• Title/Summary/Keyword: CPAE cell

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Evaluation of Estrogenic Activity of Extract from the Herbal Mixture Cynanchum wilfordii Hemsley, Phlomis umbrosa Turczaninow, and Angelica gigas Nakai

  • Kim, Se Jong;Jin, Sun Woo;Lee, Gi-Ho;Kim, Yong An;Jeong, Hye Gwang
    • Toxicological Research
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    • v.33 no.1
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    • pp.71-77
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    • 2017
  • Hormone replacement therapy (HRT) consists of highly effective prescription medications for treating menopausal symptoms; however, these agents have exhibited side effects including the risk of estrogen-induced carcinogenesis. Therefore, interest in phytotherapy-based materials as a natural source of alternatives to estrogen therapy has increased. However, some of these herbal medicines have been reported to increase the risk of estrogen-induced cancer. Herbal formulations composed of a combination of Cynanchum wilfordii Hemsley (CW), Phlomis umbrosa Turczaninow (PU), and Angelica gigas Nakai (AG) extracts (CPAE) have been used for treating menopausal symptoms. Therefore, in this study, we aimed to examine the safety of CPAE by determining its potential adverse estrogenic activity using the Organization for Economic Cooperation and Development (OECD) test guideline 455 (TG455) in a stably transfected transcriptionally activated human estrogen receptor ${\alpha}$ ($hER{\alpha}$)-HeLa9903 cell model. We found that CPAE did not how any estrogenic activity or stimulate promoters containing estrogen response elements in MCF-7 cells. In addition, CPAE showed no significant selective activity against $hER{\alpha}$ and $hER{\beta}$, non-selective activity against the ER, or effects on ER target gene expression. Furthermore, CPAE did not significantly induce MCF-7 cell proliferation and uterine weight increase in ovariectomized rats. These results demonstrate that CPAE can be used as beneficial herbal drug for prevention and therapeutic intervention of estrogen carcinogenesis in menopausal women.

Vibrio vulnificus Cytolysin Forms Anion-selective Pores on the CPAE Cells, a Pulmonary Endothelial Cell Line

  • Choi, Bok-Hee;Park, Byung-Hyun;Kwak, Yong-Geun
    • The Korean Journal of Physiology and Pharmacology
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    • v.8 no.5
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    • pp.259-264
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    • 2004
  • Cytolysin produced by Vibrio vulnificus has been incriminated as one of the important virulence determinants in V. vulnificus infection. Ion selectivity of cytolysin-induced pores was examined in a CPAE cell, a cell line of pulmonary endothelial cell, using inside-out patch clamp techniques. In symmetrical NaCl concentration (140 mM), intracellular or extracellular application of cytolysin formed ion-permeable pores with a single channel conductance of $37.5{\pm}4.0$ pS. The pore currents were consistently maintained after washout of cytolysin. Replacement of $Na^+$ in bath solution with monovalent ions $(K^+,\;Cs^+\;or\;TEA^+)$ or with divalent ions $(Mg^{2+},\;Ca^{2+})$ did not affect the pore currents. When the NaCl concentration in bath solution was lowered from 140 to 60 and 20 mM, the reversal potential shifted from 0 to -11.8 and -28.2 mV, respectively. The relative permeability of the cytolysin pores to anions measured at $-40\;mV\;was\;Cl^-\;=\;NO_2^-\;{\geq}\;Br^-\;=\;I^-\;> \;SCN^-\;>\;acetate^-\;>\;isethionate^-\;>\;ascorbic acid^-\;>\;EDTA^{2-},$ in descending order. The cytolysin-induced pore current was blocked by $CI^-$ channel blockers or nucleotides. These results indicate that V. vulnificus cytolysin forms anion-selective pores in CPAE cells.

