The hypothalamus for whole-body physiology: from metabolism to aging
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C. Yi | Tiemin Liu | D. Cai | Yong Xu | Qingchun Tong
[1] A. Regev,et al. Single cell RNA sequencing of human microglia uncovers a subset associated with Alzheimer’s disease , 2020, Nature Communications.
[2] A. Kalsbeek,et al. The impact of antidiabetic treatment on human hypothalamic infundibular neurons and microglia , 2020, JCI insight.
[3] D. DeMeo,et al. Sex and gender: modifiers of health, disease, and medicine , 2020, The Lancet.
[4] Ryan M. Cassidy,et al. Paraventricular hypothalamus mediates diurnal rhythm of metabolism , 2020, Nature Communications.
[5] Yiming Chen,et al. Obesity causes selective and long-lasting desensitization of AgRP neurons to dietary fat , 2020, eLife.
[6] Christopher M. Mazzone,et al. High fat food biases hypothalamic and mesolimbic expression of consummatory drives , 2020, Nature Neuroscience.
[7] R. Ransohoff,et al. Differential accumulation of storage bodies with aging defines discrete subsets of microglia in the healthy brain , 2020, eLife.
[8] Ryan M. Cassidy,et al. Disrupted hypothalamic CRH neuron responsiveness contributes to diet‐induced obesity , 2020, EMBO reports.
[9] E. Hsiao,et al. Toward Understanding Microbiome-Neuronal Signaling. , 2020, Molecular cell.
[10] R. Sankowski,et al. Microglia Heterogeneity in the Single-Cell Era. , 2020, Cell reports.
[11] Mi Yang,et al. Reducing Hypothalamic Stem Cell Senescence Protects against Aging-Associated Physiological Decline. , 2020, Cell metabolism.
[12] G. F. Gomes,et al. High-refined carbohydrate diet consumption induces neuroinflammation and anxiety-like behavior in mice. , 2019, The Journal of nutritional biochemistry.
[13] H. Herzog. Integrated pathways that control stress and energy homeostasis , 2019, Nature Reviews Endocrinology.
[14] F. Lenfant,et al. Sex differences in metabolic regulation and diabetes susceptibility , 2019, Diabetologia.
[15] N. Yoon,et al. Microglial UCP2 Mediates Inflammation and Obesity Induced by High-Fat Feeding. , 2019, Cell metabolism.
[16] Kieran Rea,et al. The Microbiota-Gut-Brain Axis. , 2019, Physiological reviews.
[17] T. Werge,et al. Genetic Variants Associated With Anxiety and Stress-Related Disorders: A Genome-Wide Association Study and Mouse-Model Study. , 2019, JAMA psychiatry.
[18] D. Cota,et al. mTORC1 and CB1 receptor signaling regulate excitatory glutamatergic inputs onto the hypothalamic paraventricular nucleus in response to energy availability , 2019, Molecular metabolism.
[19] Benjamin R. Arenkiel,et al. Identification of a neurocircuit underlying regulation of feeding by stress-related emotional responses , 2019, Nature Communications.
[20] M. Romero,et al. Chronic hypercortisolism causes more persistent visceral adiposity than HFD-induced obesity. , 2019, The Journal of endocrinology.
[21] M. Fukuda,et al. A POMC-originated circuit regulates stress-induced hypophagia, depression and anhedonia , 2019, Molecular Psychiatry.
[22] Sinan Khor,et al. "Hypothalamic Microinflammation" Paradigm in Aging and Metabolic Diseases. , 2019, Cell metabolism.
[23] A. Kalsbeek,et al. Diet-Induced Obesity Disturbs Microglial Immunometabolism in a Time-of-Day Manner , 2019, Front. Endocrinol..
[24] Harish S. Appiakannan,et al. Effects of high fat diet and chronic circadian challenge on glucocorticoid regulation in C57BL/6J mice , 2019, Physiology & Behavior.
[25] M. Alfadhel,et al. MYT1L mutation in a patient causes intellectual disability and early onset of obesity: a case report and review of the literature , 2019, Journal of pediatric endocrinology & metabolism : JPEM.
[26] Tom R. Gaunt,et al. Steroid receptor coactivator-1 modulates the function of Pomc neurons and energy homeostasis , 2019, Nature Communications.
