• 제목/요약/키워드: Phospholipase A₂(PLA₂)

검색결과 151건 처리시간 0.023초

사람 위 상피세포의 염증반응에 대한 무의 효과 (Effect of Radish on Inflammatory Reaction in Human Epithelial Gastric Cell)

  • 손윤희;정유선;서정일;박인경;남경수
    • 생명과학회지
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    • 제16권1호
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    • pp.17-21
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    • 2006
  • The effects of Korean and Japanese radishes on inflammatory reaction that involves arachidonic acid cascades were investigated in human epithelial gastric cell. The activities of type I (porcine pancreas) and type II (Crotalus atrox) phospholipase $A_2(PLA_2$) were inhibited by radish. Cyclooxygenase-2 (COX-2) activity was significantly suppressed by radish (p<0.05, p<0.01 and p<0.005). The nitric oxide production was also inhibited by radish. The Korean radish was more effective in inhibition of $PLA_2$ and COX-2 activities and nitric oxide production than Japanease radish. These results indicate that radish has a protective effect on gastric epithelial cell inflammation by suppressing the activities of $PLA_2$ and COX-2 activities and nitric oxide production from gastric epithelial cell.

초호열성균이 생성하는 phospholipase $A_2$에 관한 연구 (Phospholipase $A_2$ excreted from the cells of hyperthermophilic microbes)

  • 조용계;우효경;김연심
    • 한국응용과학기술학회지
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    • 제16권3호
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    • pp.263-271
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    • 1999
  • We checked the presence of phospholipase $A_2(PLA)_2$ which could split the ester bond at the position 2 in the glycerol backbone of glycerophospholipids, in the cells of hyperthermophiles of Pyrococcus horikoshii and Sulfolobus acidocaldarius. The results obtained are as follows; (1). Pyrococcus horikoshii cells were grown in obligate anaerobic conditions at $95^{\circ}C$ and they needed sulfur as energy source instead of oxygen, while Sulfolobus acidocaldarius species grew well in the aerobic medium (pH 2.5) containing yeast and sucrose at $75^{\circ}C$. (2). Pyrococcus horikoshii cells produced phospholipase $A_2$ in the cell culture media although this species did not show lipase activity at least in the pH range of 1.5 ${\sim}$ 3.5. Sulfolobus acidocaldarius cells produced lipase hydrolyzing triacylglycerols such as triolein, but did not split any kind of phospholipids used as substates. (3). The compound of 1-decanoyl-2-(p-nitrophenylglutaryl) phosphatidylcholine was not suitable for a substrate in this experiment, though frequently used as a subtrate for checking presence of phospholipase $A_2$, for its decomposi-tion in this experiment. The L-${\alpha}$-phosphatidylcholine-${\beta}$-[N-7-nitrobenz-2-oxa-1, 3-diazol]aminohexanoyl-${\gamma}$-hexadecanoyl labelled with a fluorescent material, did not show any migration of acyl chains in the molecule during the reaction with phospholipase $A_2$ under a hot condition. (4). Phospholipase $A_2$ in the cells of Pyrococcus horikoshii, showed the optimum activity at $pH6.7{\sim}7.2$ and $95{\sim}105^{\circ}C$, respectively, and was activated by addition of calcium chloride solution. Andthe phospholipase $A_2$ specifically hydrolyzed glycero-phospholipids such as phosphatidyl choline, phosphatidyl ethanolamine, phosphatidyl serine and phosphatidyl inositol, but could not split phospholipid containing ether bonds in the molecule such as DL -${\alpha}$-phosphatidylcholine-${\beta}$-palmitoyl-${\gamma}$-O-hexadecyl, DL-${\alpha}$-phosphati- dylcholine-${\beta}$- oleoyl-${\gamma}$-O-hexadecyl, DL-phosphatidylcholine-dihexadecyl.

