雌激素在女性下丘脑-垂体-阴茎轴上的作用
Suzanne M Moenter1,2,3,4, J Rudolph Starrett1
1Department of Molecular & Integrative Physiology, University of Michigan, Ann Arbor, Michigan, USA.
Journal of neuroendocrinology
|April 12, 2024
概括
本评论回顾了下垂体-垂体-淋巴结核 (HPG) 轴的历史发展,并质疑当前的术语是否准确地反映了我们对生殖神经内分泌学的理解,重点是雌激醇.
科学领域:
- 神经内分泌学神经内分泌学
- 生殖生物学 生殖生物学
- 荷尔蒙的调节 荷尔蒙的调节
背景情况:
- 在一个多世纪前,对生殖功能至关重要的下丘脑-垂体-淋巴结核 (HPG) 轴被阐明了.
- 早期的研究涉及切除/替换技术和腺体移植,引发了科学辩论.
- 中枢神经系统,前垂体和生殖腺被确定为关键的调节元件.
研究的目的:
- 审查与HPG轴相关的术语的历史演变.
- 批判性地评估当前术语是否与当代对系统的理解保持一致.
- 专注于雌激醇在HPG轴内的下丘脑的作用.
主要方法:
- 科学文献和术语的历史评论.
- 分析围绕HPG轴的概念发展.
- 专注于女性生殖内分泌学,特别是雌醇的下丘脑作用.
主要成果:
- 自最初的发现以来,HPG轴概念已经显著发展.
- 历史研究方法虽然很原始,但为当前的理解奠定了基础.
- 用于描述HPG轴的术语可能不完全涵盖当前的科学见解.
结论:
- 对于HPG轴的当前术语可能需要重新评估.
- 需要进一步研究雌激醇在下丘脑调节中的作用.
- 了解历史背景对于推进生殖神经内分泌学至关重要.
更多相关视频
06:51Ovariectomy and 17β-estradiol Replacement in Rats and Mice: A Visual Demonstration
Published on: June 7, 2012
57.5K
05:32Author Spotlight: Investigating the Relationship Between FSH and Pathophysiological Changes in Perimenopausal Women - Insights from a Mouse Model
Published on: August 11, 2023
1.7K
相关概念视频
Hormonal Control of the Ovarian Cycle
476
The ovarian cycle is meticulously regulated by the hypothalamic-pituitary-gonadal axis. This cycle orchestrates the release of a mature oocyte, essential for reproduction.
Before puberty, the hypothalamus releases GnRH in a low frequency, low amplitude pulsatile manner. This along with the immature hypothalamic-pituitary-gonadal axis activity, results in low estrogen levels and the absence of a fully functional ovarian cycle. At puberty, GnRH secretion increases in both frequency and...
Before puberty, the hypothalamus releases GnRH in a low frequency, low amplitude pulsatile manner. This along with the immature hypothalamic-pituitary-gonadal axis activity, results in low estrogen levels and the absence of a fully functional ovarian cycle. At puberty, GnRH secretion increases in both frequency and...
476
Gonadal and Placental Hormones
1.4K
The gonads, namely the testes in males and the ovaries in females, are pivotal in producing gonadal hormones that orchestrate the intricate processes of sexual development and reproduction.
In males, testosterone is the primary gonadal androgen. It plays a central role in the maturation of male reproductive organs — the penis and testes. Additionally, testosterone is instrumental in the development of secondary sexual characteristics — a deep voice as well as facial and pubic hair...
In males, testosterone is the primary gonadal androgen. It plays a central role in the maturation of male reproductive organs — the penis and testes. Additionally, testosterone is instrumental in the development of secondary sexual characteristics — a deep voice as well as facial and pubic hair...
1.4K
Hormonal Regulation of the Menstrual Cycle
347
The ovarian cycle regulates endometrial changes throughout a single menstrual cycle via the coordinated action of gonadotrophin-releasing hormone (GnRH) and gonadotrophins.
At puberty, GnRH begins a pulsatile release pattern, which triggers the anterior pituitary gland to secrete follicle-stimulating hormone (FSH) and luteinizing hormone (LH). The frequency and amplitude of GnRH pulses vary across the menstrual cycle, with faster pulses favoring LH release and slower pulses favoring FSH...
At puberty, GnRH begins a pulsatile release pattern, which triggers the anterior pituitary gland to secrete follicle-stimulating hormone (FSH) and luteinizing hormone (LH). The frequency and amplitude of GnRH pulses vary across the menstrual cycle, with faster pulses favoring LH release and slower pulses favoring FSH...
347
Target Cell Response to Hormones
3.0K
Hormones intricately bind to receptors on the surface or within target cells, initiating a cascade of cellular responses.
Notably, the cellular response can be regulated by altering the number of receptors expressed in the cell. For example, prolonged exposure to elevated hormone levels results in a gradual decline or down-regulation in the number of receptors for that specific hormone on the cell surface. Conversely, in response to low hormone levels, cells may use up-regulation, producing an...
Notably, the cellular response can be regulated by altering the number of receptors expressed in the cell. For example, prolonged exposure to elevated hormone levels results in a gradual decline or down-regulation in the number of receptors for that specific hormone on the cell surface. Conversely, in response to low hormone levels, cells may use up-regulation, producing an...
3.0K
Major Hormones and Their Functions
387
Hormones, the biochemical messengers produced by endocrine glands, are pivotal in regulating bodily functions and maintaining homeostasis. Each hormone's balance is crucial; imbalances can lead to significant physiological disruptions. Major hormones include oxytocin, cortisol, epinephrine, estrogen, testosterone, thyroxine, growth hormone, insulin, and glucagon.
Oxytocin, produced in the hypothalamus and released by the pituitary gland, plays a role in social bonding, childbirth, and...
Oxytocin, produced in the hypothalamus and released by the pituitary gland, plays a role in social bonding, childbirth, and...
387
Hypothalamic-Pituitary Axis
60.0K
The response to stress—be it physical or psychological, acute or chronic—involves activation of the Hypothalamic-Pituitary-Adrenal (HPA) axis. The HPA axis is part of the neuroendocrine system because it involves both neuronal and hormonal communication. Its function is to regulate homeostatic systems—metabolic, cardiovascular, and immune—providing the necessary means to respond to a stressor.
60.0K
