -6/M) completely blocked the relaxant effect of CF whereas L-NAME(10/sup -5/M) did almost completely. However, atropine(10/sup -6/M) did not have any influence on vascular relaxation effect of CF. Regarding cNOS activity, CF significantly increased its activity from rat whole brain homogenate in a dose dependent manner which was inhibited by L-NAME(10/sup -5/M). On the other hand, CF did not affect on expression of TNF-α mRNA in RAW 264.7 cells, suggesting that CF is not related to iNOS activity. These results indicate that CF would be effective in relaxing vascular contraction through release of endothelial nitric oxide.

Anti-Angiogenic and Anti-Cell Adhesion Effect of the Camellia japonica Flower Extract (동백꽃 추출물의 신생혈관생성 및 세포부착 억제 효과)

  • Heo, In-Do;Seo, Hyo-Jin;Kim, Jong-Deog
    • Journal of Life Science
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    • v.17 no.8 s.88
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    • pp.1152-1156
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    • 2007
  • The Camella japonica flower(CJF) extract was studied for their anti-angiogenenic and anti-cell adhesion effect. CJF-extract inhibited the tube formation on human umbilical vein endotherial cells(HUVEC) with butanol extract by 70.2%, acetone extract by 54.2%, ethyl acetate extract by 37.0%, chloroform extract by 21.2%. Cell adhesion molecules were effectively suppressed at different concentration of CJF at 50, 100, 200 ug/well such as for intercellular adhesion molecule(ICAM) by 5.9%, 29.4% and 52.9%, for vascular cell adhesion molecule(VCAM) by 12.5%, 43.8% and 62.5%, for E-selectin by 7.1%, 21.4% and 35.7%, respectively. Signal molecules of vascular endotherial growth factor receptor 2(VEGFR2), ${/beta}$-catenin and PI3K are inhibited by different concentration of CJF at 10, 20 and 30 ${\mu}g/mL$ with western blot. Angiogenesis will be inhibited with suppressing NF-kB molecule resulted in signal molecules blocked by CJF. CJF will be useful materials for treatment of angiogenesis related diseases such as cancer, metastasis, rheumathioid arthritis and obesity.

Antioxidant Activity of Green Tea Extracts toward Human Low Density Lipoprotein (사람의 Low Density Lipoprotein에 대한 녹차의 항산화 활성)

  • Park, Chun-Ok;Jin, Seung-Heun;Ryu, Beung-Ho
    • Korean Journal of Food Science and Technology
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    • v.28 no.5
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    • pp.850-858
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    • 1996
  • Green tea leaves 12.5 g were extracted twice with 500 ml boiling water. The green tea extract (GTE) contained 4.67 mg solid. The GTE contained polyphenols sush as 54.12% (-) epicatechin gallate, 26.21% (-) epicatechin, 10.71% epicatechin gallate, 7.09% (-) epicatechin and 1.85% catechin. The GTE inhibited the copper-catalyzed oxidation of human LDL at the concentrations of 50 and $100\;{\mu}g/ml$ GTE in the presence of $5\;{\mu}M$ $CuSO_{4}$. The electrophoretic mobility of the LDL oxidized in the presence of $5\;{\mu}M\;CuSO_{4}$ was higher than that of the native LDL. The GTE also inhibited LDL oxidation induced by J774, human monocyte-derived macrophages and vascular endotherial cells. The LDL modified by copper or cells was inhibited by human macrophages at a much greater rate than native LDL in the presence of GTE. The GTE was found to be a potent inhibitor of modification of LDL. GTE inhibited the uptake of cell-modified $^(125)I-labelled$ LDL by macrophages. The formation of conjugated dienes was strongly inhibited in the presence of 50 or $100\;{\mu}g/ml$ GTE.

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ω3-Polyunsaturated Fatty Acids-induced Inhibition of Tumorigenicity and Invasion by Suppression of COX-2/MMPs/VEGF through NF-kB in Colon Cancer Cells (오메가-3 지방산에 의한 COX-2/MMPs/VEGF 억제에 따른 대장암세포의 종양 형성 및 침윤 억제)

  • Shin, Soyeon;Kim, Yong-Jo;Han, Seung-Hyeon;Silwal, Prashanta;Heo, Jun-Young;Jeon, Young-Joo;Park, Seung-Kiel;Kweon, Gi-Ryang;Park, Jong-Il;Lim, Kyu
    • Journal of Life Science
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    • v.27 no.9
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    • pp.1020-1030
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    • 2017
  • Epidemiology studies have reported a reduced incidence of colon cancer among populations that consume a large quantity of ${\omega}3-polyunsaturated$ fatty acids (${\omega}3-PUFAs$) of marine origin. Herein, we demonstrated a mechanism of anticancer action of ${\omega}3-PUFAs$, showing that they suppressed invasion and tumorigenicity in colon cancer cells. Docosahexaenoic acids (DHA) inhibited the cell growth of HT29 cells. This action likely involved apoptosis, given that the DHA treatment increased the cleaved form of PARP and sub G1 cells. Moreover, the invasiveness of HT29 cells was inhibited following DHA treatment, whereas arachidonic acid (AA) had no effect. The levels of Matrix-metalloproteinase-9 (MMP-9) and MMP-2 mRNA decreased after DHA pretreatment. DHA treatment inhibited MMP-9 and MMP-2 promoter activities and reduced VEGF promoter activity. DHA pretreatment also inhibited the activities of prostaglandin-2 (PGE2)-induced MMPs and the VEGF promoter. Cyclooxygenase-2 (COX-2) overexpression increased the activity of MMPs and that of the Vascular endotherial growth factor (VEGF) promoter in HT29 cells, and DHA inhibited NF-kB and COX-2 promoter reporter activities. As shown by in vivo experiments, when mouse colon cancer cells (MCA38) were implanted into Fat-1 and wild-type mice, both the tumoral size and volume were dramatically inhibited in Fat-1 transgenic mice. Furthermore, TUNEL-positive cells increased in tumors from Fat-1 mice compared with wild mice. In immunohistochemistry, the intensity of CD31 in Fat-1 tumors was weaker. These findings suggest that ${\omega}3-PUFAs$ may inhibit tumorigenicity and angiogenesis as well as cancer cell invasion by suppression of COX-2, MMPs and VEGF via the reduction of NF-kB in colon cancer.