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소아 신증후군 환자에서 Plasminogen Activator Inhibitor Type 1 유전자 다형성
김영민,홍현기,김성도,조병수,Kim Young-Min,Hong Hyun-Kee,Kim Sung-Do,Cho Byoung-Soo 대한소아신장학회 2004 Childhood kidney diseases Vol.8 No.1
목 적 : 소아 신증후군 환자에서 과응고성 경향을 가지고 있으며 Plasminogen activator inhibitor-1(PAI-1)은 강력하게 섬유소의 용해를 감소시키는 당단백으로 최근 몇몇 연구에 의하면 신증후군에서 증가된 PAI-1과 사구체내의 섬유소원이나 섬유소와 관련된 항체의 침착이 연관되어 있음을 시사하고 있다. 저자는 PAI-1 유전자 다형성 중에서 A-844 G 대립유전자 다형성의 빈도와 유전형을 소아의 신증후군에서 임상경과와의 연관성을 비교 평가하였다. 방 법 : 2001년 10월부터 2003년 1월까지 경희대학교 부속병원 동서신장병연구소에 방문한 146명의 신증후군 환아와 249명의 대조군을 대상으로 하였고 신증훈군 환아는 infrequent relapser(IR)와 frequent relapser(FR)로 다시 나누었다. 이들에 대해 PAI-1 promoter gene의 A-844 G에 대한 중합효소 연쇄반응-제한효소절편길이 다형현상(PCR-RFLP)을 이용하여 유전자형을 A/A, A/G, G/G로 분류하여 비교 분석하였다. 통계는 Graph Pad Prism 통계분석 소프트웨어 version 2.0을 사용하였고 95% 신뢰구간과 P value는 0.05보다 작은 것을 의미 있게 보았다. 결 과 : PAI-1 promoter gene의 A- 844G 다형성의 분포는 대조군애서 G/G 81(32.5%), A/A 42(16.9%), G/A 126(50.6%)이였고 신증후군 그룹 중 IR 그룹은 G/G 29(34.1%), A/A 15(17.7%), G/A 41(48.2%)이였으며 FR 그룹에서는 G/G 17(27.9%), A/A 18(29.5%), G/A 26(42.6%)이었다. 단지 PAI-1 gene의 A-844G의 다형성중 A/A 유전자형이 신증후군 환아 중 FR군에서만 대조군에 비하여 유의하게 증가하였다(16.9% vs 29.5%, OR=2.06, P=0.0251). 반면 A/G 유전자형(OR=0.73, P=0.2639)이나 G/G 유전자형(OR=0.80, P=0.4828)은 통계학적인 의의가 없었고 IR군에서 대조군에 비하여 A/A(OR=1.06, P=0.8690), A/G(OR=0.91, P=0.7063), G/G(OR=1.07, P=0.7880)으로 모두 통계학적으로 유의하지 않았다. 결 론 : A-844G AA 유전자형을 가진 신증후군 환자와 FR와 통계적인 상관관계가 있음을 알수 있었다. 이는 향후 PAI-1 유전자와 과응고성과 관련된 생화학적 검사와의 연관성에 대한 추가적인 조사와 특히, 신증후군의 과응고성과 신증후군 재발과의 연관성이 있는지에 관한 연구가 더 필요할 것으로 사료된다. Purpose : Hypercoagulability is present in patients with nephrotic syndrome. Plasminogen activator inhibitor type 1(PAI-1) is a major inhibitor of plasminogen activators. PAI-1 inactivates both tissue plasminogen activator(tPA) and urokinase plasminogen activator(uPA) by rapid formation of inactive 1:1 stoichiometric complexes. Recently some studies showed that the enhanced PAI-1 expression may be involved in the intraglomerular fibrinogen/fibrinrelated antigen deposition seen in nephrotic syndrome. Methods : PAI-1 gene promoter -844(G/A) polymorphism was evaluated in 146 children with minimal change nephrotic syndrome(MCNS) and 230 control subjects. The patients with MCNS were subdivided into 85 infrequent-relapser(IR) group and 61 frequent relapser(FR) group. PCR of PAI-1 gene promoter region including -844(G/A) and RFLP using the restriction enzyme Xhol were performed for each DNA samples extracted from the groups. Results : The distribution of PAI-1 genotype in the control group was G/G 81(32.5%), A/A 42(16.9%), and G/A 126(50.6%). The distribution of PAI-1 genotypes in the IR group of MCNS was G/G 29(34.1%), A/A 15(17.7%), and G/A 41(48.2%). The distribution of PAI-1 genotype in the FR group of MCNS was G/G 17(27.9%), A/A 18(29.5%), and G/A 26(42.6%). There was a significantly increased frequency of A/A genotype(P=0.0251) in the FR group of MCNS. Conclusion : Our results indicate that the PAI-1 gene promoter A/A genotype may be associated with the FR in MCNS.
