Hypothalamic neurogenesis in the adult brain

•Hypothalamic neurogenesis is essential in a functioning energy-balance system.•Role of hypothalamic neurogenesis in adaptive behavior of animals.•The common features of hippocampal, SVZ and hypothalamic neurogenes. Adult-born new neurons are continuously added to the hippocampus and the olfactory b...

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Published inFrontiers in neuroendocrinology Vol. 34; no. 3; pp. 167 - 178
Main Author Cheng, Mei-Fang
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.08.2013
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Abstract •Hypothalamic neurogenesis is essential in a functioning energy-balance system.•Role of hypothalamic neurogenesis in adaptive behavior of animals.•The common features of hippocampal, SVZ and hypothalamic neurogenes. Adult-born new neurons are continuously added to the hippocampus and the olfactory bulb to serve aspects of learning and perceptual functions. Recent evidence establishes a third neurogenic niche in the ventral hypothalamic parenchyma surrounding the third ventricle that ensures the plasticity of specific brain circuits to stabilize physiological functions such as the energy-balance regulatory system. Hypothalamic lesion studies have demonstrated that regions associated with reproduction-related functions are also capable of recruiting newborn neurons to restore physiological functions and courtship behavior. Induced by lesion or other stimulation, elevated neurotrophic factors trigger neurogenic cascades that contribute to remodeling of certain neural circuits to meet specific transient functions. This insight raises the possibility that event-specific changes, such as increased GnRH, may be mediated by courtship-sensitive neurotrophic factors. We will discuss the potentially integral and ubiquitous roles of neurogenesis in physiological and biological phenomena, roles that await future experimental exploration.
AbstractList •Hypothalamic neurogenesis is essential in a functioning energy-balance system.•Role of hypothalamic neurogenesis in adaptive behavior of animals.•The common features of hippocampal, SVZ and hypothalamic neurogenes. Adult-born new neurons are continuously added to the hippocampus and the olfactory bulb to serve aspects of learning and perceptual functions. Recent evidence establishes a third neurogenic niche in the ventral hypothalamic parenchyma surrounding the third ventricle that ensures the plasticity of specific brain circuits to stabilize physiological functions such as the energy-balance regulatory system. Hypothalamic lesion studies have demonstrated that regions associated with reproduction-related functions are also capable of recruiting newborn neurons to restore physiological functions and courtship behavior. Induced by lesion or other stimulation, elevated neurotrophic factors trigger neurogenic cascades that contribute to remodeling of certain neural circuits to meet specific transient functions. This insight raises the possibility that event-specific changes, such as increased GnRH, may be mediated by courtship-sensitive neurotrophic factors. We will discuss the potentially integral and ubiquitous roles of neurogenesis in physiological and biological phenomena, roles that await future experimental exploration.
Highlights • Hypothalamic neurogenesis is essential in a functioning energy-balance system. • Role of hypothalamic neurogenesis in adaptive behavior of animals. • The common features of hippocampal, SVZ and hypothalamic neurogenes.
Adult-born new neurons are continuously added to the hippocampus and the olfactory bulb to serve aspects of learning and perceptual functions. Recent evidence establishes a third neurogenic niche in the ventral hypothalamic parenchyma surrounding the third ventricle that ensures the plasticity of specific brain circuits to stabilize physiological functions such as the energy-balance regulatory system. Hypothalamic lesion studies have demonstrated that regions associated with reproduction-related functions are also capable of recruiting newborn neurons to restore physiological functions and courtship behavior. Induced by lesion or other stimulation, elevated neurotrophic factors trigger neurogenic cascades that contribute to remodeling of certain neural circuits to meet specific transient functions. This insight raises the possibility that event-specific changes, such as increased GnRH, may be mediated by courtship-sensitive neurotrophic factors. We will discuss the potentially integral and ubiquitous roles of neurogenesis in physiological and biological phenomena, roles that await future experimental exploration.
Adult-born new neurons are continuously added to the hippocampus and the olfactory bulb to serve aspects of learning and perceptual functions. Recent evidence establishes a third neurogenic niche in the ventral hypothalamic parenchyma surrounding the third ventricle that ensures the plasticity of specific brain circuits to stabilize physiological functions such as the energy-balance regulatory system. Hypothalamic lesion studies have demonstrated that regions associated with reproduction-related functions are also capable of recruiting newborn neurons to restore physiological functions and courtship behavior. Induced by lesion or other stimulation, elevated neurotrophic factors trigger neurogenic cascades that contribute to remodeling of certain neural circuits to meet specific transient functions. This insight raises the possibility that event-specific changes, such as increased GnRH, may be mediated by courtship-sensitive neurotrophic factors. We will discuss the potentially integral and ubiquitous roles of neurogenesis in physiological and biological phenomena, roles that await future experimental exploration.Adult-born new neurons are continuously added to the hippocampus and the olfactory bulb to serve aspects of learning and perceptual functions. Recent evidence establishes a third neurogenic niche in the ventral hypothalamic parenchyma surrounding the third ventricle that ensures the plasticity of specific brain circuits to stabilize physiological functions such as the energy-balance regulatory system. Hypothalamic lesion studies have demonstrated that regions associated with reproduction-related functions are also capable of recruiting newborn neurons to restore physiological functions and courtship behavior. Induced by lesion or other stimulation, elevated neurotrophic factors trigger neurogenic cascades that contribute to remodeling of certain neural circuits to meet specific transient functions. This insight raises the possibility that event-specific changes, such as increased GnRH, may be mediated by courtship-sensitive neurotrophic factors. We will discuss the potentially integral and ubiquitous roles of neurogenesis in physiological and biological phenomena, roles that await future experimental exploration.
Author Cheng, Mei-Fang
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  givenname: Mei-Fang
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Issue 3
Keywords Reproduction
Courtship
Energy-balance
Exercise
Median eminence
Brain lesion
Hypothalamus
Neurotrophic factors
Neurogenesis
Tanycytes
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Snippet •Hypothalamic neurogenesis is essential in a functioning energy-balance system.•Role of hypothalamic neurogenesis in adaptive behavior of animals.•The common...
Highlights • Hypothalamic neurogenesis is essential in a functioning energy-balance system. • Role of hypothalamic neurogenesis in adaptive behavior of...
Adult-born new neurons are continuously added to the hippocampus and the olfactory bulb to serve aspects of learning and perceptual functions. Recent evidence...
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SubjectTerms Animals
Birds
Brain
Brain lesion
Cell Differentiation
Cell Movement
Cell Proliferation
Cerebral Ventricles - physiology
Ciliary Neurotrophic Factor - physiology
Courtship
Endocrinology & Metabolism
Energy-balance
Exercise
Hippocampus - physiology
Hypothalamus
Hypothalamus - physiology
Leptin - pharmacology
Male
Median eminence
Nerve Growth Factors - physiology
Neurogenesis
Neurogenesis - drug effects
Neurotrophic factors
Rats
Reproduction
Sexual Behavior, Animal - drug effects
Tanycytes
Title Hypothalamic neurogenesis in the adult brain
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https://www.ncbi.nlm.nih.gov/pubmed/23684668
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https://www.proquest.com/docview/1500784387
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