[27] Benjamin R. Arenkiel,et al. A lateral hypothalamus to basal forebrain neurocircuit promotes feeding by suppressing responses to anxiogenic environmental cues , 2019, Science Advances.
[28] A. Arnold,et al. Single cell profiling of the VMH reveals a sexually dimorphic regulatory node of energy expenditure , 2019, bioRxiv.
[29] G. Liao,et al. TrkB-expressing neurons in the dorsomedial hypothalamus are necessary and sufficient to suppress homeostatic feeding , 2019, Proceedings of the National Academy of Sciences.
[30] G. Bonvento,et al. Astrocytic mitochondrial ROS modulate brain metabolism and mouse behaviour , 2019, Nature Metabolism.
[31] Yong Xu,et al. Mechanisms for Sex Differences in Energy Homeostasis. , 2019, Journal of molecular endocrinology.
[32] A. Tomiyama,et al. Stress and Obesity. , 2019, Annual review of psychology.
[33] Patrice D Cani,et al. Microbial regulation of organismal energy homeostasis , 2019, Nature Metabolism.
[34] A. Araque,et al. Role of astrocytes, microglia, and tanycytes in brain control of systemic metabolism , 2018, Nature Neuroscience.
[35] B. Beutler,et al. A viable hypomorphic Arnt2 mutation causes hyperphagic obesity, diabetes and hepatic steatosis , 2018, Disease Models & Mechanisms.
[36] A. Walker,et al. Diet induced obesity is independent of metabolic endotoxemia and TLR4 signalling, but markedly increases hypothalamic expression of the acute phase protein, SerpinA3N , 2018, Scientific Reports.
[37] M. Khan,et al. An insight into gut microbiota and its functionalities , 2018, Cellular and Molecular Life Sciences.
[38] Kay M. Tye,et al. Neural Circuit Motifs in Valence Processing , 2018, Neuron.
[39] P. B. Martinez de Morentin,et al. Nucleus of the Solitary Tract Serotonin 5-HT2C Receptors Modulate Food Intake , 2018, Cell metabolism.
[40] J. Deussing,et al. The Corticotropin-Releasing Factor Family: Physiology of the Stress Response. , 2018, Physiological reviews.
[41] J. Bajramovic,et al. An Overview of in vitro Methods to Study Microglia , 2018, Front. Cell. Neurosci..
[42] Diana L. Williams,et al. Endogenous GLP-1 in lateral septum contributes to stress-induced hypophagia , 2018, Physiology & Behavior.
[43] O. Mäkitie,et al. A novel MYT1L mutation in a patient with severe early‐onset obesity and intellectual disability , 2018, American journal of medical genetics. Part A.
[44] T. Yada,et al. Short-chain fatty acids suppress food intake by activating vagal afferent neurons. , 2018, The Journal of nutritional biochemistry.
[45] Y. Chen,et al. Stress Aggravates High-Fat-Diet-Induced Insulin Resistance via a Mechanism That Involves the Amygdala and Is Associated with Changes in Neuroplasticity , 2018, Neuroendocrinology.
[46] E. Flores,et al. TAp63 contributes to sexual dimorphism in POMC neuron functions and energy homeostasis , 2018, Nature Communications.
[47] Minmin Luo,et al. Hypothalamic Circuits for Predation and Evasion , 2018, Neuron.
[48] M. Yamasaki,et al. Olig2-Lineage Astrocytes: A Distinct Subtype of Astrocytes That Differs from GFAP Astrocytes , 2018, Front. Neuroanat..
[49] O. Rønnekleiv,et al. Estradiol Protects Proopiomelanocortin Neurons Against Insulin Resistance , 2018, Endocrinology.
[50] S. Amir,et al. Biological Clocks and Rhythms of Anger and Aggression , 2018, Front. Behav. Neurosci..
[51] D. Vieau,et al. Hypothalamic Alterations in Neurodegenerative Diseases and Their Relation to Abnormal Energy Metabolism , 2018, Front. Mol. Neurosci..
[52] S. Shioda,et al. Activation of AMPK-Regulated CRH Neurons in the PVH is Sufficient and Necessary to Induce Dietary Preference for Carbohydrate over Fat. , 2018, Cell reports.
[53] C. B. de La Serre,et al. Microbiota modulation by eating patterns and diet composition: impact on food intake. , 2018, American journal of physiology. Regulatory, integrative and comparative physiology.