Growth Rate study of CPAE Cells and Osteobalst by Local Hyperthermia Duplex Stainless Steel Thermo-rod (국소온열치료용 듀플렉스 스테인리스 스틸 발열체에 의한 혈관세포와 골세포의 온도에 따른 성장률 변화 관찰)

  • Choi, Sung-Min;Kim, Young-Kun
    • The Journal of the Korea Contents Association
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    • v.9 no.11
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    • pp.247-253
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    • 2009
  • We investigated the cell growth rate according to the change of temperature of the Thermo-rod used for the local hyperthermia therapy. For this study, we fabricated the Thermo-rods (TR) using Duplex Stainless Steels having magnetic properties as well as non magnetic properties. To evaluate cell growth rates up to 15 days, we conducted cell proliferation test using cell counting methods. For the tests, the CAPEs and Osteoblats were seeded on the 6-we11 plates with the induction heated thermo-rods 30 mins a day for 15 days with 2 days interval and without induction heated thermo-rods as control group respectively. We calculated cell growth rates, 6 hours after heating. From the results, in case of CAPEs and Osteobalsts seeded groups, the cell growth rates in all groups increased drastically for 6 days after seeding, but decreased irregularly after 6 days. In conclusion, the cell growth rates showed no significant difference among all groups and it indicated that there were no effects of temperate ($41^{\circ}C$) on cell growth rates.

Protective Effects of Kaempferol and Quercetin on Oxidative Stress in CPAE Cell (CPAE 세포를 이용한 Kaempferol과 Quercetin의 산화스트레스 극복효과)

  • Park, Shin-Young
    • Korean Journal of Plant Resources
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    • v.21 no.5
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    • pp.395-401
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    • 2008
  • Flavonoids are ubiquitous substances in fruits and vegetables. A main subgroup of the flavonoids are the flavonols, of which quercetin and kaempferol are the major representatives in foods. They are used in food supplements at high doses, because of their preventive effects on degenerative diseases. The aim of this study was to determine the combined and separate effects of kaempferol and quercetin on oxidative stress in cow pulmonary artery endothelium (CPAE) cells over a broad concentration range. The results demonstrate that cell viability was greatly increased in kaempferol and quercetin treated cells whether $H_{2}O_{2}$-treated or not. Cell viability also increased when treated with flavonols in the absence of oxidative stress. Both preincubation and simultaneous incubation with kaempferol and quercetin protected against the loss of cell viability induced by 1mM $H_{2}O_{2}(5h)$. Protective effects of flavonols against oxidative stress were shown to depend on the treated flavonol concentrations. No protective effect was shown under low concentration treatment and cell viability increased 1.6 times at $200{\mu}M$ relative to the control group. At the highest flavonol concentration of $300{\mu}M$, the increased cell viability by flavonol treatment was decreased to almost half of the maximum values. Combined treatments with kaempferol and quercetin showed more protective effects against oxidative stress by $H_{2}O_{2}$ than the separate effects of each flavonol. In conclusion, the protective effect of kaempferol and quercetin against oxidative stress was very pronounced but high concentrations of flavonols can also induce cell cytotoxicity.

The Analysis of the Physiologic Activities of the Jeju Teas according to the Fermentational Degree (제주산 차의 발효 정도에 따른 생리활성 기능에 관한 연구)

  • Park, Shin-Young;Lee, Sun-Joo
    • Korean Journal of Plant Resources
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    • v.24 no.2
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    • pp.236-242
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    • 2011
  • In this present study, we investigated the anti-oxidant activity, the inhibition ability of lipid peroxidation, and the protective effect of cow pulmonary epithelium (CPAE) cells under oxidative stress using green tea and 3 types of fermented teas of Jeju Island. To compare the physiological activity of non-fermented and 3 types of fermented teas, the fermented time was controlled with 0 hr. (non fermented tea, G), 12 hrs. (20% fermented tea, F20), 17 hrs. (50% fermented tea, F50) and 24 hrs. (80% fermented tea, F80), respectively. Scavenging ability on DPPH radicals of 80 ${\mu}g/mL$ concentration of F20 was similar to that of 50 ${\mu}M$ epigallocatechin gallate (EGCG) but it was stronger than those of G, F50 and F80. All extracts tested inhibited LDL oxidation but G and F20 inhibited LDL oxidation 25~30% more than F50 and F80 at 40 ${\mu}g/mL$ concentration which was similar to that of 50 ${\mu}M$ EGCG. We observed that the CPAE cells treated with the tea extracts had a significant increase in cell viability, especially the cells under oxidative stress with 1 mM $H_2O_2$ as compared with the control group (no treatment with tea extracts). These findings suggested that all tea extracts containing fermented tea had a protective effect on oxidative stressed CPAE cells through their free radical scavenging activity. It can be concluded that F20 extracted from 20% fermented tea has the most significant antioxidative effects that inhibit lipid peroxidation and protect the CPAE cells under oxidative stress.

