• Title/Summary/Keyword: Prostaglandin $E_2$

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Inhibitory Activity of 8-Aminowogonin Analogues Against Prostaglandin $E_2$ Production (8-아미노우고닌 유도체의 Prostaglandin $E_2$ 생성에 대한 저해작용)

  • Jang, Jin-Hee;Sin, Kwan-Seog;Kim, Hyun-Pyo;Park, Hae-Il
    • YAKHAK HOEJI
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    • v.52 no.1
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    • pp.85-91
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    • 2008
  • 8-Acyl and 8-sulfonylamidowogonin analogues were synthesized as potential anti-inflammatory agents. Nitration of 5,7-dihydroxyflavone (chrysin) followed by methylation of phenol groups and reduction of nitro group yielded 8-aminowogonin analogues. Acylation and sufonylation of 8-aminowogonin followed by demethylation reactions gave the title compunds. The synthesized wogonin analogues showed much reduced inhibitory activity on prostaglandin $E_2\;(PGE_2)$ production.

Effect of high glucose on the prostaglandin $E_2$ production in human gingival fibroblasts and periodontal ligament cells (고농도의 포도당이 치은섬유아세포 및 치주인대세포의 Prostaglandin $E_2$ 생성에 미치는 영향)

  • Chung, Jong-Hyuk;Kwon, Young-Hyuk;Lee, Man-Sup;Park, Joon-Bong;Herr, Yeek;Kim, Sung-Jin
    • Journal of Periodontal and Implant Science
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    • v.27 no.4
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    • pp.909-922
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    • 1997
  • The purpose of this study was to evaluate the effect of high glucose on prostaglandin E2 production in human gingival fibroblasts and periodontal ligament cells in vitro. In control group, the cells($5{\times}10^4\;cells/ml$) were cultured with Dulbecco's Modified Eagle's Medium contained with 10% fetal bovine serum, 45mg/dl glucose. In experimental groups, glucose was added to the above culture condition at the final glucose concentrations of 100mg/dl(Test group 1), 200mg/dl (Test group 2) and 400mg/dl (Test group 3). Then each group was tested for the cell proliferation rate, protein levels, and prostaglandin E2 production at $\frac{1}{2}$, 1, 2, 5 days. The results were as follows : 1. As glucose concentration increased, cell proliferation rate decreased significantly at 1, 2, 5 days in human gingival fibroblasts and periodontal ligament cells(P<0.01). 2. In human gingival fibroblasts, test group 2 and 3 showed significantly decreased protein levels as compared to control group at 5 days (P<0.01). 3. In human periodontal ligament cells, as glucose concentration increased, protein levels decreased significantly at 2 days and 5 days(P<0.01). 4. Prostaglandin $E_2$ production in human gingival fibroblasts and human periodontal ligament cells significantly increased as glucose concentration increased(P<0.01). results at 5 days showed obvious difference as compared to those at 2 days. From the above results, high glucose appeared to affect cellular activities including cell proliferation rate, protein levels and enhance prostaglandin $E_2$ production. It was assumed that prostaglandin E2 production by high glucose enhances inflammatory reaction and has a toxic effect on human gingival fibroblasts and human periodontal ligament cells. This study suggests that periodontal disease in diabetic patient is related to prostaglandin $E_2$ production.

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EVALUATION AS A BIOASSAY PREPARATION OF TORTOISE INTESTINE FOR PROSTAGLANDIN $E_1$

  • Hong, Ki-W.
    • The Korean Journal of Pharmacology
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    • v.11 no.2
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    • pp.41-46
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    • 1975
  • The isolated strips of tortoise intestine are evaluated as a test organ for bioassay of prostaglandin $E_1$. This preparation responded highly sensitively to $PGE_1$ and $PGE_2$ in picogram concentration range. The mean slope and the value of precision index among the doses of 0.1, 0.3 and 0.5ng/ml in final concentration were 37.7 and 0.143, respectively. And this was relatively insensitive to different prostaglandins; $E_1/E_2{\gtrsim}1$, $E_1/A_2{\sim}50$ and $E_1/F_{2\alpha}{\sim}100$, and showed the dual responses to 5-hydroxytryptamine and histamine; initial contraction followed by relaxation. The dose-ratio inducing the relative equal contraction height for $PGE_1$, acetylcholine, caerulein, angiotensin and barium chloride was 0.4 : 50 : 25 : 10 : 100 in this order. These results suggest that the intestinal strips of the tortoise are suitable for bioassay of prostaglandin $E_1$ and $E_2$ between the doses of 0.1 and 1.0 ng/ml level in the tissue extracts.