[54] B. Arenkiel,et al. A neural basis for antagonistic control of feeding and compulsive behaviors , 2018, Nature Communications.
[55] Marcelo P. Segura-Lepe,et al. Protein-altering variants associated with body mass index implicate pathways that control energy intake and expenditure underpinning obesity , 2017, Nature Genetics.
[56] M. von Zastrow,et al. Subcellular localization of MC4R with ADCY3 at neuronal primary cilia underlies a common pathway for genetic predisposition to obesity , 2017, Nature Genetics.
[57] M. Giera,et al. Butyrate reduces appetite and activates brown adipose tissue via the gut-brain neural circuit , 2017, Gut.
[58] K. Williams,et al. Melanocortin neurons: Multiple routes to regulation of metabolism. , 2017, Biochimica et biophysica acta. Molecular basis of disease.
[59] R. Eckel,et al. Lipoprotein Lipase Maintains Microglial Innate Immunity in Obesity. , 2017, Cell reports.
[60] D. Cai,et al. Hypothalamic stem cells control aging speed partly through exosomal miRNAs , 2017, Nature.
[61] B. Barres,et al. Microglial Inflammatory Signaling Orchestrates the Hypothalamic Immune Response to Dietary Excess and Mediates Obesity Susceptibility. , 2017, Cell metabolism.
[62] Linda Rinaman,et al. Interoceptive modulation of neuroendocrine, emotional, and hypophagic responses to stress , 2017, Physiology & Behavior.
[63] K. Reue. Sex differences in obesity: X chromosome dosage as a risk factor for increased food intake, adiposity and co-morbidities , 2017, Physiology & Behavior.
[64] A. Kalsbeek,et al. Dietary sugars, not lipids, drive hypothalamic inflammation , 2017, Molecular metabolism.
[65] Yunlei Yang,et al. Neural Circuit Mechanisms Underlying Emotional Regulation of Homeostatic Feeding , 2017, Trends in Endocrinology & Metabolism.
[66] K. Timper,et al. Hypothalamic circuits regulating appetite and energy homeostasis: pathways to obesity , 2017, Disease Models & Mechanisms.
[67] Richard A. Miller,et al. Anti‐aging drugs reduce hypothalamic inflammation in a sex‐specific manner , 2017, Aging cell.
[68] K. Conzelmann,et al. TNFα drives mitochondrial stress in POMC neurons in obesity , 2017, Nature Communications.
[69] J. Brüning,et al. Neuronal control of peripheral insulin sensitivity and glucose metabolism , 2017, Nature Communications.
[70] D. Cai,et al. Astrocytic Process Plasticity and IKKβ/NF-κB in Central Control of Blood Glucose, Blood Pressure, and Body Weight. , 2017, Cell metabolism.
[71] Carolyn Pearson,et al. Stress, overeating, and obesity: Insights from human studies and preclinical models , 2017, Neuroscience & Biobehavioral Reviews.
[72] S. Mathew,et al. The Neurobiological Mechanisms of Generalized Anxiety Disorder and Chronic Stress , 2017, Chronic stress.
[73] Xiaofeng Yan,et al. Activation of Serotonin 2C Receptors in Dopamine Neurons Inhibits Binge-like Eating in Mice , 2017, Biological Psychiatry.
[74] Tuan Leng Tay,et al. A new fate mapping system reveals context-dependent random or clonal expansion of microglia , 2017, Nature Neuroscience.
[75] R. Harris. Repeated restraint stress lowers the threshold for response to third ventricle CRF administration , 2017, Hormones and Behavior.
[76] T. H. Meek,et al. Sex differences in microglial CX3CR1 signalling determine obesity susceptibility in mice , 2017, Nature Communications.
[77] Yongsheng Chang,et al. TrpC5 Mediates Acute Leptin and Serotonin Effects via Pomc Neurons. , 2017, Cell reports.
[78] A. Dey. World report on ageing and health , 2017, The Indian Journal of Medical Research.
[79] Tom R. Gaunt,et al. Epigenome-wide association study of body mass index, and the adverse outcomes of adiposity , 2016, Nature.
[80] Peyman Golshani,et al. New Transgenic Mouse Lines for Selectively Targeting Astrocytes and Studying Calcium Signals in Astrocyte Processes In Situ and In Vivo , 2016, Neuron.
