Impose of KNDy/GnRH neural circuit in PCOS, ageing, cancer and Alzheimer’s disease: StAR actions in prevention of neuroendocrine dysfunction

吻素 内科学 内分泌学 强啡肽 促性腺激素释放激素 下丘脑 雌激素 神经激肽B 神经科学 医学 生物 神经肽 促黄体激素 阿片肽 受体 激素 类阿片 P物质
作者
Siva Prasad Panda,Adarsh Kesharwani,Gaurav Deep Singh,DSNBK Prasanth,Bhaskara Raju Vatchavai,P.V. Kamala Kumari,Sunil Kumar Panda,Sarada Prasanna Mallick,Sunil Kumar Panda,Sarada Prasanna Mallick
出处
期刊:Ageing Research Reviews [Elsevier BV]
卷期号:92: 102086-102086 被引量:14
标识
DOI:10.1016/j.arr.2023.102086
摘要

The Kisspeptin1 (KISS1)/neurokinin B (NKB)/Dynorphin (Dyn) [KNDy] neurons in the hypothalamus regulate the reproduction stage in human beings and rodents. KNDy neurons co-expressed all KISS1, NKB, and Dyn peptides, and hence commonly regarded as KISS1 neurons. KNDy neurons contribute to the "GnRH pulse generator" and are implicated in the regulation of pulsatile GnRH release. The estradiol (E2)-estrogen receptor (ER) interactions over GnRH neurons in the hypothalamus cause nitric oxide (NO) discharge, in addition to presynaptic GABA and glutamate discharge from respective neurons. The released GABA and glutamate facilitate the activity of GnRH neurons via GABAA-R and AMPA/kainate-R. The KISS1 stimulates MAPK/ERK1/2 signaling and cause the release of Ca2+ from intracellular store, which contribute to neuroendocrine function, increase apoptosis and decrease cell proliferation and metastasis. The ageing in women deteriorates KISS1/KISS1R interaction in the hypothalamus which causes lower levels of GnRH. Because examining the human brain is so challenging, decades of clinical research have failed to find the causes of KNDy/GnRH dysfunction. The KISS1/KISS1R interactions in the brain have a neuroprotective effect against Alzheimer's disease (AD). These findings modulate the pathophysiological role of the KNDy/GnRH neural network in polycystic ovarian syndrome (PCOS) associated with ageing and, its protective role in cancer and AD. This review concludes with protecting effect of the steroid-derived acute regulatory enzyme (StAR) against neurotoxicity in the hippocampus, and hypothalamus, and these measures are fundamental for delaying ageing with PCOS. StAR could serve as novel diagnostic marker and therapeutic target for the most prevalent hormone-sensitive breast cancers (BCs).
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