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Lipopolysaccharide and Prostaglandin $E_2$ regulates the gene expression of IL-1$\beta$ in mouse osteoblast cells

  • Noh, Sang-Ho;Park, Young-Gukk;Kim, Cheorl-Ho
    • Journal of Life Science
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    • v.10 no.5
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    • pp.529-532
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    • 2000
  • Prostaglandin $E_2$(PG$E_2$) is an abundant eicosanoid in bone that has been implicated in a number of pathological states associated with bone loss, and is also known to stimulate matric metalloproteinase-1 systhesis and secretion in rat and human osteoblast cells, although the intracellular reaction remain unclear. Interleukin-1$\beta$ (IL-1$\beta$) is a cytokine that plays a critical role in bone remodelling and appears to act as a downstream effector of most bone-resorbing agents. However, it is still interesting to examine whether PG$E_2$ regulates IL-1$\beta$ expression by mouse osteoblasts or not. Here we demonstrate that PG$E_2$is a potent inducer of IL-1$\beta$ production by fetal osteoblasts.

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Diphlorethohydroxycarmalol, Isolated from Ishige okamurae, Increases Prostaglandin E2 through the Expression of Cyclooxygenase-1 and -2 in HaCaT Human Keratinocytes

  • Kang, Gyeoung-Jin;Han, Sang-Chul;Koh, Young-Sang;Kang, Hee-Kyoung;Jeon, You-Jin;Yoo, Eun-Sook
    • Biomolecules & Therapeutics
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    • v.20 no.6
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    • pp.520-525
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    • 2012
  • Prostaglandin (PG) $E_2$, the most abundant prostaglandin in the human body, is synthesized from arachidonic acid via the actions of cyclooxygenase (COX) enzymes. $PGE_2$ exerts homeostatic, cytoprotective, inflammatory, and in some cases anti-inflammatory effects. Also, it has been reported that $PGE_2$ is involved in hair growth. Diphlorethohydroxycarmalol (DPHC) is a phlorotannin compound isolated from the brown algae Ishige okamurae, with various biological activities in vitro and in vivo. In this study, the biological effect and mechanism of action of DPHC on prostaglandin synthesis in HaCaT human keratinocytes was examined. The results showed that, in these cells, DPHC significantly and dose-dependently induced $PGE_2$ synthesis by increasing the protein and mRNA levels of COX-1 and COX-2. Interestingly, DPHC-induced COX-1 expression preceded that of COX-2. Also, while both rofecoxib and indomethacin inhibited $PGE_2$ production, the latter was seems to be the more potent. From above results, we can expect that DPHC has some beneficial effects via increasing of $PGE_2$ production.

Prostaglandin E Synthase, a Terminal Enzyme for Prostaglandin E2 Biosynthesis

  • Kudo, Ichiro;Murakami, Makoto
    • BMB Reports
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    • v.38 no.6
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    • pp.633-638
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    • 2005
  • Biosynthesis of prostanoids is regulated by three sequential enzymatic steps, namely phospholipase $A_2$ enzymes, cyclooxygenase (COX) enzymes, and various lineage-specific terminal prostanoid synthases. Prostaglandin E synthase (PGES), which isomerizes COX-derived $PGH_2$ specifically to $PGE_2$, occurs in multiple forms with distinct enzymatic properties, expressions, localizations and functions. Two of them are membrane-bound enzymes and have been designated as mPGES-1 and mPGES-2. mPGES-1 is a perinuclear protein that is markedly induced by proinflammatory stimuli, is down-regulated by anti inflammatory glucocorticoids, and is functionally coupled with COX-2 in marked preference to COX-1. Recent gene targeting studies of mPGES-1 have revealed that this enzyme represents a novel target for anti-inflammatory and anti-cancer drugs. mPGES-2 is synthesized as a Golgi membrane-associated protein, and the proteolytic removal of the N-terminal hydrophobic domain leads to the formation of a mature cytosolic enzyme. This enzyme is rather constitutively expressed in various cells and tissues and is functionally coupled with both COX-1 and COX-2. Cytosolic PGES (cPGES) is constitutively expressed in a wide variety of cells and is functionally linked to COX-1 to promote immediate $PGE_2$ production. This review highlights the latest understanding of the expression, regulation and functions of these three PGES enzymes.

