• 제목/요약/키워드: Arachidonic acid metabolism

검색결과 81건 처리시간 0.025초

치주염증시 ${\gamma}-Glutamyl$ transpeptidase의 연구 (AN EXPERIMENT OF ${\gamma}-GLUTAMYL$ TRANSPEPTIDASE ON PERIODONTAL INFLAMMATION)

  • 이석초;임종득;유광렬;오귀옥;김형섭
    • Journal of Periodontal and Implant Science
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    • 제23권3호
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    • pp.517-525
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    • 1993
  • Glutathione(GSH),a tripeptide thiol, found in virtually all cells, functions in metabolism tranasport and cellular protection. It protects cells against the destructive effects of reactive oxygen intermediates and free radicals. Also ${\gamma}-Glutamyl$ transpeptidase(${\gamma}-GTT$), an enzyme of major importance in GSH metabolism, initiates GSH degradation. In order to explore the $GSH-{\gamma}-GTT$ system as periodontal disease activity indicator, we observed the ${\gamma}-GTT$ and arachidonic acid metabolits according to clinical groups(Control, Adult periodontitis, Rapidly progressive Periodontitis). From the experiments, the following results were obtained. 1. When compared with normal, ${\gamma}-GTT$ of A. P. and R. P. P. were increased, and only the change of ${\gamma}-GTT$ of R. P. P. was statistically significant(P<0. 05). 2. The amounts of arachidonic acid metabolites were not different with statistical significance among the clinical groups. 3. ${\gamma}-GTT$ may by useful adjuncts as new cytoprotective indicator and periodontal disease activity indicator in accordance with positive corelation pocket depth, attachment level and ${\gamma}-GTT$.

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Cytosolic phospholipase A2, lipoxygenase metabolites, and reactive oxygen species

  • Kim, Cheol-Min;Kim, Joo-Young;Kim, Jae-Hong
    • BMB Reports
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    • 제41권8호
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    • pp.555-559
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    • 2008
  • Reactive oxygen species (ROS) are generated in mammalian cells via both enzymatic and non-enzymatic mechanisms. Although certain ROS production pathways are required for the performance of specific physiological functions, excessive ROS generation is harmful, and has been implicated in the pathogenesis of a number of diseases. Among the ROS-producing enzymes, NADPH oxidase is widely distributed among mammalian cells, and is a crucial source of ROS for physiological and pathological processes. Reactive oxygen species are also generated by arachidonic acid (AA) metabolites, which are released from membrane phospholipids via the activity of cytosolic phospholipase $A_2$ ($cPLA_2$). In this study, we describe recent studies concerning the generation of ROS by AA metabolites. In particular, we have focused on the manner in which AA metabolism via lipoxygenase (LOX) and LOX metabolites contributes to ROS generation. By elucidating the signaling mechanisms that link LOX and LOX metabolites to ROS, we hope to shed light on the variety of physiological and pathological mechanisms associated with LOX metabolism.

임신 중인 생쥐 자궁에 있어서 아라키돈산에 특이적인 Acyl-CoA Synthetase 4의 발현 (Expression of Arachidonate-Preferring Acyl-CoA Synthetase 4 in the Mouse Uterus during Pregnancy)

  • 이상미;박효영;정영희;문승주;강만종
    • Reproductive and Developmental Biology
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    • 제28권2호
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    • pp.89-94
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    • 2004
  • 본 연구는 생쥐 자궁에 있어서 아라키돈산으로부터 prostaglandin의 생성에 관여하는 것으로 추측되는 acyl-CoA sytnhetase 4 유전자의 임신단계별 발현을 확인하고자 실시하였다. Acyl-CoA sytnhetase 4 유전자는 착상 전에는 발현이 증가하는 경향을 나타내었으며 착상 후에는 감소하였다. 이러한 발현의 양상은 세포막의 인질로부터 아라키돈산을 유리시키는 cPLA2의 발현과 유리된 아라키돈산으로부터 prostaglandin의 생성에 관여하는 COX1과 COX2의 발현 양상과 일치하였다. 이러한 결과는 세포막에서 유리된 아라키돈산이 무한적으로 COX1과 COX2에 의하여 prostaglandin의 생성에 이용되는 것이 아니라 acyl-CoA sytnhetase 4에 의하여 세포막의 인지질로 되돌려져 prostaglandin의 생성을 조절하는 기능을 세포가 수행하고 있는 것으로 추정된다.