고현명,주소현,김빛나,박진희,반건호,김한영,이종민,한설희,신찬영,박승화,김희진 고려인삼학회 2013 Journal of Ginseng Research Vol.37 No.4
Korean Red Ginseng (KRG) is an oriental herbal preparation obtained from Panax ginseng Meyer (Araliaceae). To expand our understanding of the action of KRG on central nervous system (CNS) function, we examined the effects of KRG on tissue plasminogen activator (tPA)/plasminogen activator inhibitor-1 (PAI-1) expression in rat primary astrocytes. KRG extract was treated in cultured rat primary astrocytes and neuron in a concentration range of 0.1 to 1.0 mg/mL and the expression of functional tPA/PAI-1 was examined by casein zymography, Western blot and reverse transcription-polymerase chain reaction. KRG extracts increased PAI-1 expression in rat primary astrocytes in a concentration dependent manner (0.1 to 1.0 mg/mL) without affecting the expression of tPA itself. Treatment of 1.0 mg/mL KRG increased PAI-1 protein expression in rat primary astrocytes to 319.3±65.9%as compared with control. The increased PAI-1 expression mediated the overall decrease in tPA activity in rat primary astrocytes. Due to the lack of PAI-1 expression in neuron, KRG did not affect tPA activity in neuron. KRG treatment induced a concentration dependent activation of PI3K, p38, ERK1/2, and JNK in rat primary astrocytes and treatment of PI3K or MAPK inhibitors such as LY294002, U0126, SB203580, and SP600125 (10 μM each), significantly inhibited 1.0 mg/mL KRG-induced expression of PAI-1 and down-regulation of tPA activity in rat primary astrocytes. Furthermore, compound K but not other ginsenosides such as Rb1and Rg1 induced PAI-1 expression. KRG-induced up-regulation of PAI-1 in astrocytes may play important role in the regulation of overall tPA activity in brain, which might underlie some of the beneficial effects of KRG on CNS such as neuroprotection in ischemia and brain damaging condition as well as prevention or recovery from addiction.
Ko, Hyun Myung,Joo, So Hyun,Kim, Pitna,Park, Jin Hee,Kim, Hee Jin,Bahn, Geon Ho,Kim, Hahn Young,Lee, Jongmin,Han, Seol-Heui,Shin, Chan Young,Park, Seung Hwa The Korean Society of Ginseng 2013 Journal of Ginseng Research Vol.37 No.4
Korean Red Ginseng (KRG) is an oriental herbal preparation obtained from Panax ginseng Meyer (Araliaceae). To expand our understanding of the action of KRG on central nervous system (CNS) function, we examined the effects of KRG on tissue plasminogen activator (tPA)/plasminogen activator inhibitor-1 (PAI-1) expression in rat primary astrocytes. KRG extract was treated in cultured rat primary astrocytes and neuron in a concentration range of 0.1 to 1.0 mg/mL and the expression of functional tPA/PAI-1 was examined by casein zymography, Western blot and reverse transcription-polymerase chain reaction. KRG extracts increased PAI-1 expression in rat primary astrocytes in a concentration dependent manner (0.1 to 1.0 mg/mL) without affecting the expression of tPA itself. Treatment of 1.0 mg/mL KRG increased PAI-1 protein expression in rat primary astrocytes to $319.3{\pm}65.9%$ as compared with control. The increased PAI-1 expression mediated the overall decrease in tPA activity in rat primary astrocytes. Due to the lack of PAI-1 expression in neuron, KRG did not affect tPA activity in neuron. KRG treatment induced a concentration dependent activation of PI3K, p38, ERK1/2, and JNK in rat primary astrocytes and treatment of PI3K or MAPK inhibitors such as LY294002, U0126, SB203580, and SP600125 (10 ${\mu}M$ each), significantly inhibited 1.0 mg/mL KRG-induced expression of PAI-1 and down-regulation of tPA activity in rat primary astrocytes. Furthermore, compound K but not other ginsenosides such as Rb1 and Rg1 induced PAI-1 expression. KRG-induced up-regulation of PAI-1 in astrocytes may play important role in the regulation of overall tPA activity in brain, which might underlie some of the beneficial effects of KRG on CNS such as neuroprotection in ischemia and brain damaging condition as well as prevention or recovery from addiction.