Triclosan Inhibition of Prostaglandin $E_2$ Production in Human Gingival Fibroblast (치은 섬유모세포에서 Triclosan에 의한 Prostaglandin $E_2$ 합성 억제)

  • Park, Seong-Pyu;Chung, Hyun-Ju;Kim, Young-Joon;Kim, Ok-Su
    • Journal of Periodontal and Implant Science
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    • v.34 no.2
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    • pp.345-356
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    • 2004
  • The triclosan was shown to have anti-microbial and anti-inflammatory effect with inhibition of inflammatory mediators such as prostaglandin $E_2(PGE_2)$. The purpose of this study was to elucidate whether and how $PGE_2$ could be inhibited by triclosan in human gingival fibroblast. Human gingival fibroblast-1 cells (ATCC CRL2014) were pre-treated for 1 hour with triclosan (0.001 ${\mu}/ml{\sim}10$ ${\mu}/ml$) and then stimulated with $TNF-{\alpha}$ (1.0 ng/ml). $PGE_2$ synthesis was evaluated by ELISA and gene expression of COX-1 and COX-2 was evaluated by RT-PCR after $TNF-{\alpha}$, triclosan, and NS-398 (COX-2 inhibitor, 5, ${\mu}M$) and/ or cycloheximide (protein synthesis inhibitor, 2 ${\mu}g/ml$). Triclosan was cytotoxic to human gingival fibroblasts in the concentration higher than 1.0 ${\mu}g/ml$ for longer than 24 hours in tissue culture. The $PGE_2$ synthesis was inhibited by triclosan in dose-dependent manner. Greater COX-2 mRNA suppression was observed with triclosan (0.1 ${\mu}g/ml$) than with $TNF-{\alpha}$ alone, without change in COX-1 gene expression. Inhibitory effects of triclosan on $PGE_2$ synthesis disappeared in presence of cycloheximide. This study suggests that triclosan inhibit prostaglandin $E_2$ at the level of COX-2 gene regulation and require de novo protein synthesis.

Effects of Armeniacae Semen and Amygdalin on Prostaglandin E2 Synthesis and Nitric Oxide Production (행인(杏仁)과 Amygdalin이 Prostaglandin E2 합성과 NO생성에 미치는 영향)

  • Jung, Hyung-Jin;Kim, Youn-Sub;Kim, Gyung-Jun
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.32 no.3
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    • pp.13-22
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    • 2019
  • Objectives : Armeniacae semen is the seed of Prunus armenica L. var. ansu MAXIM, and this is classified into Rosaceae. Armeniacae semen has been used for centuries in traditional oriental medicine for the treatment of pain and inflammatory diseases. Amygdalin is the major compound of Armeniacae semen, and it is now being used for the treatment of pain and cancer. Methods : In the present study, we compared the effects of an aqueous extract of Armeniacae semen and a solution of amygdalin extracted from Armeniacae semen on lipopolysaccharide(LPS)-stimulated prostaglandin E2 synthesis and nitric oxide production in mouse BV-2 microglial cells. For this study, 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide(MTT) assay, reverse transcription-polymerase chain reaction(RT-PCR), prostaglandin E2 immunoassay and nitric oxide detection were performed on mouse BV-2 microglial cells. Results : In the present study, an aqueous extract of Armeniacae semen and an amygdalin solution extracted from Armeniacae semen suppressed prostaglandin E2 synthesis and nitric oxide production by inhibiting the LPS-induced enhancement of cyclooxygenase-2(COX-2) mRNA and the inducible nitric oxide synthase mRNA in mouse BV-2 cells. For the cyclooxygenase-1(COX-1) expression, an aqueous extract of Armeniacae semen showed a more potent suppression effect compared to the amygdalin solution. However, the amygdalin solution more potently suppressed the LPS-induced COX-2 mRNA expression compared to the aqueous extract of Armeniacae semen. Conclusions : As a result, aqueous extract of Armeniacae semen and amygdalin exert anti-inflammatory and analgesic effects.

Extravasation of Prostaglandin E1 during Bier Block for the Treatment of Occlusive Arterial Disease (폐쇄성 혈관 질환의 치료를 위한 Bier Block중에 발생한 Prostaglandin E1의 혈관의 유출)

  • Choe, Huhn;Lee, Yong-Tae;Kim, Dong-Chan;Han, Young-Jin
    • The Korean Journal of Pain
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    • v.7 no.2
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    • pp.299-302
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    • 1994
  • Prostaglandin E1(PGE1) is a potent vasodilator and is a useful drug for the treatment of occlusive peripheral vascular disease. It has been used systemically via intravenous route or regionally via intraarterial route. We tried intravenous regional administration of PGE1 for the treatment of a patient with occlusive arterial disease involving left fingers. During the 13th injection, the patient complained of severe pain at the injection site during the drug administration. Thereafter, the patient developed painful and severe swelling with blebs on his left hand. Systemic antibiotics were given together with stellate ganglion block of the affected left side. PGE1 was substituted to reserpine, which is subcutaneously injectable, for the second term treatment.

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