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Brain Aromatase, Estrogens, and Behavior

Brain Aromatase, Estrogens, and Behavior
Author: Jacques Balthazart
Publisher: Oxford University Press
Total Pages:
Release: 2012-09-21
Genre: Psychology
ISBN: 0199841209

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It is well known that the class of steroid hormones known as estrogens have powerful effects on organs related to reproduction such as the uterus and the breast. What is less well known is that estrogens also profoundly modulate brain function and behavior. Estrogens, such as estradiol, can occur in brain as the result of ovarian secretion of the hormone into the blood that then finds its way to the brain. In male vertebrates, the testes secrete androgens, such as testosterone, into the blood and this class of steroid hormones can be converted into estrogens in the brain via the action of the enzyme aromatase which is expressed in the male brain in many species. Finally estradiol can be synthesized de novo from cholesterol as it has been shown in a variety of species that all the enzymes required to synthesize estrogens are expressed in the brain. This book collects chapters by experts in the field that considers, how estradiol is synthesized in the brain and what its effects are on a variety of behaviors. Special attention is paid to the enzyme aromatase that is distributed in discrete regions of the brain and is highly regulated in a sex specific and seasonal specific manner. Recently it has become clear that estrogens can act in the brain at two very different time scales, one is rather long lasting (days to weeks) and involves the modulation of gene transcription by the hormone-receptor complex. A second mode of action is much quicker and involves the action of estrogens on cell membranes that can result in effects on second messenger systems and ultimately behavior within minutes. Thus this book highlights novel views of estrogen action that are still under-appreciated namely that estrogens have significant effects on the male brain and that they can act on two very different times scales. This volume will be of interest to both basic researchers and clinicians interested in the action of estrogens.


Brain Aromatase, Estrogens, and Behavior

Brain Aromatase, Estrogens, and Behavior
Author: Jacques Balthazart
Publisher: Oxford University Press
Total Pages: 553
Release: 2012-11-15
Genre: Medical
ISBN: 0199841195

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This book concerns how estrogens are synthesized in the brain and their two modes of action on behavior: a slow process involving gene transcription and a faster action at the cell membrane. The significance of the regulation and distribution of the estrogen synthesizing enzyme aromatase in the brain is also highlighted.


Estrogens and Brain Function

Estrogens and Brain Function
Author: D.W. Pfaff
Publisher: Springer Science & Business Media
Total Pages: 363
Release: 2012-12-06
Genre: Nature
ISBN: 1461380847

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This book brings together some of the results and ideas produced by a large number of people-colleagues and students with whom I am privileged to work in the laboratory at Rockefeller University. In terms of my personal history I see it as a confluence of creative forces persons from whom I have learned. I was instructed in neuroanatomy by Walle J. H. Nauta at M. I. T. , and later in a course at Harvard Medical School under the direction of Richard Sidman. At Harvard Medical School, where M. I. T. graduate students were allowed to cross register, the superb neurophysiology course was under the guiding spirit of Stephen Kuffler. Later, I benefited greatly from participating in his summer course in electrophysiological techniques at Woods Hole. Eric Kandel and his colleagues have provided us with the most exciting contemporary approach to the conceptualization and study of cellular mechanisms for behavior. Here at Rockefeller, Carl Pfaffmann and Neal Miller have been leaders in every sense of the word. Not only did they provide me with opportunities to grow to scientific maturity; they also set an example of clear thinking about mechanisms for mammalian behavior patterns. I wrote this book to show how the systematic use of increasingly detailed electrophysiological, neuroanatomical, and neuroendocrine tech niques can explain the mechanism for a mammalian behavioral response. The behavior in question happens to be sensitive to steroid hormones and plays a central role in reproduction.


The Female Brain

The Female Brain
Author: Louann Brizendine, MD
Publisher: Harmony
Total Pages: 306
Release: 2007-08-07
Genre: Science
ISBN: 0767928415

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Since Dr. Brizendine wrote The Female Brain ten years ago, the response has been overwhelming. This New York Times bestseller has been translated into more than thirty languages, has sold nearly a million copies between editions, and has most recently inspired a romantic comedy starring Whitney Cummings and Sofia Vergara. And its profound scientific understanding of the nature and experience of the female brain continues to guide women as they pass through life stages, to help men better understand the girls and women in their lives, and to illuminate the delicate emotional machinery of a love relationship. Why are women more verbal than men? Why do women remember details of fights that men can’t remember at all? Why do women tend to form deeper bonds with their female friends than men do with their male counterparts? These and other questions have stumped both sexes throughout the ages. Now, pioneering neuropsychiatrist Louann Brizendine, M.D., brings together the latest findings to show how the unique structure of the female brain determines how women think, what they value, how they communicate, and who they love. While doing research as a medical student at Yale and then as a resident and faculty member at Harvard, Louann Brizendine discovered that almost all of the clinical data in existence on neurology, psychology, and neurobiology focused exclusively on males. In response to the overwhelming need for information on the female mind, Brizendine established the first clinic in the country to study and treat women’s brain function. In The Female Brain, Dr. Brizendine distills all her findings and the latest information from the scientific community in a highly accessible book that educates women about their unique brain/body/behavior. The result: women will come away from this book knowing that they have a lean, mean, communicating machine. Men will develop a serious case of brain envy.