Epigallocatechin Gallate inhibits Prostagladins Generation by Suppression of cPLA2 Activity on Arachidonic Acid Metabolism in LPS-Stimulated RAW264.7 Cells

  • Son, Dong-Ju;Akiba, Satoshi;Sato, Takashi;Park, Young-Hyun;Yun, Yeo-Pyo
    • 대한약학회:학술대회논문집
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    • 대한약학회 2002년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2
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    • pp.260.1-260.1
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    • 2002
  • Green tea contains several antioxidants including polyphenols of the catechin. which have been shown to act in vitro and in vivo as anti-inflammatory. anti-viral and anti-tumor drugs. Prostaglandins (PGs) are a family of intercellular and intracellular messengers derived from arachidonic acid(AA) by phospholipase(PL) and cyclooxygenase(COX). These mediators exert a wide range of effects on processes such as smooth muscle tone. vascular permeability, cellular proliferation. and inflammatory/immune function. (omitted)

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Piperine, a Primary Component of Black Pepper, inhibits Prostagladins Generation by Suppression of COX Activity on Arachidonic Acid Metabolism in LPS-Stimulated RAW264.7 Cells

  • Son, Dong-Ju;Park, Byeoung-Soo;Lee, Sung-Eun;Kitatani, Kazuyuki;Park, Young-Hyun
    • 대한약학회:학술대회논문집
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    • 대한약학회 2002년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.2
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    • pp.258.1-258.1
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    • 2002
  • Piperine (piperinoyl-piperidine) is a nitrogenous pungent substance contained in black pepper. the well know spice obtained from Piper nigrum L. (Piperaceae). Pharmacological studies have shown that piperine reduces inflammation and pain. possesses anticonvulsant and antiulcer activity. protects the liver and has deleterious effects on testis function. Prostaglandins(PGs) are a family of intercellular and intracellular messengers derived from arachidonic acid(AA) by phospholipase(PL) and cyclooxygenase(COX). (omitted)

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The Joins (SKI 306X) study: Effects on Arachidonic acid metabolism pathway and other inflammatory mediators

  • Ryu, Keun-Ho;Jung, Ki-Won;Han, Chang-Kyun;Kwak, Wie-Jong;Cho, Yong-Baik
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.1
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    • pp.143.2-144
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    • 2003
  • Joins (SKI 306X) is now clinically used for the treatment of osteoarthritis (OA). In previous reports, Joins a natural herbal product extracted from three herbs Clematis Radix. Trichosanthes Radix and Prunella Flos, was shown to have good analgesic and anti-inflammatory effects in several in vivo models. e.g., acetic acid-induced pain, carrageenan-induced paw edema and adjuvant-induced arthritis. (omitted)

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Biological Significance of Essential Fatty Acids/Prostanoids/Lipoxygenase-Derived Monohydroxy Fatty Acids in the Skin

  • Ziboh, Vincent-A.;Cho, Yunhi;Mani, Indu;Xi, Side
    • Archives of Pharmacal Research
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    • 제25권6호
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    • pp.747-758
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    • 2002
  • The skin displays a highly active metabolism of polyunsaturated fatty acids (PUFA). Dietary deficiency of linoleic acid (LA), an 18-carbon (n-6) PUFA, results in characteristic scaly skin disorder and excessive epidermal water loss. Although arachidonic acid (AA), a 20-carbon (n6) PUFA, is metabolized via cyclooxygenase pathway into predominantly prostaglandin $E_2(PGE_2)$ and $PGF_{2{\alpha}}$, the metabolism of AA via the 15-lipoxygenase (15-LOX) pathway, which is very active in skin epidermis and catalyzes the transformation of M into predominantly 15S-hydroxyeicosatetraenoic acid (15S-HETE). Additionally, the 15-LOX also metabolizes the 18-carbon LA into 13S-hydroxyoctadecadienoic acid (13S-HODE), respectively. Interestingly, 15-LOX catalyzes the transformation of $dihomo-{\gamma}-linolenic$ acid (DGLA), derived from dietary gamma-linolenic acid, to 15S-hydroxyeicosatrienoic acid (15S-HETrE). These monohydroxy fatty acids are incorporated into the membrane inositol phospholipids which undergo hydrolytic cleavage to yield substituted-diacylglycerols such as 13S-HODE-DAG from 13S-HODE and 15S-HETrE-DAG from 15S-HETrE. These substituted-monohydroxy fatty acids seemingly exert anti-inflammatory/antiproliferative effects via the modulation of selective protein kinase C as well as on the upstream/down-stream nuclear MAP-kinase/AP-1/apoptotic signaling events.