세균 감염에 따른 파밤나방 혈구 밀도 변화와 아이코사노이드 중개 역할 (Change in Hemocyte Populations of the Beet Armyworm, Spodoptera exigua, in Response to Bacterial Infection and Eicosanoid Mediation)

  • 박지영;김용균
    • 한국응용곤충학회지
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    • 제51권4호
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    • pp.349-356
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    • 2012
  • 아이코사노이드는 곤충의 다양한 세포성 면역 반응을 중개한다. 본 연구는 면역반응에 따라 혈구세포 밀도 변화에 대한 아이코사노이드의 새로운 중개 기능을 밝히기 위해 수행되었다. 파밤나방(Spodoptera exigua) 5령충은 세균 감염에 따라 2 시간이 지나면 총혈구수의 현격한 증가를 보였다. 이 총혈구수 증가는 주로 부정형혈구와 소구형혈구 밀도의 증가로 해석되었다. 파밤나방 유충에 phospholipase $A_2$ ($PLA_2$) 억제자인 dexamethasone을 처리하면 세균 처리에 의한 총혈구수 변화가 일어나지 않았다. 하지만 dexamethasone을 처리한 유충에 $PLA_2$의 촉매산물인 arachidonic acid를 첨가하면 총혈구수 증가가 회복되었다. 이러한 혈구 밀도 변화에 원인으로서 아이코사노이드 종류를 추적하기 위해 cyclooxygenase (COX)의 억제자인 naproxene을 처리한 결과 총혈구수 증가가 억제되고, lipoxygenase (LOX)의 억제자인 esculetin을 처리하면 총혈구수 증가가 유지되어 COX 산물이 세균 침입에 따른 총혈구수 증가에 관여하는 것으로 나타났다. COX의 생산물인 prostaglandin $E_2$ ($PGE_2$)를 세균 없이 단독으로 처리할 때도 총혈구수의 뚜렷한 증가를 나타냈다. 이러한 결과는 파밤나방의 세포성 면역반응 과정에서 총혈구수 증가를 중개하는 아이코사노이드의 새로운 기능을 제시하고 있다.

장의 재관류로 유도된 급성폐손상에서의 Doxycyclin의 효과 (Effect of Doxycycline on the Acute Lung Injury Induced by Gut Ischemia/Reperfusion)

  • 이영만;권성철;이상채
    • Tuberculosis and Respiratory Diseases
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    • 제54권5호
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    • pp.532-541
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    • 2003
  • 연구배경 : 장의 재관류로 발생하는 급성폐손상에서 group II $PLA_2$의 억제제로 알려진 doxycyclin의 치료효과와 그 작용기전을 알아보기 위하여 본 연구를 시행하였다. 특히 장의 재관류에 의한 급성폐손상이 호중구에 의한 산화성 스트레스에 의하며 이 과정에서 group II $PLA_2$가 관여한다는 사실에 근거하여 doxycyclin의 산화성 스트레스억제를 확인하는 것이 본 연구의 목적이었다. 방법 : 체중 300g 내외의 Sprague-Dawley 흰쥐에서 상장간막동맥을 60분간 clamp한 뒤 120분간의 재관류를 시키면 급성폐손상이 유도된다. 이때 호중구에 의한 산화성스트레스가 유발되고 여기에 $PLA_2$가 관여하는 것을 관찰하기위해 lung leak, lung MPO 활성도, CeCl3 cytochemical electron microscopy, cytochrome-c reduction assay 및 lung $PLA_2$ 활성도를 측정하였다. 또한 doxycyclin의 효과를 확인하기 위하여 doxycyclin hyclate(10mg/kg)를 복강내 주사한 뒤 위에서 언급한 모든 parameter를 측정, 비교하였다. 결과 : 장의 재관류로 유도된 급성폐손상에서 doxycyclin은 폐손상을 감소시켰는데 이것은 doxycyclin에 의한 lung MPO, 산소기생성, lung $PLA_2$ 활동도의 감소에 의한 것으로 생각되었다. 결론 : 장의 재관류로 유도된 급성폐손상은 호중구에서 생성되는 산소기, 특히 $PLA_2$의 활성화에 의해 생성된 산소기에 의한 것으로 생각되며 이때 doxycyclin은 $PLA_2$를 억제하여 산화성 스트레스를 감소시킴으로서 폐손상의 감소를 가져오는 것으로 생각된다.

CD206+ dendritic cells might be associated with Heat-pattern and induced regulatory T cells after treatment with bee venom