Hyun Myung Ko,So Hyun Joo,Pitna Kim,Jin Hee Park,Hee Jin Kim,Geon Ho Bahn,Hahn Young Kim,Jongmin Lee,Seol-Heui Han,Chan Young Shin,Seung Hwa Park 고려인삼학회 2013 Journal of Ginseng Research Vol.37 No.4
Korean Red Ginseng (KRG) is an oriental herbal preparation obtained from Panax ginseng Meyer (Araliaceae). To expand our understanding of the action of KRG on central nervous system (CNS) function, we examined the effects of KRG on tissue plasminogen activator (tPA)/plasminogen activator inhibitor-1 (PAI-1) expression in rat primary astrocytes. KRG extract was treated in cultured rat primary astrocytes and neuron in a concentration range of 0.1 to 1.0 mg/mL and the expression of functional tPA/PAI-1 was examined by casein zymography, Western blot and reverse transcription-polymerase chain reaction. KRG extracts increased PAI-1 expression in rat primary astrocytes in a concentration dependent manner (0.1 to 1.0 mg/mL) without affecting the expression of tPA itself. Treatment of 1.0 mg/mL KRG increased PAI-1 protein expression in rat primary astrocytes to 319.3±65.9% as compared with control. The increased PAI-1 expression mediated the overall decrease in tPA activity in rat primary astrocytes. Due to the lack of PAI-1 expression in neuron, KRG did not affect tPA activity in neuron. KRG treatment induced a concentration dependent activation of PI3K, p38, ERK1/2, and JNK in rat primary astrocytes and treatment of PI3K or MAPK inhibitors such as LY294002, U0126, SB203580, and SP600125 (10 μM each), significantly inhibited 1.0 mg/mL KRG-induced expression of PAI-1 and down-regulation of tPA activity in rat primary astrocytes. Furthermore, compound K but not other ginsenosides such as Rb1 and Rg1 induced PAI-1 expression. KRG-induced up-regulation of PAI-1 in astrocytes may play important role in the regulation of overall tPA activity in brain, which might underlie some of the beneficial effects of KRG on CNS such as neuroprotection in ischemia and brain damaging condition as well as prevention or recovery from addiction.
( Eun Ran Kim ),( Mun Hee Yang ),( Yeun Jung Lim ),( Jin Hee Lee ),( Dong Kyung Chang ),( Young Ho Kim ),( Hee Jung Son ),( Jae J Kim ),( Jong Chul Rhee ),( Jin Yong Kim ) The Editorial Office of Gut and Liver 2013 Gut and Liver Vol.7 No.5
Background/Aims: Plasminogen activator inhibitor-1 (PAI-1) is important for tumor growth, Invasion, and metastasis. In this study, we investigated the relationship between plasma levels of PAI-1 and colorectal adenomas. Methods: We reviewed the medical records of 3,136 subjects who underwent colonoscopy as a screening exam. The subjects were classified into a case group with adenomas (n=990) and a control group (n=2,146). Plasma PAI-1 levels were categorized into three groups based on tertile. Results: The plasma levels of PAI-1 were significantly higher in adenoma cases than in controls (p=0.023). The prevalence of colorec-tal adenomas increased significantly with increasing levels of PAI-1 (p=0.038). In the adenoma group, advanced patho-logic features, size, and number of adenomas did not differ among the three groups based on tertiles for plasma PAI-1 levels. Using multivariate analysis, we found that plasma level of PAI-1 was not associated with the risk of colorectal adenomas (p=0.675). Adjusted odds ratios for colorectal ad-enomas according to increasing plasma levels of PAI-1 were 0.980 (95% confidence interval [CI], 0.768 to 1.251) for the second-highest plasma level and 1.091 (95% CI, 0.898 to 1.326) for the highest level, compared with the lowest levels. Conclusions: These results suggest that elevated plasma PAI-1 levels are not associated with the risk of colorectal neo-plasms. (Gut Liver 2013;7:519-523)
Park, Je-Hyun,Seo, Ji-Yeon,Ha, Hun-Joo The Korean Society of Pharmacology 2010 The Korean Journal of Physiology & Pharmacology Vol.14 No.6
Excessive extracellular matrix (ECM) accumulation is the main feature of chronic renal disease including diabetic nephropathy. Plasminogen activator inhibitor (PAI)-1 is known to play an important role in renal ECM accumulation in part through suppression of plasmin generation and matrix metalloproteinase (MMP) activation. The present study examined the effect of PAI-1 antisense oligodeoxynucleotide (ODN) on fibronectin upregulation and plasmin/MMP suppression in primary mesangial cells cultured under high glucose (HG) or transforming growth factor (TGF)-${\beta}1$, major mediators of diabetic renal ECM accumulation. Growth arrested and synchronized rat primary mesangial cells were transfected with $1\;{\mu}M$ phosphorothioate-modified antisense or control mis-match ODN for 24 hours with cationic liposome and then stimulated with 30 mM D-glucose or 2 ng/ml TGF-${\beta}1$. PAl-1 or fibronectin protein was measured by Western blot analysis. Plasmin activity was determined using a synthetic fluorometric plasmin substrate and MMP-2 activity analyzed using zymography. HG and TGF-${\beta}1$ significantly increased PAI-1 and fibronectin protein expression as well as decreased plasmin and MMP-2 activity. Transient transfection of mesangial cells with PAI-1 antisense ODN, but not mis-match ODN, effectively reversed basal as well as HG- and TGF-${\beta}1$-induced suppression of plasmin and MMP-2 activity. Both basal and upregulated fibronectin secretion were also inhibited by PAI-1 antisense ODN. These data confirm that PAI-1 plays an important role in ECM accumulation in diabetic mesangium through suppression of protease activity and suggest that PAI-1 antisense ODN would be an effective therapeutic strategy for prevention of renal fibrosis including diabetic nephropathy.