An Arachidonic Acid Metabolizing Enzyme, 8S-Lipoxygenase, in Mouse Skin Carcinogenesis

  • Kim Eun-Jung
    • Nutritional Sciences
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    • 제9권3호
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    • pp.212-226
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    • 2006
  • The involvement of arachidonic acid (AA) metabolizing enzyme, lipoxygenase (LOX), in the development of particular tumors in humans has gradually been acknowledged and LOX has emerged as a novel target to prevent or treat human cancers. In the mouse skin carcinogenesis model, which provides an excellent model to study multistage nature of human cancer development, many studies have shown that some of the LOXs are constitutively upregulated in their expression. Moreover, application of LOX inhibitors effectively reduced tumor burdens, which implicates the involvement of LOX in mouse skin tumor development as well. 8S-LOX is a recently cloned LOX, which is specifically expressed in mouse skin after 12-O-tetradecanoyl-phorbol-13-acetate (TPA) treatment but not in normal skin. Unlike other members of the LOX 'family' expressed in mouse skin, this TPA-induced expression of 8S-LOX is prominent only in the skin of the TPA tumor promotion-sensitive strains of mice (SENCAR, CD-1, and NMRI) but not in the promotion-resistant C57BL/6J mice. This is a very unique phenomenon among strains of mice. Constitutive upregulation of 8S-LOX was also found in early stage papillomas and the expression was gradually reduced as the tumors became malignant. Based on these observations, it has been thought that 8S-LOX is involved in TPA-induced tumor promotion as well as in tumor conversion from papillomas to carcinomas. In accordance with this hypothesis, several studies have suggested possible roles of 8S-hydroxyeicosatetraenoic acid (HETE), an AA metabolite of 8S-LOX, in mouse skin tumor development. A clastogenic activity of 8S-HETE was demonstrated in primary keratinocytes and a close correlation between the levels of etheno-DNA adducts and 8S-HETE during skin carcinogenesis was also reported. On the other hand, it has been reported that 8S-LOX protein expression is restricted to a differentiated keratinocyte compartment Moreover, reported findings on the ability of 8S-HETE to cause keratinocyte differentiation appear to be contrary to the procarcinogenic features of the 8S-LOX expression, presenting a question as to the role of 8S-LOX during mouse skin carcinogenesis. In this review, molecular and biological features of 8S-LOX as well as current views on the functional role of 8S-LOX/8S-HETE during mouse skin carcinogenesis are presented.

큰포식세포에서 퉁퉁마디 추출물의 아라키돈산 대사효소조절 및 항염증 활성 (Modulation of arachidonic acid metabolism and inflammatory process in macrophages by different solvent fractions of Glasswort (Salicornia herbacea L.) extract)

  • 강스미;최유미;홍정일
    • 한국식품과학회지
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    • 제50권6호
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    • pp.671-679
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    • 2018
  • 퉁퉁마디는 식용 염생식물로서 이에 대한 유용 기능성 탐색 및 생리활성 평가에 대한 연구가 지속적으로 진행되고 있다. 본 연구에서는 퉁퉁마디 70% 메탄올 추출물을 극성에 따라 분획하여 얻은 Fr.H, Fr.E, Fr.EA, Fr.B 및 Fr.W의 5분획의 NO제거 및 iNOS 발현, 아라키돈산 대사에 관련된 효소 $cPLA_2$, COX-2, 5-LOX 등의 발현과 활성화에 대한 효과를 분석하여 항염작용과 메커니즘을 검토하였다. 이 중 Fr.EA가 가장 높은 폴리페놀 및 플라보노이드 성분 함량을 나타내었고 nitrite/아질산의 제거에 있어서도 가장 뛰어난 활성을 보였다. 하지만 LPS로 자극한 RAW264.7 큰포식세포 배양계에서는 Fr.E가 가장 우수한 NO 제거활성과 iNOS발현억제 활성을 나타내었고 이어 Fr.H와 Fr.EA의 활성 순을 나타냈다. Fr.E는 또한 LPS로 자극한 RAW264.7 배양 세포계에서 $cPLA_2$와 COX-2의 발현억제에 가장 큰 효과를 나타내었으며 이들의 억제를 위한 $IC_{50}$는 각각 33.4과 $27.9{\mu}g/mL$로 나타났다. Fr.E는 $cPLA_2$의 활성화에 중요한 영향을 미치는 ERK1/2의 인산화도 농도의존적으로 저해하였다. Fr.H와 Fr.EA도 $80{\mu}g/mL$ 이하 농도에서 iNOS와 아라키돈산 대사효소들의 발현을 농도의존적으로 억제하였다. 하지만 가장 극성 분획인 Fr.W는 모든 활성평가 시스템에서 거의 효과를 나타내지 않았다. 본 연구는 퉁퉁마디가 iNOS와 아라키돈산 대사효소계를 효과적으로 억제하여 항염증작용을 할 수 있다는 것을 보고하고 있으며, 특히 Fr.E와 Fr.H와 같은 소수성 분획들이 우수한 활성을 나타내어 향후 이를 타깃으로 하는 관련 기능성 소재로서의 활용이 기대된다.