  • Jung, Woo-Sang;Kwon, Seungwon;Yang, Jung Yun;Jin, Chul;Cho, Seung-Yeon;Park, Seong-Uk;Moon, Sang-Kwan;Park, Jung-Mi;Ko, Chang-Nam;Bae, Hyunsu;Cho, Ki-Ho
    • 대한한의학회지
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    • 제43권2호
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    • pp.1-7
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    • 2022
  • Objectives: Bee venom (BV) is a widely used therapy in Traditional East Asian Medicine (TEAM). We previously reported that BV was clinically effective for treating Parkinson's disease, that phospholipase A2 (PLA2) was the main component of BV, and that it induced regulatory T cells (Tregs) by binding CD206 on dendritic cells (DCs). Therefore, we aimed to reconfirm our findings in human blood samples and investigate the relationship between CD206+ DCs and clinical syndrome differentiation in TEAM. Methods: We surveyed 100 subjects with questionnaires on cold-heat patternization and obtained their blood samples. The obtained human peripheral blood monocytes (hPBMCs) were washed with phosphate-buffered saline (PBS). After resuspension with ex vivo media, numbers of cells were counted. Tregs were counted after culturing the samples in a 37℃ CO2 incubator for 72 h. Results: We divided the subjects into a relatively high CD206+ group or a relatively low CD206+ group. The heat factor scores of high CD206+ group were significantly higher than that of low CD206+ group (high vs low: 239.2 ± 54.1 vs 208.4 ± 55.1, p=0.023). After culturing with PLA2, Tregs increased in the high CD206+ group but decreased in the low CD206+ group. Conclusion: In this study, we reconfirm that CD206+ DCs induced Treg differentiation by incubating human blood samples with PLA2 and that they showed an association with syndrome differentiation, especially with heat patterns, in TEAM. A heat pattern in TEAM might be one indication for PLA2 therapy because its score was elevated in the high CD206+ group.

Involvement of phospholipase $A_2$ in ATP-induced mucin release from cultured Hamster Tracheal Surface Epithelial cells

  • Jo, M.;Ko, K.H.;Kim, K.C.
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1996년도 춘계학술대회
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    • pp.219-219
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    • 1996
  • Mucin release from hamster tracheal surface epithelial(HTSE) cells can be stimulated by extracellular ATP via activation of P$_2$ purinoceptors located on the cell surface which appears to be coupled to phospholipase C via G proteins. However, our preliminary data indicate that the ATP-induced mucin release involves, in part, activation of PKC, but not an increase in the intracellular Ca++ level, suggesting the presence of another pathway which is separate from the PLC-PKC pathway, In this study, we intended to confirm the previous observation and subsequently identify an additional mechanism. Confluent HTSE cells were metabolically labeled with either $^3$H-glucosamine or $^3$H-arachidonic acid(AA), and release of either $^3$H-mucin or $^3$H-AA was quantified following various treatments. $^3$H-mucin was assayed using the sepharose CL-4B gel-filtration method, whereas $^3$H-AA liberation was measured by counting $^3$H-radioactivity in the chase medium. We found that: (1)Desensitization of PKC by pretreatment with PMA completely abolished the mucin releasing effect of PMA but partially inhibited the ATP-induced mucin release; (2) ATP increases release of $^3$H-AA in a dose-dependent fashion; (3) mepacrine, an inhibitor of PLA$_2$, attenuates ATP-induced mucin release in a dose-dependent fashion. These results confirm our previous notion that the PLC-PKC pathway is responsible, in part, for ATP-induced mucin release. Furthermore, activation of PLA$_2$ appears to be an additional pathway which is involved in ATP-induced mucin release.

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Effect of the Inhibition of PLA2 on Oxidative Lung Injury Induced by $Interleukin-1{\alpha}$