Estrogens and Memory

Estrogens and Memory
Author: Karyn M. Frick
Publisher: Oxford University Press, USA
Total Pages: 525
Release: 2020
Genre: Psychology
ISBN: 0190645903

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"A book about the influence of estrogens on memory would have been unthinkable as recently as 30 years ago. Although a few small studies in the late 1970's reported a beneficial effect of estrogens on memory in human women (Hackman and Galbraith, 1976; Fedor-Freybergh, 1977), examination of the role of estrogens in memory did not truly capture more widespread attention until the pioneering work of Barbara Sherwin and colleagues in 1988 and beyond. In her initial paper, Sherwin showed that bilateral removal of the ovaries (aka surgical menopause) led to impaired short-term and long-term memory, whereas treatment of surgically menopausal women with estradiol alone, testosterone alone, or estradiol plus testosterone prevented this decline (Sherwin, 1988). As a search for the terms "estrogen" and "memory" in PubMed illustrates, well over 2000 papers have been published on the subject of estrogens and memory in the ensuing decades. The vast majority of these studies have focused on the hippocampus, a bilateral medial temporal lobe structure essential for the formation of episodic memories, particularly those with spatial, contextual, relational, temporal, and recognition components (Olton et al., 1979; Morris et al., 1982; Kim and Fanselow, 1992; Squire, 1992; Cohen and Stackman, 2015; Tonegawa et al., 2015; Eichenbaum, 2017). Although various forms of learning and memory are mediated by numerous brain regions, including the prefrontal cortex, medial temporal lobe cortices, amygdala, striatum, and cerebellum, the hippocampus has received the lion's share of attention due to its central importance for episodic memory formation. Hippocampal damage produces profound retrograde amnesia for facts and events, as well as anterograde amnesia for new information and impairments in spatial navigation (Winocur, 1990; Anagnostaras et al., 2001; Clark et al., 2002; Gilboa et al., 2006). Hippocampal dysfunction in middle-aged and aged subjects is a primary contributor to age-related memory decline (Golumb et al., 1996; Grady et al., 2003; Apostolova et al., 2010; Burke and Barnes, 2010; Small et al., 2011; Yassa et al., 2011), and has also been implicated in the cognitive impairments observed in diseases such as schizophrenia and depression (Small et al., 2011; Nakahara et al., 2018; Santos et al., 2018; Ott et al., 2019). Moreover, the hippocampi of patients with Alzheimer's disease are substantially atrophied and burdened with copious amounts of amyloid plaques and neurofibrillary tangles, the hallmark pathologies of this insidious disease (Hyman et al., 1984; Walsh and Selkoe, 2004; Selkoe and Hardy, 2016). As such, understanding how estrogens influence hippocampal functioning may provide important insights not only about the fundamental neurobiology of memory processes, but also into the etiology of neuropsychiatric and neurodegenerative diseases"--


The Effects of Brain Estrogen on Motivational Feeding Behaviors in Rats

The Effects of Brain Estrogen on Motivational Feeding Behaviors in Rats
Author: Yifan Qiu
Publisher:
Total Pages:
Release: 2021
Genre:
ISBN:

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Estrogens have been previously identified as regulators of food reward, or motivated behavior towards food, where high levels are correlated with decreased food motivation. However, only ovarian-derived estrogens have been heavily investigated. Estrogen is primarily produced within the ovaries, but it can also be synthesized in the brain, including in the amygdala, by brain aromatase enzymes that convert androgens into estrogens. Here we hypothesized that brain-produced estrogens are important in the control of food intake and food-motivated behavior in female rats, independently of the function of their ovarian counterparts. To further examine the function of amygdala estrogens on food motivation, estrogen levels specifically within the amygdala were manipulated in female and male rats. Estrogen levels were increased through [beta]-estradiol microinjections to the central amygdala of rats or were decreased by viral gene silencing of the aromatase enzyme (knockdown) specifically in the central amygdala. In addition, we also examined whether the estrous cycle, thus ovarian-produced hormones, interacts with the food motivation effect in intra-amygdala estrogen microinjections. Contrary to our hypothesis, estradiol injections did not affect food motivation, but had an acute effect on food seeking and locomotor activity in female rats, and this effect was estrous cycle dependent. Interestingly, we found that aromatase knockdown within the amygdala decreased food motivation, but only in female rats. These results suggest that brain estrogen manipulations might have a greater effect on female rats, and that brain-produced estrogen and ovarian estrogen might play a divergent role in food-motivated behavior, yet the function of brain-produced estrogen interacts with ovarian hormones.


