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中国临床药理学与治疗学 ›› 2003, Vol. 8 ›› Issue (2): 125-128.

• 研究原著 • 上一篇    下一篇

姜黄素对心脏压力过负荷大鼠主动脉细胞外基质的影响1

叶敏利, 李庆平   

  1. 南京医科大学药理学系, 南京 210029, 江苏
  • 收稿日期:2002-11-21 修回日期:2002-12-12 出版日期:2003-04-26 发布日期:2020-11-25
  • 通讯作者: 李庆平, 女, 博士, 副教授, 硕士生导师, 研究方向为心血管重构的病因学和实验治疗学。Tel:025-6662883 E-mail:qpli@njmu.edu.cn
  • 作者简介:叶敏利, 女, 硕士研究生。
  • 基金资助:
    1 国家973 计划(№G1998051112) 子项目; 江苏省自然科学基金项目(№BK97049)

Effects of curcumin on the extracellular matrix of aorta in cardiac overloaded rats1

YE Min-Li, LI Qing-Ping   

  1. Department of Pharmacology, Nanjing Medical University, Nanjing 210029, Jiangsu
  • Received:2002-11-21 Revised:2002-12-12 Online:2003-04-26 Published:2020-11-25

摘要: 目的: 探讨姜黄素对心脏压力过负荷大鼠主动脉细胞外基质的影响。方法: 腹主动脉部分结扎致大鼠心脏压力负荷增高, 姜黄素灌胃3 wk 后测定大鼠单位长度主动脉湿重 体重比值;Woessner 法测主动脉胶原含量, 酶谱半定量测定法测基质金属蛋白酶(MMP2) 活性。结果: 模型组主动脉湿重 体重比值增加、组织胶原含量增高、主动脉MMP2 活性下降。姜黄素灌胃3 wk 后降低主动脉湿重 体重比值, 主动脉胶原含量降低, MMP2 活性改变不明显。结论: 姜黄素可逆转心脏压力过负荷大鼠主动脉的肥厚, 其机制主要与抑制胶原合成有关。

关键词: 药理学, 姜黄素, 压力过负荷, 细胞外基质, 胶原, 基质金属蛋白酶

Abstract: AIM: To study the effect of curcumin onthe extracellular matrix of aorta in cardiac overloadedrats. METHODS: Cardiac overloaded model was madeby partial click of the abdominal aorta in Sprague-Dawleyrats.Curcmin, 100mg·kg-1·d-1 for 3 weeks, was givenby po 1 week after the click operation.The ratio of aortawet weight to body weight was calculated;the collagencontent was measured with Woessner's method and theactivity of matrix metallproteinase-2 was analyzed with zymography. RESULTS: In cardiac overloaded rats, thewet weight and collagen content of aorta was increased,and the activity of matrix metallproteinse-2 of aorta wasdecreased.Compared with the cardiac overloaded ratswithout any drugs, the increased weight and collagen contentof aorta was reversed, but the activity of matrix metallproteinse-2 of aorta was seldom changed in curcumintreatedrats. CONCLUSION: Curcumin can reverse thehypertrophy of aorta of cardiac overloaded rats mainly bymeans of inhibiting the synthesis of collagen.

Key words: pharmacology, curcumin, overload, extracellular matrix, collagen, matrix metallproteinase

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