1) Mitochondrial transmembrane potential
线粒体内膜跨膜电位
2) mitochondrial transmembrane potential(ΔΨm)
线粒体内膜跨膜电位(△Ψm)
3) mitochondria
线粒体
1.
The action of hexachlorobenzene on the antioxidant enzymes in mitochondria isolated from fish liver;
六氯苯对离体鱼肝线粒体抗氧化酶的作用
2.
Oxidative damage of mitochondria and micriosome in testis cells induced by nickel sulfate in rats;
硫酸镍致大鼠睾丸细胞线粒体及微粒体损伤
3.
The influence of benzidine on the activities of the antioxidative enzymes and their isoenzymes of the mitochondria.;
联苯胺对线粒体抗氧化酶活性及同工酶的影响
4) mitochondrion
线粒体
1.
The Advancement on Mitochondrion of Cryptosporidium;
隐孢子虫线粒体研究进展
2.
Study of mitochondrion and nucleus damage and caspase-3 expression in hippocampal CA_3 neurons of kainic acid induced epileptic rats;
海人酸致癎大鼠海马CA_3区神经元线粒体与细胞核损伤及caspase-3表达的研究
3.
An experimental study of ultrastructural change of mitochondrion of detrusor in diabetes rats;
糖尿病大鼠逼尿肌线粒体超微结构及基质的改变
5) mitochondrial DNA
线粒体DNA
1.
Variation of mitochondrial DNA copy number in esophageal squamous cell carcinoma tissue;
食管鳞状细胞癌组织中线粒体DNA含量及拷贝数量的变化
2.
Proceedings of Human Mitochondrial DNA Heteroplasmy and its Applications to Forensic Medicine;
人类线粒体DNA异质性研究进展及其法医学应用
3.
Change in the Mitochondrial DNA Copy Number and its Significance in Esophageal Squamous Cell Carcinoma;
食管鳞癌组织中线粒体DNA拷贝数量的变化及意义
6) Mitochondrial
线粒体
1.
Effect of Xanthomonas L4 Phytotoxin on Mitochondrial Stoma and Cell Wall of Amaranthus Retroflex(Redroot Amarant);
黄单胞菌L4毒素对反枝苋线粒体及细胞壁和表皮气孔的影响
2.
Analysis of mitochondrial DNA gene mutations in hearing loss induced by military noise;
军事噪声性听力损失的线粒体基因变异分析
3.
Effects of pioglitazone preconditioning on ischemia/reperfusion-induced myocardial apoptosis and mitochondrial ATP-sensitive potassium channel in rats;
吡格列酮预处理对大鼠缺血/再灌注心肌细胞凋亡及线粒体ATP敏感性钾通道的影响
参考词条
补充资料:跨膜电位
分子式:
CAS号:
性质:膜(主要指生物膜)两侧的电位差。它取决于膜内所带的电荷与膜两侧所带的电荷,后一种包含膜表面和相邻溶液所带的电荷。例如在安静状态的神经膜的跨膜电位大约为-75mV,表示细胞内侧相对于外侧低75mV,膜内侧显负电性而外侧显正电性。当神经细胞受激时,跨膜电位从-75mV变成了+50mV,膜内侧显正电性而外侧显负电性,此时将使膜内侧过多的阳离子挤出到外侧。
CAS号:
性质:膜(主要指生物膜)两侧的电位差。它取决于膜内所带的电荷与膜两侧所带的电荷,后一种包含膜表面和相邻溶液所带的电荷。例如在安静状态的神经膜的跨膜电位大约为-75mV,表示细胞内侧相对于外侧低75mV,膜内侧显负电性而外侧显正电性。当神经细胞受激时,跨膜电位从-75mV变成了+50mV,膜内侧显正电性而外侧显负电性,此时将使膜内侧过多的阳离子挤出到外侧。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。