首页> 外文期刊>Neuroendocrinology: International Journal for Basic and Clinical Studies on Neuroendocrine Relationships >p75 and TrkC neurotrophin receptors demonstrate a different immunoreactivity profile in comparison to TrkA and TrkB receptors in human normal pituitary gland and adenomas.
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p75 and TrkC neurotrophin receptors demonstrate a different immunoreactivity profile in comparison to TrkA and TrkB receptors in human normal pituitary gland and adenomas.

机译:与正常人垂体和腺瘤中的TrkA和TrkB受体相比,p75和TrkC神经营养蛋白受体表现出不同的免疫反应性。

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BACKGROUND/AIMS: Recent knowledge indicates that neurotrophins play a significant role in neuroendocrine systems through their specific receptors TrkA, TrkB, TrkC and low-affinity p75(NTR) receptor. TrkA and TrkB receptors have been previously detected in numerous endocrine cells in human anterior pituitary and adenomas. In the present study, the localization of p75(NTR) and TrkC along with TrkA and TrkB receptors was investigated. METHODS: Semi-serial paraffin-embedded sections of 5 human normal pituitaries and 30 adenomas were immunostained using specific antibodies. RESULTS: Expression of p75(NTR) receptor was demonstrated in the intricate capillary and reticulin network in the anterior pituitary and in the pericapillary tissue and pituicytes in the posterior lobe. p75(NTR) immunoreactivity was absent from all adenomas. In normal anterior pituitary, a few scattered cells showed weak TrkC immunoreactivity in contrast to a high percentage of endocrine cells distributed throughout the pars distalis andpars intermedia which exhibited strong TrkA and/or intermediate TrkB immunoreactivity. Double immunohistochemistry demonstrated TrkA immunoreactivity in more than 80% of lactotropes and 70% of corticotropes and to a lesser extent in other cell types. Furthermore, in the majority of adenomas, independently of type, sex and age, a high percentage of TrkA- and/or TrkB-positive cells was detected. Interestingly, TrkC expression appeared to be increased in some adenomas compared to normal pituitary. Endothelial cells and perivascular connective tissue were always TrkB-immunostained. CONCLUSION: The above findings support a potential role of all neurotrophins, through their different receptors, in pituitary functions.
机译:背景/目的:最新知识表明神经营养蛋白通过其特异受体TrkA,TrkB,TrkC和低亲和力p75(NTR)受体在神经内分泌系统中起重要作用。 TrkA和TrkB受体先前已在人类垂体前腺和腺瘤的许多内分泌细胞中检测到。在本研究中,研究了p75(NTR)和TrkC以及TrkA和TrkB受体的定位。方法:使用特异性抗体对5个人类正常垂体和30个腺瘤的半串行石蜡包埋切片进行免疫染色。结果:p75(NTR)受体在垂体前叶,后叶的毛细血管和网状组织以及垂体的复杂毛细血管和网状蛋白网络中均有表达。所有腺瘤均不存在p75(NTR)免疫反应性。在正常的垂体前叶中,一些散在的细胞显示出较弱的TrkC免疫反应性,而分布在整个远侧pars和pars intermedia中的内分泌细胞的百分比较高,而后者表现出强的TrkA和/或中等的TrkB免疫反应性。双重免疫组织化学表明,TrkA的免疫反应性超过80%的促乳酸和70%的促肾上腺皮质激素,而在其他细胞类型中则较少。此外,在大多数腺瘤中,与类型,性别和年龄无关,检测到高百分比的TrkA和/或TrkB阳性细胞。有趣的是,与正常垂体相比,TrkC表达在某些腺瘤中似乎增加了。内皮细胞和血管周围结缔组织始终是TrkB免疫染色的。结论:以上发现支持所有神经营养蛋白通过其不同的受体在垂体功能中的潜在作用。

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