酪氨酸激酶型受体、G蛋白偶联受体和离子通道型受体是细胞表面三类主要受体。
Receptor tyrosine kinases (RTK), G protein-coupled receptors (GPCR) and ion channel receptors are main cell surface receptors.
关于二型离子通道视紫质的研究最近进展顺利:它能帮助识别一种脑回路,这种脑回路激活时可缓解帕金森氏症的症状。
Channelrhodopsin-2 works swimmingly: it recently helped identify a brain circuit that, when activated, may ease symptoms of Parkinson's.
型钙离子通道在成牙本质细胞的钙离子转运过程中起重要作用,参与了牙本质矿化过程。
L-type calcium channel played a very important role in intracellular calcium transportation of odontoblast cells and involved in the process of the dentin mineralization.
结论通过细胞膜上L型钙离子通道进行跨膜信号传递,NPY-Y1受体介导促血管平滑肌细胞增殖作用。
Through the signal pathway of L-type calcium channel on the cytomembrane, NPY-Y1 receptor could increase the proliferation of SMCs.
目的:建立大鼠心肌细胞分离方法,用于膜片钳实验,并记录L型钙离子通道电流。
Objective: to devise a method to isolate calcium-tolerant cardiomyocytes from SD rats for the experiment of patch clamp, and record the currents of L-type calcium channels.
星型胶质细胞虽然没有动作电位,但是可以表达多种受体和离子通道,并且以细胞内钙波传递的方式来响应各类刺激。
Although lacking action potentials, astrocytes express various receptors and ion channels and exhibit intercellular propagating Ca2 + waves in response to various stimuli.
已知aba为重要的逆境信号物质,也为调控保卫细胞膜上s -型阴离子通道的物质。
ABA is the known signal substance in the adversity and can modulate the S-type anion channel situated in the guard cells.
目的:观察葛根素对大鼠L型钙离子通道的作用。
Objective: To observe the effect of Puerari non L-type calcium channel in isolated rat ventricular myocytes.
方法给一类酪氨酸脱氢酶阳性的神经细胞(一种中枢神经源细胞),又称CAD细胞,引入由DNA编码的野生型和突变型离子通道。
Methods To introduce DNA encoding the wild- type and mutant channel into immortalized tyrosine hydroxylase- positive CNS- derived neurons, CAD cells.
结论T型钙离子通道对于心肌细胞以及心脏传导组织的形成起到了一定的作用。
Conclusion T-type calcium channels play an important role in the morphogenesis of myocardium and cardiac conduction system during mouse embryonic heart development.
结论T型钙离子通道对于心肌细胞以及心脏传导组织的形成起到了一定的作用。
Conclusion T-type calcium channels play an important role in the morphogenesis of myocardium and cardiac conduction system during mouse embryonic heart development.
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