  • Lee, Young-Man;Cho, Hyun-Gug;Park, Yoon-Yub;Kim, Jong-Ki;Lee, Yoon-Jeong;Park, Won-Hark;Kim, Teo-An
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권5호
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    • pp.617-628
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    • 1998
  • In order to understand the pathogenetic mechanism of adult respiratory distress syndrome (ARDS), the role of phospholipase A2 (PLA2) in association with oxidative stress was investigated in rats. $Interleukin-1{\alpha}\;(IL-1,\;50\;{\mu}g/rat)$ was used to induce acute lung injury by neutrophilic respiratory burst. Five hours after IL-1 insufflation into trachea, microvascular integrity was disrupted, and protein leakage into the alveolar lumen was followed. An infiltration of neutrophils was clearly observed after IL-1 treatment. It was the origin of the generation of oxygen radicals causing oxidative stress in the lung. IL-1 increased tumor necrosis factor (TNF) and cytokine-induced neutrophil chemoattractant (CINC) in the bronchoalveolar lavage fluid, but mepacrine, a PLA2 inhibitor, did not change the levels of these cytokines. Although IL-1 increased PLA2 activity time-dependently, mepacrine inhibited the activity almost completely. Activation of PLA2 elevated leukotriene C4 and B4 (LTC4 and LTB4), and 6-keto-prostaglandin $F2{\alpha}\;(6-keto-PGF2{\alpha})$ was consumed completely by respiratory burst induced by IL-1. Mepacrine did not alter these changes in the contents of lipid mediators. To estimate the functional changes of alveolar barrier during the oxidative stress, quantitative changes of pulmonary surfactant, activity of gamma glutamyltransferase (GGT), and ultrastructural changes were examined. IL-1 increased the level of phospholipid in the bronchoalveolar lavage (BAL) fluid, which seemed to be caused by abnormal, pathological release of lamellar bodies into the alveolar lumen. Mepacrine recovered the amount of surfactant up to control level. IL-1 decreased GGT activity, while mepacrine restored it. In ultrastructural study, when treated with IL-1, marked necroses of endothelial cells and type II pneumocytes were observed, while mepacrine inhibited these pathological changes. In histochemical electron microscopy, increased generation of oxidants was identified around neutrophils and in the cytoplasm of type II pneumocytes. Mepacrine reduced the generation of oxidants in the tissue produced by neutrophilic respiratory burst. In immunoelectron microscopic study, PLA2 was identified in the cytoplasm of the type II pneumocytes after IL-1 treatment, but mepacrine diminished PLA2 particles in the cytoplasm of the type II pneumocyte. Based on these experimental results, it is suggested that PLA2 plays a pivotal role in inducing acute lung injury mediated by IL-1 through the oxidative stress by neutrophils. By causing endothelial damage, functional changes of pulmonary surfactant and alveolar type I pneumocyte, oxidative stress disrupts microvascular integrity and alveolar barrier.

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내독소로 유도된 급성폐손상에서 Diltiazem 전처치가 호중구성 산화성 스트레스에 미치는 효과 (Pretreatment of Diltiazem Ameliorates Endotoxin-Induced Acute Lung Injury by Suppression of Neutrophilic Oxidative Stress)

  • 장유석;이영만;안욱수;이상채;김경찬;현대성
    • Tuberculosis and Respiratory Diseases
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    • 제60권4호
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    • pp.437-450
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    • 2006
  • 연구배경 : 급성호흡곤란증후군의 병인론 중 산화성 스트레스는 페 모세혈관손상의 중요한 기전의 일부이다. 본 연구에서는 호중구에 의한 유리 산소기의 형성이 $PLA_2$의 활성화와 관계가 있음을 근거로 하여 calcium channel blocker인 diltiazem이 내독소에 의한 급성 폐손상에 미치는 영향을 알아보고자 하였다. 방법 : 체중 300 gm 내외의 수컷 Sprague-Dawley흰쥐에서 내독소를 이용하여 급성 폐손상을 유도하고 동시에 내독소 투여 60분전에 diltiazem (3 mg/kg)을 복강 내로 투여하였다. 급성 폐손상이 유도된 흰쥐에서 폐장의 $PLA_2$, 사람에게서 분리된 호중구에서의 $PLA_2$, 폐장의 MPO의 활성도, 폐세척액내의 호중구의 수, surfactant, 단백함량, 호중구에서의 유리 산소기의 생성 등을 측정하였다. 또한 광학 현미경 및 전자 현미경을 이용하여 형태학적인 변화를 관찰하였고, 동시에 전자현미경 세포화학법을 이용하여 폐장내의 유리 산소기의 생성도 검사 하였다. 결과 : 내독소 투여 후 5 시간 후에는 급성 폐손상이 유발되고 폐장 및 호중구의 $PLA_2$, MPO, 폐세척액내의 호중구수, 단백함량 및 surfactant의 함량이 높게 측정되었다. 형태학적으로는 내독소에 의한 급성 페손상이 확인되었고 전자현미경을 이용한 세포화학적 검사에서는 폐장 내 유리 산소기의 생성이 증가되었음을 확인하였다. Diltiazem은 이러한 모든 변화를 감소시키고, 호중구에서의 산소기의 생성도 감소시켜 내독소에 의한 급성 폐손상을 감소 시켰다. 결론 : Diltiazem을 이용한 $PLA_2$의 억제는 내독소에 의한 급성 페손상에서 호중구에 의한 산화성 스트레스를 경감함으로써 그 손상을 줄일 것으로 사료된다.

