• Title/Summary/Keyword: Thromboxane

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Vasodilatory Effect of the Alkaloid Component from the Roots of Cynanchum wifordi Hemsley (백하수오 알칼로이드 성분의 혈관이안 효능)

  • 장기철;이동웅
    • Journal of Life Science
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    • v.10 no.6
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    • pp.584-590
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    • 2000
  • Natural products are one of the useful source of cardiovascular drugs, in particular, when they have antioxidant activity. Gagaminine, an alkaloid isolated from the roots of Cynanchum wilfordi Hemsley, has been reported to potently inhibit the aldehyde oxidase activity ({TEX}$IC_{50}${/TEX}=0.8$\mu$M) and reduce lipid peroxidation. However, the effect of gagaminine on vascular smooth muscle has not yet been investigated. In the present study, we examined whether gagaminine relaxes vascular smooth muscle by isometric tension study. In order to observe its relaxation effect on the arteries, conductivel vessel (rat thoracic aorta) and resistance vessel (pig coronary artery) were purposely used. Results indicated that gagaminine relaxed in a concentration-dependent manner $\alpha$-adrenoceptor agonist, phenylephrine (PE)-induced contraction of rat aorta. Pretreatment with gagaminine inhibited PE-induced contraction, noncompetitively. {TEX}$Ca^{2+}${/TEX}-induced contraction was significantly diminished by gagaminine. In pig coronary artery, gagaminine relaxed thromboxane receptor (U 46619)-mediated contraction in dose-dependent manner. Pretreatment with gagaminine also reduced the maximum contraction induced by KCl. These observations strongly suggest that agagminnine relaxes vascular smooth muscle, irrespective of both resistance and conductive artery. We demonstrate that gagaminine, a potent natural antioxidant, has a significant vasodilatory effect and its action mechanism van be ascribed at least in part to {TEX}$Ca^{2+}${/TEX} antagonistic action as evidenced by inhibition {TEX}$Ca^{2+}${/TEX}-induced contraction (rat aorta) and KCl-induced contraction (porcine artery). Furthermore, neither $\alpha$ -adrenoceptor nor thromboxane receptor seems responsible for the relaxation of gagaminine.

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Pharmacological Actions of Crinum folium (나군대 잎의 약리 효과에 관한 연구)

  • Lee, Song-Deuk;Lee, Sang-Hun;Choi, Su-Wan;Kwon, Won-Jun;Kim, Il-Hyuk
    • Korean Journal of Pharmacognosy
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    • v.26 no.2
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    • pp.139-147
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    • 1995
  • Crinum asiaticum var. japonicum is a wild plant growing only in Jeju-island, Korea, and in Japan. The whole part of this plant has been known to have the pharmacological actions such as analgesic, anti-inflammatory, platelet-aggregation inhibitory, antitussive, and expectorant. With these assumed actions, the leaves (Crinum folium) of this plant has been used in the folk remedies for arthritis and arthralgia. There is, however, no scientific evidences for the pharmacological actions of Crinum asiaticum var. japonicum. In the present study, the analgesic, anti-inflammatory, and platelet-aggregation inhibitory actions of Crinium folium were evaluated using writhing test, tail-flick test, carrageenin antiedema test, in vitro thromboxane $B_2$ quantitation assay and in vitro platelet aggregation test. In order to obtain the partially purified fraction whose pharmacological action is excellent, the methanol extract of Crinium folium was fractionated consecutively into four biological fractions such as ether, ethyl acetate, butanol, and water fractions and their pharmacological actions of the fractions were investigated. Putting our results together, Crinium folium, especially ethyl acetate fraction was proven to have significant analgesic, anti-inflammatory and platelet-aggregation inhibitory actions by inhibition of prostanoids biosynthesis as one of its mechanism of action.

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Anti-platelet Effect of Black Tea Extract via Inhibition of TXA2 in Rat

  • Ro, Ju-Ye;Cho, Hyun-Jeong
    • Biomedical Science Letters
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    • v.25 no.4
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    • pp.302-312
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    • 2019
  • The aim of this work was to investigate the effect of black tea extract (BTE) on collagen -induced platelet aggregation. In this study, BTE (10~500 ㎍/mL) was shown to inhibit platelet aggregation via thromboxane A2 (TXA2) down-regulation by blocking cyclooxygenase-1 (COX-1) activity. Also, BTE decreased intracellular Ca2+ mobilization ([Ca2+]i). Additionally, BTE enhanced the levels of both cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP), which are aggregation-inhibiting molecules. BTE inhibited the phosphorylation of phospholipase C (PLC) γ2 and syk activated by collagen. BTE regulated platelet aggregation via cAMP-dependent phosphorylation of vasodilator-stimulated phosphoprotein (VASP) Ser157. The anti-platelet effects of BTE in high fat diet (HFD)-induced obese rats were evaluated. After eight weeks of BTE treatment (300 and 600 mg/kg), the platelet aggregation rate in the treated groups was significantly less than that in the HFD-fed control group. Also, BTE exhibited a hepatoprotective effect and did not exert hepatotoxicity. Therefore, these data suggest that BTE has anti-platelet effects on collagen-stimulated platelet aggregation and may have therapeutic potential for the prevention of platelet-mediated thrombotic diseases.

