关键词: Folliculo-stellate cell LH-RH Pars tuberalis Rat S-100 protein

Mesh : Animals Cell Communication / physiology Connexin 43 / metabolism Gap Junctions / metabolism Gonadotropin-Releasing Hormone / metabolism Immunohistochemistry / methods Male Microscopy, Electron / methods Neurons / metabolism ultrastructure Pituitary Gland, Anterior / metabolism ultrastructure Rats Rats, Wistar S100 Proteins / metabolism

来  源:   DOI:10.1016/j.tice.2013.10.001   PDF(Sci-hub)

Abstract:
The architecture of luteinizing hormone-releasing hormone (LH-RH) nerve ends and the S-100 protein containing folliculo-stellate cells forming gap junctions in the pars tuberalis is basically important in understanding the regulation of the hormone producing mechanism of anterior pituitary glands. In this study, intact male rats 5-60 days old were prepared for immunohistochemistry and electron microscopy. From immunostained sections, the S-100 containing cells in pars tuberalis were first detected on day 30 and increased in number to day 60; this was parallel to the immunohistochemical staining of gap junction protein, connexin 43. LH-RH positive sites were clearly observed on just behind the optic chiasm and on the root of pituitary stalk on day 30. On day 60, the width of layer increased, while follicles and gap junctions were frequently observed between agranular cells in 10 or more layers of pars tuberalis. In the present study, we investigated the sexual maturation of the anterior pituitary glands through the postnatal development of S-100 positive cells, connexin 43 and LH-RH nerves. It is suggested that the folliculo-stellate cell system including the LH-RH neurons in the pars tuberalis participates in the control of LH secretion along with the portal vein system.
摘要:
暂无翻译
公众号