• Title/Summary/Keyword: platelet aggregation inhibitory activity

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Inhibitory Effect of Scopoletin on U46619-induced Platelet Aggregation through Regulation of Ca2+ Mobilization

  • Lee, Dong-Ha
    • Biomedical Science Letters
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    • v.25 no.2
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    • pp.123-130
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    • 2019
  • Platelet aggregation is essential for hemostatic process in case of blood vessels damages. However, excessive platelet aggregation can cause cardiovascular disorders including atherosclerosis, thrombosis and myocardial infarction. Scopoletin is usually found in the roots of genus Scopolia or Artemisia, and is known to have anticoagulant and anti-malarial effects. This study investigated the effect of scopoletin on human platelet aggregation induced by U46619, an analogue of thromboxane $A_2(TXA_2)$. Scopoletin had anti-platelet effects by down-regulating $TXA_2$ and intracellular $Ca^{2+}$ mobilization ($[Ca^{2+}]_i$), the aggregation-inducing molecules generated in activated platelets. On the other hand, scopoletin increased the levels of cyclic adenosine monophosphate (cAMP) and cyclic guanosine monophosphate (cGMP), which are known to be intracellular $Ca^{2+}$ antagonists. This resulted in inhibition of fibrinogen binding to ${\alpha}IIb/{\beta}_3$ in U46619-induced human platelet aggregation. In addition, scopoletin inhibited the release of adenosine trisphosphate (ATP) in dose-dependent manner. This result means that the aggregation amplification activity through the granule secretion in platelets was suppressed by scopoletin. Therefore, we demonstrated that scopoletin has a potent antiplatelet effect and is highly likely to prevent platelet-derived vascular disease.

Biological Functions of Organosulfur Compounds in Allium Vegetables (Allium속 식물 유래 함유황 유기화합물의 생리적 유용성)

  • 전향숙;김현정
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.28 no.6
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    • pp.1412-1423
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    • 1999
  • This review contains a discussion of the physiological activity of the components of Allium vegetables. Organosulfur compounds in Allium vegetables, such as ajoene, diallyl sulfides and S allylcysteine, have cancer preventive activity in chemically induced animal cancer models. They also have inhibitory effects on proliferation of cancer cells in vitro. Allium vegetables have lipid and cholesterol lowering effect, and platelet aggregation inhibitory activity that help the prevention of cardiovascular diseases. Sulfur con taining compounds, especially allicin and ajoene, have antimicrobial activities against gram negative, positive bacteria and fungi. Moreover, Allium organosulfur compounds such as S allylcysteine showed reducing effects on the senescence related symptoms including cognition. Allium organosulfur compounds have significant importance in food industry as both biologically active ingredients and savory.

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Detection of Platelet Aggregation Inhibitors and Fibrinolytic Substances from Mushrooms (버섯류로부터 혈소판 응집억제물질과 혈전용해물질의 탐색)

  • Park, Jeong-Sik;Hyun, Kwang-Wook;Seo, Seung-Bo;Cho, Soo-Muk;Yoo, Chang-Hyun;Lee, Jong-Soo
    • The Korean Journal of Mycology
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    • v.31 no.2
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    • pp.114-116
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    • 2003
  • Platelet aggregation inhibitory and fibrinolytic activities of water and ethanol extracts from mushrooms were studied. The highest platelet aggregation inhibitory activity was 81.2% in the ethanol extract from fruiting body of Inonotus obliquus ASI 74006 and also were high in the ethanol extract from fruiting bodies of Fomitella fraxinea. The ethanol extract from the mycelia of Agaricus blazei Murill. ASI 1174 showed the strongest fibrinolytic activity as 9.6 unit. However fibrinolytic activities of other mushrooms were low or negligible.

Antithrombotic and Antiallergic Activities of Rhaponticin from Rhei Rhizoma Are Activated by Human Intestinal Bacteria

  • Park, Eun-Kyung;Choo, Min-Kyung;Yoon, Hae-Kyung;Kim, Dong-Hyun
    • Archives of Pharmacal Research
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    • v.25 no.4
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    • pp.528-533
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    • 2002
  • To evaluate the antithrombotic and antiallergic properties of rhaponticin extracted from Rhei Rhizoma, the in vitro and ex vivo inhibitory activities of rhaponticin and its metabolite, rhapontigenin, were measured. These compounds inhibited in vitro ADP- and collagen-induced platelet aggregation. Rhapontigenin was more potent, with $IC_{50}$ values of 4 and $70{\;}{\mu}g/ml$, respectively. In ex vivo ADP- and collagen-induced rat platelet aggregation, these compounds also exhibited a potent inhibitory effect. The antiplatelet aggregation effects of rhaponticin and rhapontigenin were more potent than those of aspirin. Rhapontigenin showed significant protection from death due to pulmonary thrombosis in mice. Rhapontigenin also showed the strongest inhibitory activity against $\beta-hexosaminidase$ release induced by DNP-BSA. These compounds inhibited PCA reaction in mice. Rhapontigenin intraperitoneally administered showed the strongest inhibitory activity and significantly inhibited PCA at doses of 25 and 50 mg/kg, with inhibitory activities of 48 and 85%, respectively. The inhibitory activity of orally administered rhaponticin was stronger than that of intraperitoneally administered rhaponticin. These results suggest that rhaponticin, in the rhizome of Rhei Rhizoma, is a prodrug that has extensive antiallergic and antithrombotic properties.