Antidepressant Effects of Cynanchum wilfordii Hemsley, Phlomis umbrosa Turcz, and Angelica gigas Nakai via Inhibition of 5-HT6 Receptor-mediated cyclic AMP Activity

  • Oh, Kyo-nyeo;Oh, Dool-Ri;Jung, Myung-A;Kim, Yujin;Choi, Eun Jin;Hong, Ji Ae;Kim, Jaeyong;Choi, Chul-yung
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.32 no.4
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    • pp.247-254
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    • 2018
  • A This study evaluated the antidepressant effects of the herbal mixture CPAE(Cynanchum wilfordii Hemsley, Phlomis umbrosa Turcz, and Angelica gigas Nakai) using several tests, including a test for serotonin 6($5-HT_6$) receptor activity, the forced swimming test(FST), and tests for corticosterone(CORT) and monoamine levels. CPAE showed antagonistic effects on the $5-HT_6$ receptor in a stable $5-HT_6$ receptor-expressing cell line. We subsequently confirmed the antidepressant effects of CPAE in chronic stress model in mice and explored the underlying mechanisms of its action. Specifically, we observed that CPAE treatment significantly reduced immobility time in the FST and effectively restored abnormal levels of CORT in plasma and of monoamines(serotonin, dopamine, and norepinephrine) in hippocampus and prefrontal cortex. These results suggest that CPAE has significant antidepressant effects.

Inhibition of Angiogenesis by Propolis

  • Song, Yun-Seon;Park, Eun-Hee;Jung, Kyung-Ja;Jin, Changbae
    • Archives of Pharmacal Research
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    • v.25 no.4
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    • pp.500-504
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    • 2002
  • Propolis, obtained from honeybee hives, has been used in Oriental folk medicine as an anti-inflammatory, anti-carcinogenic, and immunomodulatory agent. There is considerable evidence suggesting that angiogenesis and chronic inflammation are codependent. Blockage of angiogenesis results in an anti-inflammatory effect. Ethanol (EEP) and ether extracts of propolis (REP), and caffeic acid phenethyl ester (CAPE), an active component of propolis, were examined for their anti-angiogenic activities using the chick embryo chorioallantoic membrane (CAM), and the calf pulmonary arterial endothelial (CPAE) cell proliferation, assays. The presence of EEP, REP and CAPE inhibited angiogenesis in the CAM assay and the proliferation of CPAE cells. The results suggest that anti-angiogenic activities of EEP, REP and CAPE are also responsible for their anti-inflammatory effect.

A Study on Changes of Cell Adhesive force and Distribution of F-actin and Vinculin under Various Intermittent Hydrostatic Pressure. (간헐적 정수압의 다양한 패턴에 따른 세포 부착력과 F-actin 및 vinculin 의 분포 변화 연구)

  • 김영직;박수아;신호준;김인애;이용재;허수진;황영미;신정욱
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.10a
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    • pp.1215-1220
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    • 2004
  • Cell adhesion to any material surface is considered to be fundamental and important phenomenon in the fields of tissue engineering. Cell adhesion molecules, mechanism, and attachment force have been studied and described a lot. However, the effects of mechanical stimuli on the adhesive forces still have been left much to be investigated. In this study, to investigate the changes in cell adhesive force due to resting time period during the intermittent hydrostatic pressurizing (IHP), cells were cultured under the IHP with various resting times. Then the cell adhesive forces were measured quantitatively utilizing a cell detachment test system and immunofluorescent staining was performed using fluorescent microscopy. In the results, immediately after mechanical stimuli (150 minutes after seeding) and one hour later (210 minutes after seeding), the average adhesive force of experimental group 5 (resting time: 15min) compared with that of control group at same culture time was increased significantly (p<0.05). The results indicated that IHP can contribute in improving cell adhesive force and some of time intervals were required for the expression of cell response.