Inhibition of collagen-induced platelet aggregation by Sanggenon N via the Ca2+ signaling pathway

  • Hyuk-Woo Kwon
    • Journal of Applied Biological Chemistry
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    • v.65 no.4
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    • pp.463-469
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    • 2022
  • Cudrania tricuspidata (C. tricuspidata), a medicinal plant widely employed throughout Asia in ethnomedicine, has various bioactive properties, including antidiabetic, antiobesity, antitumor, and anti-inflammatory activities. In addition, the C. tricuspidata root extract reportedly inhibits platelet aggregation. Therefore, we focused on the active substances present in the C. tricuspidata extract. Sanggenon N (SN) is a flavonoid found in the root bark of C. tricuspidata. In the present study, we examined the inhibitory effects of SN on platelet aggregation, phosphoproteins, thromboxane A2 generation, and integrin αIIbβ3 activity. SN inhibited collagen-induced human platelet aggregation in a dose-dependent manner without cytotoxicity. Furthermore, SN suppressed Ca2+ mobilization and influx through associated signaling molecules, such as inositol 1, 4, 5-triphosphate receptor I (Ser1756), and extracellular signal-regulated kinase. In addition, SN inhibited thromboxane A2 generation and associated signaling molecules, including cytosolic phospholipase A2 and mitogen-activated protein kinase p38. Finally, SN could inhibit integrin (αIIb/β3) activity by regulating vasodilator-stimulated phosphoprotein and Akt. Collectively, SN possesses potent antiplatelet effects and is a potential therapeutic drug candidate to prevent platelet-related thrombosis and cardiovascular disease.

The Inhibitory Effects of Glycyrrhiza uralensis on human Platelet Aggregation and Thrombus Formation

  • Seung Na Ko;Ji Won Son;Gyu Ri Kim;Min Seon Kim;Yea Jin Lee;Seung Ju Kim;Ji Hyeon Shin;Da In Jo;Woo Young Bok;Hye Gyo Oh;Hyuk-Woo Kwon
    • Biomedical Science Letters
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    • v.29 no.4
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    • pp.242-248
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    • 2023
  • Platelets are activated at the sites of vascular injury by a number of molecules, including adenosine diphosphate, collagen and thrombin. The full platelet aggregation is absolutely essential for the normal hemostasis. Glycyrrhiza glabra is a well-known medicinal herb that grows in various parts of the world and is known to have various effects such as antioxidant, anti-inflammatory, anti-atherogenic, anti-osteoporotic and skin-whitening. However, the platelet inhibitory effect of Glycyrrhiza glabra extract (GGE) has not been identified. In this study, we investigated if GGE inhibited platelet aggregation. We observed that GGE inhibited collagen-induced platelet aggregation, Ca2+ mobilization, and thromboxane A2 generation. In addition, GGE suppressed phosphorylation of phosphatidylinositol-3 kinase (PI3K), Akt and elevated phosphorylation of inositol 1,4,5-trisphosphate receptor (IP3R), vasodilator stimulated phosphoprotein (VASP). Taken together, GGE showed strong antiplatelet effects and may be used to block platelet-mediated cardiovascular diseases.

Inhibitory Effects of Scopoletin in Collagen-induced Human Platelet Aggregation (콜라겐으로 유도한 사람 혈소판 응집에 미치는 Scopoletin의 억제 효과)

  • Kwon, Hyuk-Woo;Shin, Jung-Hae;Park, Chang-Eun;Lee, Dong-Ha
    • Korean Journal of Clinical Laboratory Science
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    • v.51 no.1
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    • pp.34-41
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    • 2019
  • Platelet aggregation is essential for the formation of a hemostatic plug in the case of blood vessel damage. On the other hand, excessive platelet aggregation may cause cardiovascular disorders, such as thrombosis, atherosclerosis, and myocardial infarction. Scopoletin, which found in the root of plants in the genus Scopolia or Artemisia, has anti-coagulation and anti-malaria effects. This study examined the effects of scopoletin on human platelet aggregation induced by collagen. Scopoletin had anti-platelet effects via the down-regulation of thromboxane $A_2$ ($TXA_2$) production and intracellular $Ca^{2+}$ mobilization ($[Ca^{2+}]_i$), which are aggregation-inducing molecules produced in activated platelets. On the other hand, scopoletin increased both the cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP) levels, which are known as intracellular $Ca^{2+}$-antagonists and aggregation-inhibiting molecules. In particular, scopoletin increased the potently cAMP level more than cGMP, which led to suppressed fibrinogen binding to ${\alpha}IIb/{\beta}_3$ in collagen-induced human platelet aggregation. In addition, scopoletin inhibited collagen-elevated adenosine triphosphate (ATP) release in a dose-dependent manner. The results suggest that aggregation amplification through granule secretion is inhibited by scopoletin. Therefore, scopoletin has potent anti-platelet effects and may have potential for the prevention of platelet-derived vascular diseases.

