1) caveolae
质膜微囊
1.
Separation of Caveolae and Atomic Force Microscopy Study of Them;
质膜微囊的分离及原子力显微镜研究
2.
Previously, we have found that lipid rafts/caveolae were essential for IGF-1 receptor signaling during 3T3-L1 preadipocytes differentiation induction.
已有的大量文献表明,脂质筏和质膜微囊(统称为脂质微区)在不同的跨膜信号通路中都起到十分重要的作用。
3.
Lipid rafts and caveolae are found to be essential for insulin-like growth factor (IGF)-1 receptor signaling during 3T3-L1 preadipocyte differentiation induction.
目前的研究表明膜上受体在介导跨膜信号转导时,通常是在细胞质膜上的脂质筏和质膜微囊结构中进行的。
2) plasma membrane vesicles
质膜微囊
1.
The relationship between Ca 2+ dependent ATPase(Ca 2+ ATPase)and ATP dependent Ca 2+ transport in plasma membrane vesicles isolated from pulp cell of Malus pumila fruits and the influence of hormones on this enzyme were investigated by using 45 Ca 2+ tracing.
应用45Ca2 + 示踪法研究了苹果果肉质膜微囊依赖于Ca2+ 的ATP 酶(Ca2+ATP酶)活性与Ca2+ 运输之间的关系及激素对该酶活性的影响。
3) Caveolae
细胞质膜微囊
1.
Plasmalemmal Vesicles (caveolae)and Signal Transduction .;
细胞质膜微囊与信号转导
2.
Estrogen also has potent nongenomic effects on eNOS activity mediated by a subpopulation of ERα localized to caveolae in endothelial cells.
雌激素既可通过基因效应调节eNOS的表达,也可通过位于内皮细胞质膜微囊(caveolae)的ERα的一个亚群介导的非基因效应调节eNOS的活性。
3.
Caveolin-1(Cav-1) is a scaffold protein of caveolae that acts as a tumor modulator by interacting with cell adhesion molecules and signaling receptors.
小窝蛋白(Cav-1)是一种细胞质膜微囊(caveolae)表面标记蛋白,通过与细胞的黏附分子和信号受体相互作用调整肿瘤发生。
4) Caveolin 1
质膜微囊蛋白1
5) Caveolins
细胞质膜微囊蛋白
6) Caveolin-1
细胞质膜微囊蛋白1
补充资料:Kerber带孔球囊微导管技术
Kerber带孔球囊微导管技术
介入放射学技术。颅内栓塞治疗用的特殊导管技术。颅内AVM用IBCA栓塞时,既要求导管软而细,又要求导向性能好,要求到位后导管顺利射出IBCA。Kerber 等在Serbinenk可脱性球囊的技术上改良制成带孔球囊导管系统。其目的是:带孔球囊套在柔软的Pursil导管上,注射时球囊有瞬间充盈,可借助血液冲击导向到病变部位,同时对比剂还可以从球囊端的端孔处射出,可行超选择性造影和注射IBCA。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条