[81] J. Friedman. The long road to leptin. , 2016, The Journal of clinical investigation.
[82] Haifei Shi,et al. Effects of High-Fat Diet on Stress Response in Male and Female Wildtype and Prolactin Knockout Mice , 2016, PloS one.
[83] Jiun-Min Hsu,et al. A C. elegans Thermosensory Circuit Regulates Longevity through crh-1/CREB-Dependent flp-6 Neuropeptide Signaling. , 2016, Developmental cell.
[84] M. Krashes,et al. Hunger-Driven Motivational State Competition , 2016, Neuron.
[85] A. Kauffman,et al. Metabolism and Energy Expenditure, But Not Feeding or Glucose Tolerance, Are Impaired in Young Kiss1r KO Female Mice. , 2016, Endocrinology.
[86] C. Kahn,et al. Astrocytic Insulin Signaling Couples Brain Glucose Uptake with Nutrient Availability , 2016, Cell.
[87] R. Ransohoff. A polarizing question: do M1 and M2 microglia exist? , 2016, Nature Neuroscience.
[88] J. Rathmell,et al. A guide to immunometabolism for immunologists , 2016, Nature Reviews Immunology.
[89] F. Heppner,et al. High-fat diet-induced brain region-specific phenotypic spectrum of CNS resident microglia , 2016, Acta Neuropathologica.
[90] A. Bartolomucci,et al. The Dichotomous Effect of Chronic Stress on Obesity , 2016, Trends in Endocrinology & Metabolism.
[91] S. Kritchevsky,et al. Metformin as a Tool to Target Aging. , 2016, Cell metabolism.
[92] S. Linnarsson,et al. Origin, fate and dynamics of macrophages at central nervous system interfaces , 2016, Nature Immunology.
[93] Kyuhyung Kim,et al. Food-derived sensory cues modulate longevity via distinct neuroendocrine insulin-like peptides , 2016, Genes & development.
[94] John A. Galdo,et al. Hypoglycemic agents and potential anti-inflammatory activity , 2016, Journal of inflammation research.
[95] R. Huganir,et al. The nutrient sensor OGT in PVN neurons regulates feeding , 2016, Science.
[96] Jian Qiu,et al. AgRP Neural Circuits Mediate Adaptive Behaviors in the Starved State , 2016, Nature Neuroscience.
[97] T. Dinan,et al. Gut microbiota, obesity and diabetes , 2016, Postgraduate Medical Journal.
[98] J. Clayton,et al. Evaluating sex as a biological variable in preclinical research: the devil in the details , 2016, Biology of Sex Differences.
[99] T. Hökfelt,et al. Gut Commensal E. coli Proteins Activate Host Satiety Pathways following Nutrient-Induced Bacterial Growth. , 2016, Cell metabolism.
[100] E. Morselli,et al. A sexually dimorphic hypothalamic response to chronic high-fat diet consumption , 2016, International Journal of Obesity.
[101] Alice M Stamatakis,et al. Lateral Hypothalamic Area Glutamatergic Neurons and Their Projections to the Lateral Habenula Regulate Feeding and Reward , 2016, The Journal of Neuroscience.
[102] Tom Michoel,et al. Microglial brain region-dependent diversity and selective regional sensitivities to ageing , 2015, Nature Neuroscience.
[103] W. Langhans,et al. Vagal mediation of GLP-1's effects on food intake and glycemia , 2015, Physiology & Behavior.
[104] C. Iadecola,et al. Metabolic and Non-Cognitive Manifestations of Alzheimer's Disease: The Hypothalamus as Both Culprit and Target of Pathology. , 2015, Cell metabolism.
[105] W. Langhans,et al. Knockdown of GLP-1 Receptors in Vagal Afferents Affects Normal Food Intake and Glycemia , 2015, Diabetes.
[106] C. Nederkoorn,et al. Impulsivity and overeating in children in the absence and presence of hunger , 2015, Appetite.
[107] J. Holst,et al. Bile Acids Trigger GLP-1 Release Predominantly by Accessing Basolaterally Located G Protein–Coupled Bile Acid Receptors , 2015, Endocrinology.
[108] Eun Ran Kim,et al. Hypothalamic Non-AgRP, Non-POMC GABAergic Neurons Are Required for Postweaning Feeding and NPY Hyperphagia , 2015, The Journal of Neuroscience.