호중구의 Respiratory Burst에 미치는 PLA2 및 PAF와 영향 : In vitro에서의 호중구의 산소기 생성 및 Apoptosis에 관한 연구 (Effect of the Inhibition of PLA2 and PAF on the Neutrophilic Respiratory Burst and Apoptosis)

  • 이영만;김상경;박윤엽
    • Tuberculosis and Respiratory Diseases
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    • 제48권6호
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    • pp.887-897
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    • 2000
  • 연구배경 : 급성호흡부전증후군(ARDS)의 병인론을 호중구의 산소기 생성 및 apoptosis 의 관정에서 PLA2 및 PAF의 역할과 연관하여 알아보았다. ARDS의 원인 중 산소기의 역할이 주로 염증성 cytokine 및 지질분자와 관련하여 연구되고 있는 점에 착안하여 내독소에 의한 PLA2, PAF의 작용 및 이에 따른 호중구의 혈관내피세포로의 유착, 산소기에 의한 pulmonary surfactant의 기능에 미치는 영향에 대해서도 알아보았다. 방법 : PMA로 자극된 호중구에서 PLA2 및 PAF의 억제에 따른 산소기 형성의 변화에 대해서도 알아보았으며 내독소에 의한 호중구에서의 PLA2활동도의 변화, lysoPAF remodelling에 미치는 PLA2 및 PAF의 억제의 효과에 대해서도 알아보았다. 또한 내독소 및 PMA에 의해 자극된 상태에서의 PLA2 및 PAF의 억제가 호중구의 apoptosis에 미치는 영향도 알아보았다. 호중구에 의한 조직의 손상은 혈관내피세포로의 호중구의 유착이 선행되어야 하므로 이러한 작용에 PLA2 및 PAF가 미치는 영향을 호중구 유착검사를 통하여 알아보았고 형태학적으로는 산소기와 pulmonary surfactant의 결합을 확인하였다. 결론 : ARDS 시의 호중구의 역할은 PLA2 및 PAF의 작용에 의한 산소기 형성 및 염증성 지질분자의 생성을 통해 조작의 손상을 유발하는 듯하며 이때 PLA2의 억제는 호중구의 apoptosis의 증가 및 산소기의 생성을 감소시키고 또한 호중구의 혈관내피세포로의 유착을 감소시켰다. PAF의 억제는 호중구의 산소기 생성의 감소 및 호중구의 유착을 억제하여 조직의 손상을 감소시키는 것으로 생각되었다.

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Alterations in Membrane Transport Function and Cell Viability Induced by ATP Depletion in Primary Cultured Rabbit Renal Proximal Tubular Cells

  • Lee, Sung-Ju;Kwon, Chae-Hwa;Kim, Yong-Keun
    • The Korean Journal of Physiology and Pharmacology
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    • 제13권1호
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    • pp.15-22
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    • 2009
  • This study was undertaken to elucidate the underlying mechanisms of ATP depletion-induced membrane transport dysfunction and cell death in renal proximal tubular cells. ATP depletion was induced by incubating cells with 2.5 mM potassium cyanide(KCN)/0.1 mM iodoacetic acid(IAA), and membrane transport function and cell viability were evaluated by measuring $Na^+$-dependent phosphate uptake and trypan blue exclusion, respectively. ATP depletion resulted in a decrease in $Na^+$-dependent phosphate uptake and cell viability in a time-dependent manner. ATP depletion inhibited $Na^+$-dependent phosphate uptake in cells, when treated with 2 mM ouabain, a $Na^+$ pump-specific inhibitor, suggesting that ATP depletion impairs membrane transport functional integrity. Alterations in $Na^+$-dependent phosphate uptake and cell viability induced by ATP depletion were prevented by the hydrogen peroxide scavenger such as catalase and the hydroxyl radical scavengers(dimethylthiourea and thiourea), and amino acids(glycine and alanine). ATP depletion caused arachidonic acid release and increased mRNA levels of cytosolic phospholipase $A_2(cPLA_2)$. The ATP depletion-dependent arachidonic acid release was inhibited by $cPLA_2$ specific inhibitor $AACOCF_3$. ATP depletion-induced alterations in $Na^+$-dependent phosphate uptake and cell viability were prevented by $AACOCF_3$. Inhibition of $Na^+$-dependent phosphate uptake by ATP depletion was prevented by antipain and leupetin, serine/cysteine protease inhibitors, whereas ATP depletion-induced cell death was not altered by these agents. These results indicate that ATP depletion-induced alterations in membrane transport function and cell viability are due to reactive oxygen species generation and $cPLA_2$ activation in renal proximal tubular cells. In addition, the present data suggest that serine/cysteine proteases play an important role in membrane transport dysfunction, but not cell death, induced by ATP depletion.