中文English
ISSN 1001-5256 (Print)
ISSN 2097-3497 (Online)
CN 22-1108/R

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

5-脂氧合酶激活蛋白选择性抑制剂MK886对酒精性肝病小鼠模型的影响

杨淑娟 郭雅玲 付珊 何英利 赵英仁 田臻

引用本文:
Citation:

5-脂氧合酶激活蛋白选择性抑制剂MK886对酒精性肝病小鼠模型的影响

DOI: 10.3969/j.issn.1001-5256.2019.08.028
基金项目: 

国家自然科学基金(81800548); 

详细信息
  • 中图分类号: R575;R-332

Role of the specific inhibitor of 5-lipoxygenase-activating protein MK886 in inhibiting alcoholic liver disease in mice

Research funding: 

 

  • 摘要:

    目的旨在探究5-脂氧合酶激活蛋白(FLAP)的选择性抑制剂MK886对小鼠酒精性肝病(ALD)的影响。方法 48只雄性昆明种小鼠随机分为4组,ALD组、ALD/MK886组给予Tipoe-Nanji酒精液体饲料,6周后酒精灌胃1次形成慢加急性ALD模型,对照组给予不含酒精的对照饲料,正常组给予普通饲料。小鼠开始摄入酒精2 d后,ALD/MK886组小鼠腹腔开始注射MK886(0. 01 mg/10 g,1次/d)。ALD组及ALD/MK886组酒精灌胃后9 h处死小鼠。检测血清中AST、ALT、乳酸脱氢酶(LDH)、TG及肝组织中TG和丙二醛(MDA)水平,肝组织行HE染色并进行病理评分,Western Blot法测定肝组织/Thp-1细胞中FLAP和5-脂氧合酶(5-LO)的表达水平,流式细胞法检测Thp-1细胞的凋亡水平。多组间比较采用单因素方差分析,方差齐时用LSD-t检验进行两两比较,方差不齐时采用Tamhane’T2进行检验。结果 ALD组、ALD/MK886组在造模第1周体质量减轻,随后逐渐增加,至造模结束时ALD组小鼠体质量和肝指数明显低于正常组和对照组(P值均<0...

     