Sex and Gender Factors Affecting Metabolic Homeostasis, Diabetes and Obesity

Sex and Gender Factors Affecting Metabolic Homeostasis, Diabetes and Obesity
Author: Franck Mauvais-Jarvis
Publisher: Springer
Total Pages: 627
Release: 2017-12-08
Genre: Medical
ISBN: 3319701789

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The book provides a reference for years to come, written by world-renowned expert investigators studying sex differences, the role of sex hormones, the systems biology of sex, and the genetic contribution of sex chromosomes to metabolic homeostasis and diseases. In this volume, leaders of the pharmaceutical industry present their views on sex-specific drug discovery. Many of the authors presented at the Keystone Symposium on “Sex and gender factors affecting metabolic homeostasis, diabetes and obesity” to be held in March 2017 in Lake Tahoe, CA. This book will generate new knowledge and ideas on the importance of gender biology and medicine from a molecular standpoint to the population level and to provide the methods to study them. It is intended to be a catalyst leading to gender-specific treatments of metabolic diseases. There are fundamental aspects of metabolic homeostasis that are regulated differently in males and females, and influence both the development of diabetes and obesity and the response to pharmacological intervention. Still, most preclinical researchers avoid studying female rodents due to the added complexity of research plans. The consequence is a generation of data that risks being relevant to only half of the population. This is a timely moment to publish a book on sex differences in diseases as NIH leadership has asked scientists to consider sex as a biological variable in preclinical research, to ensure that women get the same benefit of medical research as men.


Estrogen Effects on Traumatic Brain Injury

Estrogen Effects on Traumatic Brain Injury
Author: Kelli A Duncan
Publisher: Academic Press
Total Pages: 172
Release: 2014-12-29
Genre: Medical
ISBN: 0128017074

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This book demystifies, deconstructs, and simultaneously humanizes the field of estrogen-mediated neuroprotection following TBI, making the subject approachable to both researchers and advanced students. Bringing together leading researchers and practitioners to explain the basis for their work, methods, and their results, chapters explore what is known about the role of estrogens following damage to the brain. With topics covering induction of estrogen response, consequences of estrogen action, and mechanisms underlying estrogen mediated neuroprotection, Estrogen Effects on Traumatic Brain Injury is of great importance to teachers, researchers, and clinicians interested in the role that estrogens play following traumatic brain injury. Written to provide a foundational view of estrogens as neuroprotectors in TBI, appropriate for both researchers and advanced students Data Analysis boxes in each chapter help with data interpretation and offer guidelines on how best to understand results A multidisciplinary approach to the methods, issues, empirical findings in the field of estrogen mediated neuroprotection Detailed focus on how studies relate and build upon each other and the ways different methods of analysis inform each other Written to provide clinicians with new and developing treatment options for patients in their field


Localization and Sex Steroid Regulation of Brain Aromatase Activity

Localization and Sex Steroid Regulation of Brain Aromatase Activity
Author: JSG Edmunds
Publisher:
Total Pages: 13
Release: 1999
Genre: Androgens
ISBN:

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We performed assays for aromatase activity in serial 200 ?m sections of the three orthogonal planes of the brain and produced a three dimensional reconstruction of aromatase levels in Medaka (Oryzias latipes) brain. The regulation of this brain aromatase activity by sex steroids was then examined by in vivo exposure bioassays. We demonstrate that the activity of brain aromatase is localized to an area that contains the hypothalamus, a region of the brain involved in the regulation of the reproductive function. The exposure of Medaka to estradiol lead to increased brain aromatase levels; whereas, exposure to methyl-testosterone lead to decreased brain aromatase levels. The regulation of brain aromatase levels by both product and substrate may provide a sensitive trigger for environmental cues to alter sex behavior.


Hormones and Social Behavior

Hormones and Social Behavior
Author: Donald W. Pfaff
Publisher: Springer Science & Business Media
Total Pages: 204
Release: 2008-05-31
Genre: Medical
ISBN: 3540792880

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This book concentrates on two major topics: firstly, the molecular and neural biology of hormone actions relevant to normal social behaviors; and secondly, the clinical treatment of human patients in whom these behaviors have gone wrong.