Evaluation of cyclooxygenase (COX) inhibition in rosemary extract (로즈마리 추출물의 cyclooxygenase (COX) 효소 및 유전자 발현에 미치는 영향)

  • Sehee Lee;Soo-yeon Park;Kyeong Jin Kim;Sonwoo Kim;Yanghoon P. Jung;Ji Yeon Kim
    • Journal of Applied Biological Chemistry
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    • v.66
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    • pp.114-121
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    • 2023
  • Selective cyclooxygenase (COX)-2 inhibition is a novel strategy to reduce the risk of gastrointestinal side effects caused by conventional nonsteroidal anti-inflammatory drugs. However, some selective COX-2 inhibitors have become apparent to increase the risk of severe cardiovascular disease. The aim of this study was to examine the anti-inflammatory effect of rosemary extract (RE) and confirm the safety of cardiovascular side effects. Inhibition of COX enzyme activity was assessed, and the levels of COX-2 and prostaglandin E2 (PGE2) and COX-1 and thromboxane B2 (TXB2) were evaluated in lipopolysaccharide (LPS)-induced RAW 264.7 cells. The 40% RE group showed increased COX-2 inhibition activity in a dose-dependent manner, whereas the 50% RE group only exhibited at 100 ㎍/mL. In a cell-based study, COX-2 mRNA expression was similar in both RE groups and PGE2 levels tended to decrease in the 40% RE group compared to the LPS group in the LPS pretreatment condition. In the LPS posttreatment condition, the COX-2 mRNA expression decreased in the 40% RE group, and PGE2 levels were increased in the 40 and 50% RE groups. In both conditions, there was no significant difference in COX-1 and TXB2 levels. In conclusion, 40 and 50% RE showed significant COX-2 inhibition, similar to the positive control group. It was confirmed that the inhibition of the COX-2 expression, but the effect did not affect the balance between prostacyclin and TXB2. These results indicate that rosemary showed COX-2 inhibition activity with a low risk of cardiovascular diseases.

Batch Chromatography Simulation of Tröger base by Aspen Chromatography (Aspen Chromatography에 의한 Tröger base의 회분식 크로마토그라피 전산모사)

  • Kim, Jung-Ae;Park, Moon-Bae;Kim, In Ho
    • Korean Chemical Engineering Research
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    • v.47 no.5
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    • pp.615-619
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    • 2009
  • (+)-$Tr{\ddot{o}}ger$'s base in $Tr{\ddot{o}}ger$'s base racemates that inhibits thromboxane A2($T{\times}A2$) synthase has been used to treat arteriosclerosis. Separation of (+)-$Tr{\ddot{o}}ger$'s base by chromatography has become a major concern. However separation experiments of (+)-$Tr{\ddot{o}}ger$'s base need time and consumables so that simulation with Aspen Chromatography could save time and costs by predicting the efficiency of separation. Injection amount and eluent flow rate were varied to compare the resolutions and yields of TB(-) and TB(+). Highest resolution and yield were attained at the eluent rate of 0.25 mL/min. Isotherms representing the relationship between mobile phase concentration and stationary phase concentration were changed to get the best separation with Ideal Adsorbed Solution(IAS) Statistical Lanmuir isotherms.

Effect of Ethanol on Prostaglandins Production of Monocytes (에탄올이 단핵구의 Prostaglandins 생산에 미치는 영향)

  • 박란숙
    • Journal of Nutrition and Health
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    • v.24 no.2
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    • pp.97-103
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    • 1991
  • The increase in alcohol consumption level has been noticed in Korea recently. Alcohol appreciably inhibits cell mediated immunity and this may contribute to the high prevalence of serious infection such as pulmonary tuberculosis among alcoholic subjects. The present study was undertaken to examine the effect of ethanol on the cyclooxygenase metabolites of human monocyte in vitro. Monocytes were activated with 800 units of gamma interferon(IFN-${\gamma}$) for 3 days following apply of Ficool-hypaque density gradient and gelatin coated flasks for separation of monocytes. Ethanol with addition of 100mM, 300mM and 600 mM for 30 minutes to 106 monocytes with/without previous IFN-${\gamma}$ treatment caused a dose dependent decrease in the production of thromboxane B2, 6-keto-PGE1$\alpha$ and PGE2 by radioimmunoassay at 6 hours after ethanol treatment. Quite different from the findings after 6 hours there was dose dependent increase in three prostaglandins without IFN-${\gamma}$ treatment after 24 hours of incubation. With previous treatment of IFN-${\gamma}$ reduced productions of three prostaglandins at 24 hours than control is spite of ethanol stimjulation. These findings show that IFN-${\gamma}$ can inhibit alcohol induced derangement of arachidonic acid metabolism of monocytes.

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