( Hyun Ji Cho ),( Jeong Han Kang ),( Ji Hak Jeong ),( Yun Jeong Jeong ),( Kwan Kyu Park ),( Yoon Yub Park ),( Yong Suk Moon ),( Hong Tae Kim ),( Il Kyung Chung ),( Cheorl Ho Kim ),( Hyeun Wook Chang ) 영남대학교 약품개발연구소 2012 영남대학교 약품개발연구소 연구업적집 Vol.22 No.0
Fibrosis is induced by the excessive and abnormal deposition of extracellular matrix (ECM) with various growth factors in tissues. Transforming growth factor-β1 (TGF-β1), the growth factor involved in fibrosis, modulates ECM synthesis and accumulation. TGF-β1 enhances the production of stimulators of ECM synthesis such as plasminogen activator inhibitor type 1 (PAI-1). As such, PAI-1 expressiondirectly influences the proteolysis, invasion, and accumulation of ECM. It was shown in this study thatascochlorin, a prenylpenl antiobiotic, prevents the expression of profibrotic factors, such as PAI-1 and collagen type I, and that the TGF-β1-induced PAI-1 promoter activity is inhibited by ascochlorin.Ascochlorin abolishes the phosphorylation of the EGFR-MEK-ERK signaling pathway to regulate the TGF-β1-induced expression of PAI-1 without the inhibition of TβRII phosphorylation. Furthermore, the MEK inhibitor and EGFR siRNA block PAI-1 expression, and the Raf-1, MEK, and ERK signaling pathways for the regulation of PAI-1 expression. Ascochlorin suppresses the matrix metalloproteinases (MMPs) activity to activate the heparin-binding EGF-like growth factor (HB-EGF), to induce the phosphorylation of EGFR, and the MMPs inhibitor suppresses EGFR phosphorylation and the PAI-1 mRNA levels. These results suggest that ascochlorin prevents the expression of PAI-1via the inhibition of an EGFR-dependent signal transduction pathway activated by MMPs.
박제현,하헌주,서지현 대한약리학회 2010 The Korean Journal of Physiology & Pharmacology Vol.14 No.6
Excessive extracellular matrix (ECM) accumulation is the main feature of chronic renal disease including diabetic nephropathy. Plasminogen activator inhibitor (PAI)-1 is known to play an important role in renal ECM accumulation in part through suppression of plasmin generation and matrix metalloproteinase (MMP) activation. The present study examined the effect of PAI-1 antisense oligodeoxynucleotide (ODN) on fibronectin upregulation and plasmin/MMP suppression in primary mesangial cells cultured under high glucose (HG) or transforming growth factor (TGF)-β1, major mediators of diabetic renal ECM accumulation. Growth arrested and synchronized rat primary mesangial cells were transfected with 1μM phosphorothioate-modified antisense or control mis-match ODN for 24 hours with cationic liposome and then stimulated with 30 mM D-glucose or 2 ng/ml TGF-β1. PAI-1 or fibronectin protein was measured by Western blot analysis. Plasmin activity was determined using a synthetic fluorometric plasmin substrate and MMP-2 activity analyzed using zymography. HG and TGF-β1 significantly increased PAI-1 and fibronectin protein expression as well as decreased plasmin and MMP-2 activity. Transient transfection of mesangial cells with PAI-1 antisense ODN, but not mis-match ODN, effectively reversed basal as well as HG- and TGF-β1-induced suppression of plasmin and MMP-2 activity. Both basal and upregulated fibronectin secretion were also inhibited by PAI-1 antisense ODN. These data confirm that PAI-1 plays an important role in ECM accumulation in diabetic mesangium through suppression of protease activity and suggest that PAI-1 antisense ODN would be an effective therapeutic strategy for prevention of renal fibrosis including diabetic nephropathy.