期刊文献+

大电导钙离子激活钾通道在心血管疾病中的研究进展 被引量:3

Large conductance Ca2+-activated K+ channel in cardiovascular diseases
暂未订购
导出
摘要 冠状动脉平滑肌细胞膜上存在许多大电导钙离子激活钾(BKCa)通道,在维持细胞正常生理活动中起重要作用。研究发现当细胞膜去极化或/(和)细胞内钙离子增加时,BKCa通道激活,开放增加,钾离子外流,细胞膜超极化,血管舒张。而在高血压、糖尿病、缺氧、心力衰竭和老化等许多病理情况下,BKCa通道功能发生改变,从而影响对血管功能的调节。本文主要综述近年来BK通道在心血管疾病中的研究进展。 Large conductance Ca2+-activated K+channels (BKCa channel) are found to be abundantly expressed in the membrane of coronary vascular smooth muscle cells, and play an important role in the maintenance of cellular physiological functions. Evidence shows that cell membrane depolarization and/or increase in intra-cellular Ca2+ activates BKCa channels, then the opening of the channels enables K+efflux, thus finally, membrane hyperpolarization and vasodilation take place. However, the functions of BKCa channels are altered under some pathophysiological conditions, such as hypertension, diabetes mellitus, hypoxia, heart failure, aging and so on. This alteration exerts dramatic impacts on vascular functions. The paper mainly reviewed the recent research progress in BKCa channel in cardiovascular diseases.
出处 《中华老年多器官疾病杂志》 2014年第1期76-80,共5页 Chinese Journal of Multiple Organ Diseases in the Elderly
基金 国家自然科学基金(81070157 81370303) 江苏省自然科学基金(BK2011179) 江苏省人事厅“六大人才高峰”第七批高层次项目(006) 江苏省医学重点人才资助项目(RC201134)
关键词 大电导钙激活钾通道 心血管疾病 高血压 糖尿病 心力衰竭 衰老 large conductance calcium activated potassium channel cardiovascular diseases hypertension diabetes mellitus heart failure aging
  • 相关文献

参考文献3

二级参考文献41

  • 1Coccheri S. Approaches to prevention of cardiovascular complications and events in diabetes mellitus. Drugs 2007; 67: 997-1026.
  • 2Luscher TF, Creager MA, Beckman JA, Cosentino F. Diabetes and vascular disease: pathophysiology, clinical consequences, and medical therapy: Part II. Circulation 2003; 108: 1655-1661.
  • 3Ferguson SC, Blane A, Wardlaw J, Frier BM, Perros P, McCrimmon RJ, et al. Influence of an early-onset age of type 1 diabetes on cerebral structure and cognitive function. Diabetes Care 2005; 28: 1431-1437.
  • 4Teo KK, Liu L, Chow CK, Wang X, Islam S, Jiang L, et al. INTERHEART Investigators in China. Potentially modifiable risk factors associated with myocardial infarction in China: the INTERHEART China study. Heart 2009; 95: 1857-1864.
  • 5Jackson WF. Ion channels and vascular tone. Hypertension 2000; 35: 173-178.
  • 6Tanaka Y, Koike K, Toro L. MaxiK channel roles in blood vessel relaxations induced by endothelium-derived relaxing factors and their molecular mechanisms. J Smooth Muscle Res 2004; 40: 125-153.
  • 7Rothberg BS, Magleby KL. Voltage and Ca2+ activation of single large-conductance Ca2+-activated K+ channels described by a two-tiered allosteric gating mechanism. J Gen Physiol2000; 116: 75-100.
  • 8Knaus HG, Garcia-Calvo M, Kaczorowski GJ, Garcia ML. Subunit composition of the high conductance calcium-activated potassium channel from smooth muscle, a representative of the mSlo and slowpoke family of potassium channels. J Bioi Chem 1994; 269: 3921-3924.
  • 9Jiang Z, Wallner M, Meera P, Toro L. Human and rodent MaxiK channel beta-subunit genes: cloning and characterization. Genomics 1999; 55: 57-67.
  • 10Dworetzky SI, Boissard CG, Lum-Ragan JT, McKay MC, Post-Munson DJ, Trojnacki JT, et al. Phenotypic alteration of a human BK (hSlo) channel by hSlo~ subunit coexpression: changes in blocker sensitivity, activation/relaxation and inactivation kinetics, and protein kinase a modulation. J Neurosci 1996; 16: 4543-4550.

共引文献59

同被引文献24

引证文献3

二级引证文献57

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