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1)  NGFRp75
神经生长因子受体75kD蛋白
2)  NGFR
神经生长因子受体
1.
DISTRIBUTION AND COLOCALIZATION OF NGFR AND NOS IN THE NEURONS OF RAT BASAL FOREBRAIN;
神经生长因子受体和一氧化氮合酶在大鼠基底前脑神经元的分布与共存
2.
Quinazoline compounds have shown the multi-bioactivity,mainly including the inhibiting activities on EGFR or EGFR-TK,VEGFR,PDGFR,NGFR and so on,which paly multi-pharmacological roles in anticancer,antibacterial,etc.
喹唑啉类化合物具多重生物活性,主要表现为对表皮生长因子受体或其酪氨酸激酶、血管内皮生长因子受体、血小板衍生生长因子受体、神经生长因子受体等的抑制活性,从而发挥抗癌、抗菌等多种药理作用。
3.
The subpopulations of NOS and NGFR neuron of SM-DB complex were analysis qualitively and quantitatively.
用免疫细胞化学、组织化学双标技术定量分析内侧隔核-斜角带(septummedialis-diagonalbandofBroca,SM-DB)中神经生长因子受体(nervegrowthfactorreceptor,NGFR)、一氧化氮合酶(nitricoxidesynthase,NOS)阳性神经元各亚群。
3)  Nerve growth factor receptor
神经生长因子受体
1.
Distributions of interstitial cells of Cajal,nerve growth factor receptor and nitric oxide synthase in Hirschsprung s disease and their significance;
肠间质细胞和神经生长因子受体及一氧化氮合酶在先天性巨结肠的分布及意义
2.
The present study was to explore the different expression of basal forebrain ChAT(choline acetyltransferase, ChAT), NGFR(nerve growth factor receptor, NGFR) and NOS(nitric oxide synthase, NOS) positive neurons transplanted into host hippocampus.
为了比较基底前脑神经元移植至海马后胆碱乙酰转移酶、神经生长因子受体和一氧化氮合酶神经元的变化规律。
3.
Using immunohistochemical procedure the normal morphology and distribution of the nerve growth factor receptor containing (NGF-R) neurons and the choline acetyltransferase positive (ChAT) cells were examined in adult rats.
本文用免疫组化双标法观察了神经生长因子受体(NGF-R)及胆碱乙酰转移酶(ChAT)免疫反应阳性神经元在成鼠基底前脑内的分布,结果发现嗅结节、隔内侧核、斜角带核、腹侧苍白球及基底大细胞核均有NGF-R及ChAT免疫反应阳性神经元。
4)  trkA
神经生长因子受体
1.
Objective: To investigate the possible mechanisms of orofacial pain induced by traumatic occlusion, the expression changes of TrkA and PPTA mRNAs were detected in the dog trigeminal ganglion (TG).
目的:观察咬合创伤时犬三叉神经节(TG)中神经生长因子受体TrkA mRNA及前速激肽原-A(PPTA)mRNA的表达变化,探讨咬合创伤导致口面痛的可能机制。
5)  NGF receptor mRNA
神经生长因子受体mRNA
6)  nerve growth factor receptor/p75
神经生长因子受体/p75
补充资料:表皮生长因子受体


表皮生长因子受体


为膜受体酪氨酸激酶,因其上有受体分子而表现酶的活性。对其形成的调节机制尚不清楚。
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