期刊文献+

低切应力作用下体外培养动脉的内皮素表达 被引量:2

EXPRESSION OF ENDOTHELIN IN ORGAN-CULTURED ARTERY UNDER LOW SHEAR STRESS
下载PDF
导出
摘要 研究了切应力对完整血管的生物学作用以及应力引起血管重建过程中内皮素(ET)的变化。采用血管体外应力培养系统,将一段完整的猪颈总动脉在体外进行培养,设切应力分别为2Pa(S20组)和0.5Pa(S5组),设置2、4、6、8、10、12、14、16和18h共9个时相观察点,非平衡法放射免疫检测灌流液中的ET含量。通过Logistic曲线方程拟合,分析切应力作用下完整动脉ET表达变化规律。结果显示:S20组ET总体变化不明显;S5组分泌速率在前12.37h内明显上升,而后又逐渐下降趋于稳定,且始终高于S20组。说明低切应力作用下ET的表达及分泌增高。结果提示,在低切应力引起的血管重建中,ET可能起着重要作用。 The biological effect of shear strees on intact artery and the change of Endothelin (ET) during the stress-induced vascular remodeling was studied. The common carotid arteries of pigs were cultured with a artery organ-culture system under different shear stress, 0.5 and 2 Pa respectively, 1.33×10-4 Pa of pressure and stable flow in vitro. Cultured for 2, 4, 6, 8, 10, 12, 14, 16 and 18 h, the content of ET in the perfusate was examined with radio-immunity method, and the data were described by Logistic equation. The secretion velocity of ET didn't change obviously in S20 group, while in S5 group it rised evidently at the first 12 h and then descend to a stable level which was higher than S20 group all the time. The secretion and expression of ET rised under low shear stress. It may play an important role in vascular remodeling induced by low shear stress.
出处 《生物物理学报》 CAS CSCD 北大核心 2005年第3期200-204,共5页 Acta Biophysica Sinica
基金 国家自然科学基金资助项目(10132020 30100060)
关键词 切应力 颈总动脉 血管内皮细胞 内皮素 Shear stress Common carotid artery Endothelial cell Endothelin
  • 相关文献

参考文献10

  • 1Yanagisawa N, Inoue A, Takuwa Y, Mitsui Y, Kobayashi M,Masaki T. The human preproendothelin-1 possible regulation by endothelial phosphoinositide turnover signaling. J Cardiovasc Pharmacol, 1989,13,supply 5:s13~s17
  • 2Wang GX, Cai SX, Wang PQ, Ouyang KQ, Wang YL, Xu SR. Shear-induced changes in endothelin-1 secretion of microvascular endothelial cells. Microvasc Res, 2002,63 (2):209~217
  • 3Masatsugu K, Itoh H, Chun TH, Saito T, Yamashita J, Doi K. Shear stress attenuates endothelin and endothelin-converting enzyme expression through oxidative stress. Regul Peptides, 2003,111(1-3):13~19
  • 4刘波,姜宗来,张炎,刘艳春,覃开荣,杨向群.血管体外应力培养系统:一种新的血管生物力学实验模型[J].医用生物力学,2001,16(4):225-230. 被引量:21
  • 5刘波,姜宗来,严志强,刘艳春,张炎,张峰,李玉泉.低切应力对体外培养动脉形态学重建的影响[J].解剖学报,2004,35(3):297-301. 被引量:3
  • 6刘艳春,刘波,张炎,姜宗来.低切应力对体外培养血管中膜平滑肌细胞原癌基因c-Fos和c-Myc表达的影响[J].生物物理学报,2004,20(6):434-438. 被引量:5
  • 7王贵学,罗向东,蔡绍皙,欧阳克清,王远亮,吴云鹏.内皮细胞代谢与剪切作用时间的相关性[J].生物物理学报,1999,15(2):406-413. 被引量:5
  • 8Sugo S, Minamino N, Shoji H, IsumiY, Nakao K, Kangawa K, Matsuo H. Regulation of endothelin-1 production in cultured vascular smooth muscle cells. J Cardiovasc Pharmacol,2001,37(1):25~40
  • 9Davies PF, Ganz P, Diehl PS. Methods in laboratory investigation: reversible microcarrier mediated junctional communication between endothelial and smooth muscle cell monolayers: an in vitro model of vascular cell interactions. Lab Inves, 1985,53(6):710~718
  • 10Nerem RM, Alexander RW, Chappell DC, Medford RM,Varner SE, Taylor WR. The study of the influence of flow on vascular endothelial biology. Am J Med Sci, 1998,316(3):169~175

二级参考文献15

  • 1Han H C,Annals of Biomedical Engineering,2001年,29卷,467页
  • 2Davies P F,Laboratory Investigation,1985年,85卷,6期,710~718页
  • 3Feng Y C,Biodynamics:Circulation,1984年,136~142页
  • 4Birukov KG, Stephanie L. Increased pressure induces sustained protein kinase C-independent herbimycin A-sensitive activation of extracellular signal-related kinase 1/2 in the rabbit aorta in organ culture. Circ Res, 1997,81(6):895~903
  • 5Giddens DP, Zarins CK, Glagov S. The role of fluid mechanics in the localization and detection of atherosclerosis.J Biomech Eng, 1993,115:588-594
  • 6Mangiarua EI, Galagedera NJ, Patterson JR. Increased intraluminal pressure induces DNA synthesis and c-fos expression in perfused rat aorta. Arch Physiol Biochem, 1996,104(7):838-844
  • 7Ranjan V, Diamond SL. Fluid shear stress induces synthesis and nuclear localization of c-fos in culture human endothelial cells. Biochem Biophys Res Commun, 1993,196(1): 79-84
  • 8Li C, Zeng Y, Hu J,Yu H. Effect of fluid shear stress on expression of proto-oncogene c-fos and c-myc in cultured human umbilical vein endotheliao cells. C lin Hemorheol Microcirc, 2002, 26(2): 117-123
  • 9Papadaki M, Eskin SG. Effect of fluid shear stress on gene regulation of vascular cells. Biotechnol Prog, 1997,13 (3):209-221
  • 10Resnick N, Gmbrone MA Jr. Hemodynamic forces are complex regulations of endothelial gene expression. FASEV J,1995,9(10):874-882

共引文献29

同被引文献45

引证文献2

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部