Inhibitory Effects of Silsosangami on the Platelet Aggregation

  • Kim Jong Soo;Kim Beob Jin;Kim Han Geu;Ahan Jong Chan;Lee Soo Kyung;Chung Tae Wook;Choi Dall Yeong;Kim Cheri Ho;Park Won Hwan
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.16 no.4
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    • pp.823-829
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    • 2002
  • The thrombosis importantly came to the front as the risk factor of these circulation system's disease. SilsoSanGami(SSG) was used for investigating the inhibitory effect on platelet-activating factor-induced platelet aggregation about drugs that used to improvement various symptoms created by the thrombosis in oriental medicine. In this study, the water-extracted SSG was investigated for its possible antithrombotic action on platelets. The antithrombotic activity of water-extracted SSG was deduced from its ability to suppress platelet aggregation, ATP-exocytosis, and the generation of prostaglandin E₂ and thromboxane A₂ by human platelets, stimulated with arachidonic acid. Water-extracted SSG dose-dependently suppressed the aggregation of human platelets, the release of endogenous ATP, and the formation of PGE₂ and TXB₂, both the latter usually detected to estimate the activity of COX and TXS, respectively. Since the IC/sub 50/ values necessary to inhibit COX (115 ㎍/㎖ SSG) and TXS(74 ㎍/㎖ SSG) were in the same range, inhibition of COX is suggested to be the primary target of water-extracted SSG, thus suppressing the formation of PGE₂ which is metabolized by TXS to TXA₂. We considerated that SSG has practical applicational value of clinical trial in the thrombosis caused by platelet aggregation.

Antiplatelet Action of Ilexoside D, a Triterpenoid Saponin from Ilex pubescens

  • Lee, Dug-Keun;Lee, Hye-Sun;Huh, Min-Do;Lee, Chul-Hoon;Lee, Young-Su;Kim, Hyun-Su;Han, Yong-Nam
    • Archives of Pharmacal Research
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    • v.14 no.4
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    • pp.352-356
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    • 1991
  • The anti-platelet activity of ilexoside D isolated from the roots of Ilex pubescens Hook. et Arn. was investigated in in vitro and ex vivo models of platelet aggregation induced by ADP, thrombin or collagen in rats. In vitro ilexoside D inhibited more effectively platelet aggregation induced by ADP and thrombin than by collagen as compared with aspirin. Ex vivo ilexoside D also inhibited platelet aggregation induced by ADP and collagen, but not by thrombin, and the inhibitory action of ilexoside D was more effective than that of aspirin. However, in vitro ilexoside D inhibited very poorly the generation of malonyldialdehyde, which is known to be concomitantly released with thromboxane $A_2$ during platelet aggregation. These results suggest that the anti-platelet activity of ilexoside D may not be responsible for prostaglandin synthesis in platelets.

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Ginsenoside F4 inhibits platelet aggregation and thrombus formation by dephosphorylation of IP3RI and VASP

  • Shin, Jung-Hae;Kwon, Hyuk-Woo;Lee, Dong-Ha
    • Journal of Applied Biological Chemistry
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    • v.62 no.1
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    • pp.93-100
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    • 2019
  • The root of Panax ginseng is used in ethnomedicine throughout eastern Asia and various recent studies have proved that Panax ginseng has inhibitory effects on cardiovascular disease. Each factor causing cardiovascular disease is known to have a very complex process which is achieved by a diverse number of mechanisms. Among these factors, platelets are the most important because they directly participate in thrombogenesis. Therefore, inhibiting the activity of platelets is an essential element for prevention of cardiovascular diseases. Our previous study showed the antiplatelet effects of Korean red ginseng extract and two of its components, ginsenoside Rg3 and ginsenoside Ro. However, the inhibitory mechanism of other ginsenosides remains unclear. Therefore, we investigated the inhibitory mechanism of ginsenoside F4 (G-F4) from Korean red ginseng on the regulation of signaling molecules involved in human platelet aggregation. With the use of G-F4, collagen-induced human platelet aggregation was inhibited in a dose-dependent manner, and it suppressed collagen-induced elevation of $[Ca^{2+}]_i$ mobilization through elevated phosphorylation of inositol 1, 4, 5-triphosphate receptor I ($Ser^{1756}$). In addition, G-F4 inhibited fibrinogen binding to ${\alpha}IIb/{\beta}_3$ during collagen-induced human platelet aggregation. Thus, in the present study, G-F4 showed an inhibitory effect on human platelet activation, suggesting its potential use as a new natural medicine for preventing platelet-mediated cardiovascular diseases.

