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1)  Trk receptor
Trk受体
1.
Neurotrophic factor activates signal pathways of intracellular phosphoinositide 3-kinase and extracellular signal-regulated kinase after acting on Trk receptor tyrosine kinase.
神经营养因子作用于Trk受体酪氨酸激酶后能激活细胞内磷酸肌醇3-激酶、细胞外信号调节激酶等信号通路,促进神经元的存活和分化。
2)  Trk receptor family
Trk受体家族
3)  TRK sum rules
TRK和定则
4)  acceptor [英][ək'septə]  [美][ək'sɛptɚ]
受素;受体
5)  Receptor [英][rɪ'septə(r)]  [美][rɪ'sɛptɚ]
受体
1.
Synthesis and Cation Recognition of Bis(2-benzimidazolyl)methylene Derivatives as Fluorescence Receptors;
1,1-二(2-苯并咪唑基)-2-苯基乙烯衍生物荧光受体的合成与阳离子识别
2.
Synthesis of an Receptor Containing Chiral Bicyclic Guanidine for Amino Acids;
含手性双环胍的氨基酸受体的合成
3.
Variation of single nucleotide polymorphism of the insulin receptor gene and resistin gene with polycystic ovary syndrome;
多囊卵巢综合征患者胰岛素受体基因及抵抗素基因内含子变异的研究
6)  acceptor [英][ək'septə]  [美][ək'sɛptɚ]
受体
1.
Effect of the Growth Appearance of Acceptors on the Frequency of Wheat Transformation by Microprojectile Bombardment;
受体生长状态对小麦基因枪转化效率的影响
2.
This article from three levels of the acceptor before,the acceptor and the acceptor latter summarizes sports effects on the insulin resistance mechanism,in order to provide theoretical references for using scientific physical training methods to prevent and treat diseases and also provide reference.
随着分子生物学的发展,对胰岛素抵抗机制的认识也在逐渐深入,同时也促进了体育运动影响胰岛素抵抗的机制研究,本文从受体前、受体和受体后三个水平综述体育运动影响胰岛素抵抗的机制。
3.
In this thesis, two pairs of chromophores with donor-acceptor properties, coumarin-3-carboxylic acid (3-CCA) and 9-anthracene carboxylic acid (9-ACA), 4-methoxyphenylacetic acid (4-MAA) and 2-naphthalenesulfonic acid (2-NSA) have been intercalated and into the layered double hydroxide by the method of ion-exchange procedures, respectively.
本论文以锌铝(Zn-Al-CO_3-LDH)、镁铝(Mg-Al-CO_3-LDH)水滑石为主体,以具有电子给体和受体性能的香豆素-3-甲酸(3-CCA)和9-蒽甲酸(9-ACA)及4-甲氧基苯乙酸(4-MAA)和2-萘磺酸(2-NSA)两对生色团为客体,系统研究了它们的组装条件、产物结构及其光化学性能。
补充资料:5-羟色胺受体阻断剂
分子式:
CAS号:

性质:5-羟色胺(5-HT)是重要的神经递质,也是一种自身活性物质。5-HT通过与靶细胞膜上的5-HT受体结合并诱发生物效应。5-HT受体可分为5-HT1A,5-HT1B,5-HT1C,5-HT2,5-HT3。5-HT受体阻断药大致有以下几类,(1)麦角酸的衍生物如麦解酰二乙胺等;(2)组胺H1受体阻断药如赛庚啶等;(3)吩噻嗪类如氯丙嗪等;(4)肾上腺素α-受体阻断药如酚苄明等。常用于实验室研究、较为特异的5-HT受体阻断剂有麦角苄脂、米安色林、苯噻啶等。

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