  • [1] OSNA NA, DONOHUE TM Jr, KHARBANDA KK. Alcoholic liver disease:Pathogenesis and current management[J]. Alcohol Res, 2017, 38 (2) :147-161.
    [2] VASSALLO GA, TARLI C, RANDO MM, et a. Liver transplantation in patients with alcoholic liver disease:A retrospective study[J]. Alcohol Alcohol, 2018, 53 (2) :151-156.
    [3] National Workshop on Fatty Liver and Alcoholic Liver Disease, Chinese Society of Hepatology, Chinese Medical Association;Fatty Liver Expert Committee, Chinese Medical Doctor Association. Guidelines of prevention and treatment for alcoholic liver disease:A 2018 update[J]. J Clin Hepatol, 2018, 34 (5) :939-946. (in Chinese) 中华医学会肝病学分会脂肪肝和酒精性肝病学组, 中国医师协会脂肪性肝病专家委员会.酒精性肝病防治指南 (2018年更新版) [J].临床肝胆病杂志, 2018, 34 (5) :939-946.
    [4] STICKEL F, DATZ C, HAMPE J, et al. Pathophysiology and management of alcoholic liver disease:Update 2016[J]. Gut Liver, 2017, 11 (2) :173-188.
    [5] KOLIOS G, VALATAS V, KOUROUMALIS E. Role of Kupffer cells in the pathogenesis of liver disease[J]. World J Gastroenterol, 2006, 12 (46) :7413-7420.
    [6] BALA S, CSAK T, KODYS K, et al. Alcohol-induced miR-155 and HDAC11 inhibit negative regulators of the TLR4 pathway and lead to increased LPS responsiveness of Kupffer cells in alcoholic liver disease[J]. J Leukoc Biol, 2017, 102 (2) :487-498.
    [7] PARK JK, SHAO M, KIM MY, et al. An endoplasmic reticulum protein, Nogo-B, facilitates alcoholic liver disease through regulation of kupffer cell polarization[J]. Hepatology, 2017, 65 (5) :1720-1734.
    [8] SORGI CA, ZARINI S, MARTIN SA, et al. Dormant 5-lipoxygenase in inflammatory macrophages is triggered by exogenous arachidonic acid[J]. Sci Rep, 2017, 7 (1) :10981.
    [9] BRUNO F, ERRICO S, PACE S, et al. Structural insight into the optimization of ethyl 5-hydroxybenzo[g]indol-3-carboxylates and their bioisosteric analogues as 5-LO/m-PGES-1 dual inhibitors able to suppress inflammation[J]. Eur J Med Chem, 2018, 155:946-960.
    [10] TITOS E, CLRIA J, PLANAGUMA, et al. Inhibition of 5-lipoxygenase-activating protein abrogates experimental liver injury:Role of Kupffer cells[J]. J Leukoc Biol, 2005, 78 (4) :871-878.
    [11] LEO LM, ALMEIDA-CORRA S, CANETTI CA, et al. Agedependent relevance of endogenous 5-lipoxygenase derivatives in anxiety-like behavior in mice[J]. PLo S One, 2014, 9 (1) :e85009.
    [12] SUMMA KC, VOIGT RM, FORSYTH CB, et al. Disruption of the circadian clock in mice increases intestinal permeability and promotes alcohol-induced hepatic pathology and inflammation[J]. PLo S One, 2013, 8 (6) :e67102.
    [13] DESMET VJ, KNODELL RG, ISHAK KG, et al. Formulation and application of a numerical scoring system for assessing histological activity in asymptomatic chronic active hepatitis[Hepatology 1981; 1:431-435][J]. J Hepatol, 2003, 38 (4) :382-386.
    [14] MASARONE M, ROSATO V, DALLIO M, et al. Epidemiology and natural history of alcoholic liver disease[J]. Rev Recent Clin Trials, 2016, 11 (3) :167-174.
    [15] LOUVET A, MATHURIN P. Alcoholic liver disease:Mechanisms of injury and targeted treatment[J]. Nat Rev Gastroenterol Hepatol, 2015, 12 (4) :231-242.
    [16] SZABO G, PETRASEK J. Gut-liver axis and sterile signals in the development of alcoholic liver disease[J]. Alcohol Alcohol, 2017, 52 (4) :414-424.
    [17] LIN XX, CHEN D, ZHAO Q, et al. Genetic reasearch on the incidence of alcoholic liver disease[J]. Chin J Clin Pharmacol Ther, 2017, 22 (11) :1309-1314. (in Chinese) 林秀贤, 陈丹, 赵青, 等.影响酒精性肝病发病的遗传学研究进展[J].中国临床药理学与治疗学, 2017, 22 (11) :1309-1314.
    [18] NADARAJAN K, BALARAM P, KHOO BY. MK886 inhibits the pioglitazone-induced anti-invasion of MDA-MB-231 cells is associated with PPARα/γ, FGF4 and 5LOX[J]. Cytotechnology, 2016, 68 (5) :1771-1787.
    [19] DAGLAR GO, KAMA NA, ATLI M, et al. Effect of 5-lipoxygenase inhibition on Kupffer cell clearance capacity in obstructive jaundiced rats[J]. J Surg Res, 2001, 96 (2) :158-162.
    [20] ZHOU H, YU M, ZHAO J, et al. IRAKM-Mincle axis links cell death to inflammation:Pathophysiological implications for chronic alcoholic liver disease[J]. Hepatology, 2016, 64 (6) :1978-1993.
    [21] KOOP DR, KLOPFENSTEIN B, IIMURO Y, et al. Gadolinium chloride blocks alcohol-dependent liver toxicity in rats treated chronically with intragastric alcohol despite the induction of CYP2E1[J]. Mol Pharmacol, 1997, 51 (6) :944-950.
  • 加载中
计量
  • 文章访问数:  1259
  • HTML全文浏览量:  53
  • PDF下载量:  237
  • 被引次数: 0
出版历程
  • 收稿日期:  2019-03-19
  • 出版日期:  2019-08-20
  • 分享
  • 用微信扫码二维码

    分享至好友和朋友圈

目录

    /

    返回文章
    返回