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1)  permeability transition pore
膜通透性转运孔
1.
Effect of Light-activated BPD-MA on mitochondria permeability transition pore of human bladder cancer cells;
光活化BPD-MA对膀胱癌细胞线粒体膜通透性转运孔的影响
2)  mitochondrial permeability transition pore
线粒体膜通透性转换孔
1.
The effect of copper on the mitochondrial permeability transition pore was significant,resulting in swelling of mitochondria to some degree which was manifested by decr.
结果显示,铜对线粒体膜通透性转换孔有较显著的影响,造成线粒体不同程度的肿胀,表现为线粒体悬液在540 nm处的吸光值下降,且铜浓度越高,吸光值下降越明显,在孵育6 min后3种浓度的吸光值下降百分比差异显著(P<0。
3)  permeability transport
通透性转运
4)  Permeability transition pore
通透性转换孔
1.
Changes of myocardial mitochondrial permeability transition pore and its mechanism in the early stage after severe burns;
大鼠严重烧伤早期心肌线粒体通透性转换孔状态改变及其机制
2.
Mitochondrial permeability transition pore(MPTP),composed of many kinds of protein,is a kind of non-selective and high conductive channel between the inner and out membranes,which also be called megachannel of mitochondria.
线粒体通透性转换孔,又称线粒体巨型通道,是横跨线粒体内外膜之间的非选择性高导电性通道,由多种蛋白质复合组成。
5)  permeability transition pore
通透性转变孔道
1.
As_2O_3-induced permeability transition pore opening in mitochondria depends on Ca~(2+);
钙介导As_2O_3诱导的线粒体通透性转变孔道开放
2.
BACKGROUND & OBJECTIVE: Permeability transition pore(PTP) is central for apoptosis by acting as a good candidate pathway for therelease of cytochrome c and apoptosis-induction factors from mitochondria.
背景与目的:线粒体通透性转变孔道(permeabilitytransitionpore,PTP)是线粒体释放细胞色素c和凋亡诱导因子的主要途径,亚砷酸盐可能通过PTP影响细胞凋亡,为了揭示其诱导PTP开放的机制,本实验研究了Ca2+介导的线粒体Ca2+释放(Ca2+-inducedCa2+releasefrommitochondria,mCICR)在As2O3介导的PTP开放及细胞色素C释放中的作用。
6)  MPT
膜通透性转换
1.
Aims Using the swimming model, the research focused on the effect of aerobic training on reactive oxygen species (ROS) generation rate of liver mitochondria and the effect of ROS on mitochondrial membrane permeability transition (MPT) in aging rats.
目的 :以游泳训练为有氧运动模型 ,观察运动对衰老大鼠肝脏线粒体活性氧 (ROS)产生的影响及ROS对线粒体膜通透性转换 (MPT)的作用 ,以探讨运动延缓衰老的线粒体膜分子机理。
补充资料:膜通透性
分子式:
CAS号:

性质:膜(主要为生物膜)的一种基本性质。它反映分子、离子可以通过膜的能力。它可以用每种物质在每秒内通过每平方厘米膜的物质的量即跨膜通量(mol/s·cm2)表示。某一物质跨膜通量的大小,除了取决于他们在膜两侧的浓度差外,还受这些物质的脂溶性、温度等其他因素影响。

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