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$H_2O_2$ Induces Apoptosis in Calf Pulmonary Artery Endothelial Cells (폐동맥내피 세포에서 $H_2O_2$에 의한 세포자사)

  • 김범식;정주호
    • Journal of Chest Surgery
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    • v.33 no.12
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    • pp.935-940
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    • 2000
  • 배경: 폐혈관 손상에 관한 기전은 여러 보고에도 불구하고 자세히 밝혀지지는 않았다. 최근 산화성 스트레스 질환에 관여하는 과산화 수소($H_2O$$_2$) 등의 활성 산소족(reactive oxygen species)은 세포손상과 세포자사(apoptosis)에 중요한 역할을 한다고 알려져 있다. 본 연구에서는 $H_2O$$_2$에 의하여 유발된 산화성 스트레스가, 폐혈관 손상 기전의 하나로 추측되고 있는 세포자사를 야기하는지를 연구하였다. 대상 및 방법: 소의 폐동맥에서 유래된 calf pupmonary artery endothelial cell line(CPAE)를 이용하였다. $H_2O$$_2$에 의한 세포 독성을 측정하기 위하여, 3-(4,5-dimethylthiazol-2yl)-2,5-diphenyltetrazolium bromide(MTT) assay를 시행하였다. $H_2O$$_2$에 의한 세포의 형태학적 변화는 도립 현미경으로 분석하였다. 세포자사를 확인하기 위하여 terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling(TUNEL) assay와 4,6-diamidino-2-phenylindole(DAPI) staining 방법 및 flow cytometry 분석를 시행하였다. 결과: $H_2O$$_2$에 의한 세포 생존율은, 대조군(100%)과 비교하여 3시간 실험군에서 10$\mu$M에서 약 70%, 50 $\mu$M에서 약 33%, 100 $\mu$M에서 약 26%, 500 $\mu$M에서 약 28%이였다. $H_2O$$_2$투여시 세포돌기 감소, 세포 축소, 세포질 응축과 불규칙한 형태 등의 세포자사에 나타나는 형태학적 변화를 나타내었다. TUNEL assay와 DAPI staining에서도 세포자사에 특징적으로 나타나는 핵응축과 핵분절 등의 소견을 나타내었다. Flow cytometry 분석 시에도 $H_2O$$_2$투여시 sub G$_1$분절의 증가와 G$_1$분절의 감소 등의 세포자사 양상이 확인되었다. 결론: 형태학적 분석과 생화학적 분석을 통하여, $H_2O$$_2$는 CPAE에서 세포자사를 야기함을 확인하였다. 이러한 결과는 폐혈관 손상의 기전에 $H_2O$$_2$에 의한 세포자사가 부분적으로 관여할 가능성을 제시한다.

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Interaction of Different Types of Cells on Poly(L-lactide-co-glycolide) Surface with Wettability Chemogradient

  • Gilson Khang;John M. Rhee;Lee, Jin-Ho;Lee, Ilwoo;Lee, Hai-Bang
    • Macromolecular Research
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    • v.8 no.6
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    • pp.276-284
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    • 2000
  • A wettability chemogradient on poly(L-lactide-co-glycolide) (PLGA) films was prepared by treating the films in air with corona from a knife-type electrode whose power increases gradually along the sample length. The PLGA surfaces oxidized gradually with the increasing corona power, and the wettability chemogradient was created on the surfaces as evidenced by the measurement of water contact angles and electron spectroscopy for chemical analysis. The wettability chemogradient PLGA surfaces were used to investigate the interaction of four different types of cells such as hepatoma (Hep G2), osteoblast (MG 63), bovine aortic endothelial (CPAE), and fibroblast (NIH/3T3) cells in terms of the surface hydrophilicity/hydrophobicity of PLGA. The cells adhered and grown on the chemogradient surface along the sample length were counted and observed by scanning electron microscopy. It was observed that the cells were adhered, spread, and grown more onto the positions with moderate hydrophilicity of the wettability chemogradient PLGA surface than the more hydrophobic or hydrophillic positions, regardless of the cell types used. The maximum adhesion and growth of the cells appeared at around water contact angles of 53~55°. This result seems closely related with the serum protein adsorption on the surface; the serum proteins were also adsorbed more onto the positions with moderate hydrophilicity of the wettability chemogradient surface. It seems that the wettability plays important roles for cell adhesion, spreading and growth on the PLGA surface. The surface modification technique used in this study may be applicable tothe area of tissue engineering for the improvement of tissue compatibility of films- or scaffold-type substrates.

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