Literature DB >> 17504438

Presence of oxytocin receptors in the gonadotrophin-releasing hormone (GnRH) neurones in female rats: a possible direct action of oxytocin on GnRH neurones.

C S Caligioni1, C Oliver, M C Jamur, C R Franci.   

Abstract

Gonadotrophin-releasing hormone (GnRH) neurones constitute the final output pathway of a neuronal network that controls the preovulatory luteinising hormone (LH) surge and ovulation. Throughout the reproductive cycle, several neurotransmitters stimulate and inhibit the activity of GnRH neurones, including oxytocin. The central administration of oxytocin antiserum abolishes the pro-oestrous LH surge whereas oxytocin stimulates GnRH secretion from hypothalamic explants suggesting an oxytocin central action. Within the GnRH neuronal population in the rat, GnRH cells in the medial preoptic area (MPOA) are activated at the time of the LH surge. Thus, we hypothesised that GnRH neurones in the MPOA may express oxytocin receptors, and that oxytocin neurones in the supraoptic nucleus (SON) and paraventricular nucleus (PVN) may be differentially activated during the oestrous cycle. Oxytocin receptors mRNA was detected in the MPOA using reverse transcription-polymerase chain reaction. In animals in either metoestrus or pro-oestrus, double-label immunofluorescence indicated that approximately 10% of GnRH neurones in the MPOA coexpressed oxytocin receptors and that a few oxytocin fibres are located in the vicinity of these GnRH neurones. However, other neurones positive for the oxytocin receptors were found near GnRH neurones. At both oestrous stages, double-label immunofluorescence revealed that approximately 30% of oxytocin neurones in the SON were Fos-positive whereas oxytocin neurones in the PVN were consistently Fos-negative. Together, these data suggest that oxytocin may directly control neuronal activity in a subpopulation of GnRH neurones. Moreover, both oxytocin neuronal activity and the oxytocin receptor expression on GnRH cells are not influenced by oestrogen.

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Year:  2007        PMID: 17504438     DOI: 10.1111/j.1365-2826.2007.01550.x

Source DB:  PubMed          Journal:  J Neuroendocrinol        ISSN: 0953-8194            Impact factor:   3.627


  7 in total

1.  Oxytocin facilitates female sexual maturation through a glia-to-neuron signaling pathway.

Authors:  Anne-Simone Parent; Grégory Rasier; Valérie Matagne; Alejandro Lomniczi; Marie-Christine Lebrethon; Arlette Gérard; Sergio R Ojeda; Jean-Pierre Bourguignon
Journal:  Endocrinology       Date:  2007-11-26       Impact factor: 4.736

2.  Oxytocin Intranasal Administration Affects Neural Networks Upstream of GNRH Neurons.

Authors:  Mohammad Saied Salehi; Homayoun Khazali; Fariba Mahmoudi; Mahyar Janahmadi
Journal:  J Mol Neurosci       Date:  2017-06-29       Impact factor: 3.444

Review 3.  The role of the circadian clock system in physiology.

Authors:  Violetta Pilorz; Charlotte Helfrich-Förster; Henrik Oster
Journal:  Pflugers Arch       Date:  2018-01-04       Impact factor: 3.657

Review 4.  Oxytocin in the Male Reproductive Tract; The Therapeutic Potential of Oxytocin-Agonists and-Antagonists.

Authors:  Beatrix Stadler; Michael R Whittaker; Betty Exintaris; Ralf Middendorff
Journal:  Front Endocrinol (Lausanne)       Date:  2020-10-22       Impact factor: 5.555

Review 5.  Approaches Mediating Oxytocin Regulation of the Immune System.

Authors:  Tong Li; Ping Wang; Stephani C Wang; Yu-Feng Wang
Journal:  Front Immunol       Date:  2017-01-10       Impact factor: 7.561

6.  LPS-Induced Systemic Inflammation Caused mPOA-FSH/LH Disturbance and Impaired Testicular Function.

Authors:  Peilei Shen; Shuqin Ji; Xulin Li; Qingning Yang; Bingxian Xu; Chris Kong Chu Wong; Liping Wang; Lei Li
Journal:  Front Endocrinol (Lausanne)       Date:  2022-06-23       Impact factor: 6.055

Review 7.  Intrinsic links among sex, emotion, and reproduction.

Authors:  Lisa Yang; Alexander N Comninos; Waljit S Dhillo
Journal:  Cell Mol Life Sci       Date:  2018-03-26       Impact factor: 9.261

  7 in total

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