Inhibitory Effects of Esculetin Through the Down-Regulation of PI3K/MAPK Pathway on Collagen-Induced Platelets Aggregation (Esculetin이 PI3K/MAPK 경로 하향 조절을 통해 collagen 유도의 혈소판 응집 억제에 미치는 효과)

  • Park, Chang-Eun;Lee, Dong-Ha
    • Korean Journal of Pharmacognosy
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    • v.52 no.3
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    • pp.127-133
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    • 2021
  • Platelet activation plays a major role in cardiovascular disorders (CVDs). Thus, disrupting platelet activation represents an attractive therapeutic target on CVDs. Esculetin, a bioactive 6,7-dihydroxy derivative of coumarin, possesses pharmacological activities against obesity, diabetes, renal failure, and CVDs. In other report, the effect of esculetin has been examined in human platelet activation and experimental mouse models, and esculetin inhibited collagen- and arachidonic acid-induced platelet aggregation in washed human platelets. However, it had no effects on other agonists such as thrombin and U46619, and its mechanism is not also clearly known. This study investigated the effect of esculetin on collagen-induced human platelet aggregation, and we clarified the mechanism. Esuletin has effects on the down regulation of PI3K/Akt and MAPK, phosphoproteins that act in the signaling process in platelet aggregation. The effects of esculetin reduced of TXA2 production and phospholipase A2 activation, and intracellular granule secretion including ATP and serotonin, leading to inhibit platelet aggregation. These results clearly clarified the effect of esculetin in inhibiting platelet activity and thrombus formation in humans.

Production of a Platelet Aggregation Inhibitor, Salmosin, by High Cell Density Fermentation of Recombinant Escherichia coli

  • Seo, Myung-Ji;Choi, Hak-Jong;Chung, Kwang-Hoe;Pyun, Yu-Ryang
    • Journal of Microbiology and Biotechnology
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    • v.21 no.10
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    • pp.1053-1056
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    • 2011
  • Optimal conditions for a high cell density fermentation were investigated in a recombinant Escherichia coli producing salmosin, a platelet aggregation inhibitor. The optimized carbon and nitrogen sources were glycerol 10 g/l, yeast extract 30 g/l, and bacto-tryptone 10 g/l, yielding the dry cell weight (DCW) of 10.61 g/l in a 500 ml flask culture. The late-stage induction with 1% L-arabinose in a 5 l jar fermentor showed the highest DCW of 65.70 g/l after 27 h of the fed-batch fermentation. Around 2,200 mg/l of the protein was expressed as an inclusion body that was then refolded to obtain the active salmosin of 96 mg/l. We also confirmed the inhibitory activity against platelet aggregation of the active salmosin from the high cell density fermentation.

Inhibitory effects of artemether on collagen-induced platelet aggregation via regulation of phosphoprotein inducing PI3K/Akt and MAPK

  • Lee, Dong-Ha
    • Journal of Applied Biological Chemistry
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    • v.65 no.3
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    • pp.167-172
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    • 2022
  • Pathophysiological reaction of platelets in the blood vessel is an indispensable part of thrombosis and cardiovascular disease, which is the most common cause of death in the world. In this study, we performed in vitro assays to evaluate antiplatelet activity of artemether in human platelets and attempted to identify the mechanism responsible for protein phosphorylation. Artemether is a derivative of artemisinin, known as an active ingredient of Artemisia annua, which has been reported to be effective in treating malaria, and is known to function through antioxidant and metabolic enzyme inhibition. However, the role of artemether in platelet activation and aggregation and the mechanism of action of artemether in collagen-induced human platelets are not known until now. In this study, the effect of artesunate on collagen-induced human platelet aggregation was confirmed and the mechanism of action of artemether was clarified. Artemether inhibited the phosphorylation of PI3K/Akt and Mitogen-activated protein kinases, which are phosphoproteins that are known to act in the signal transduction process when platelets are activated. In addition, artemether decreased TXA2 production and decreased granule secretion in platelets such as ATP and serotonin release. As a result, artemether strongly inhibited platelet aggregation induced by collagen, a strong aggregation inducer secreted from vascular endothelial cells, with an IC50 of 157.92 μM. These results suggest that artemether has value as an effective antithrombotic agent for inhibiting the activation and aggregation of human platelets through vascular injury.