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首页> 外文期刊>Anatomy and embryology >Development of growth-associated protein-43 and neurotrophin receptor immunoreactivities in the rat urinary bladder.
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Development of growth-associated protein-43 and neurotrophin receptor immunoreactivities in the rat urinary bladder.

机译:在大鼠膀胱中生长相关蛋白43和神经营养蛋白受体免疫反应性的发展。

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摘要

Little is known about how the prenatal innervation of the urinary bladder develops. The objective of this study was to define the timing and pattern of innervation of the developing rat bladder using growth-associated protein-43 (GAP-43) immunohistochemistry. In addition, we examined the development of two different classes of transmembrane receptor proteins, the Trk family of tyrosine kinases and neurotrophin receptor p75 immunoreactivities. GAP-43-positive nerves were first detected in the bladder at embryonic day (E) 16. They were growing rapidly to the bladder dome and covered the whole bladder by E18. The density of GAP-43-containing nerves increased in the muscle layer by postnatal day (P) 0. Both Trk receptor-positive and p75 neurotrophin receptor-positive fibers were also first seen at E16. The number of Trk immunoreactive nerves reached a peak at E18, and then decreased over the following days. In contrast, p75-labeled fibers were abundant at E18-P14. There were few GAP-43 or neurotrophin receptor-positive fibers in the adult. GAP-43 immunohistochemistry provided us with a picture of innervation in the developing rat bladder. Furthermore, the demonstration of neurotrophin receptors positive fibers in the prenatal and early postnatal bladders suggests that neurotrophins may contribute to the development of the peripheral nervous system in the urinary bladder.
机译:关于膀胱的产前神经支配如何发展还知之甚少。这项研究的目的是使用生长相关蛋白43(GAP-43)免疫组织化学来确定发育中大鼠膀胱神经支配的时间和模式。此外,我们检查了两种不同类型的跨膜受体蛋白,酪氨酸激酶的Trk家族和神经营养蛋白受体p75免疫反应性的发展。在胚胎第16天,首先在膀胱中检测到GAP-43阳性神经。它们迅速生长到膀胱穹顶,并在E18之前覆盖整个膀胱。出生后第0天,肌肉层中含有GAP-43的神经密度增加。Trk受体阳性和p75神经营养蛋白受体阳性纤维也都在E16首次出现。 Trk免疫反应性神经的数量在E18达到峰值,然后在接下来的几天中下降。相反,p75标记的纤维在E18-P14处丰富。在成年人中,GAP-43或神经营养蛋白受体阳性纤维很少。 GAP-43免疫组织化学为我们提供了发育中大鼠膀胱神经支配的图片。此外,在产前和产后早期膀胱中神经营养蛋白受体阳性纤维的显示表明神经营养蛋白可能有助于膀胱周围神经系统的发育。

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