[109] X. Z. S. Xu,et al. Thermosensation and longevity , 2015, Journal of Comparative Physiology A.
[110] A. Colao,et al. The Treatment of Cushing's Disease. , 2015, Endocrine reviews.
[111] S. Kliewer,et al. Bile Acids as Hormones: The FXR-FGF15/19 Pathway , 2015, Digestive Diseases.
[112] O. Garaschuk,et al. Neuroinflammation in Alzheimer's disease , 2015, The Lancet Neurology.
[113] M. Dietrich,et al. Hypothalamic Agrp Neurons Drive Stereotypic Behaviors beyond Feeding , 2015, Cell.
[114] Yong Xu,et al. Progress in the molecular understanding of central regulation of body weight by estrogens , 2015, Obesity.
[115] Benjamin R Arenkiel,et al. GABAergic Projections from Lateral Hypothalamus to Paraventricular Hypothalamic Nucleus Promote Feeding , 2015, The Journal of Neuroscience.
[116] D. Clegg,et al. The sexual dimorphism of obesity , 2015, Molecular and Cellular Endocrinology.
[117] R. Harris,et al. Chronic and acute effects of stress on energy balance: are there appropriate animal models? , 2015, American journal of physiology. Regulatory, integrative and comparative physiology.
[118] J. Speakman. The ‘Fat Mass and Obesity Related’ (FTO) gene: Mechanisms of Impact on Obesity and Energy Balance , 2015, Current Obesity Reports.
[119] Ross M. Fraser,et al. Genetic studies of body mass index yield new insights for obesity biology , 2015, Nature.
[120] Karl Deisseroth,et al. Visualizing Hypothalamic Network Dynamics for Appetitive and Consummatory Behaviors , 2015, Cell.
[121] Stephen A. Allsop,et al. Decoding Neural Circuits that Control Compulsive Sucrose Seeking , 2015, Cell.
[122] V. Montori,et al. Clinical review: Drugs commonly associated with weight change: a systematic review and meta-analysis. , 2015, The Journal of clinical endocrinology and metabolism.
[123] J. Rubenstein,et al. An estrogen-responsive module in the ventromedial hypothalamus selectively drives sex-specific activity in females. , 2015, Cell reports.
[124] A. Bartolomucci,et al. Chronic Subordination Stress Induces Hyperphagia and Disrupts Eating Behavior in Mice Modeling Binge-Eating-Like Disorder , 2015, Front. Nutr..
[125] J. Borén,et al. The androgen receptor confers protection against diet-induced atherosclerosis, obesity, and dyslipidemia in female mice , 2014, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[126] F. Geissmann,et al. Tissue-resident macrophages originate from yolk-sac-derived erythro-myeloid progenitors , 2014, Nature.
[127] K. Ellacott,et al. Evidence for a novel functional role of astrocytes in the acute homeostatic response to high-fat diet intake in mice , 2014, Molecular metabolism.
[128] C. Paladini,et al. Generating bursts (and pauses) in the dopamine midbrain neurons , 2014, Neuroscience.
[129] A. Martin-Villalba,et al. Neurogenesis in the Normal Ageing Hippocampus: A Mini-Review , 2014, Gerontology.
[130] T. Horvath,et al. Mitochondrial dynamics in the central regulation of metabolism , 2014, Nature Reviews Endocrinology.
[131] Jing Wu,et al. O-GlcNAc Transferase Enables AgRP Neurons to Suppress Browning of White Fat , 2014, Cell.
[132] I. Amit,et al. Aging-induced type I interferon response at the choroid plexus negatively affects brain function , 2014, Science.
[133] D. Clegg,et al. Estrogens stimulate serotonin neurons to inhibit binge-like eating in mice. , 2014, The Journal of clinical investigation.
[134] I. Bechmann,et al. Microglial pathology , 2014, Acta neuropathologica communications.
[135] A. Arnold,et al. Conceptual frameworks and mouse models for studying sex differences in physiology and disease: Why compensation changes the game , 2014, Experimental Neurology.
[136] M. Low,et al. 5-HT Obesity Medication Efficacy via POMC Activation is Maintained During Aging , 2014, Endocrinology.
[137] David M. Evans,et al. Genome-wide association study of height-adjusted BMI in childhood identifies functional variant in ADCY3 , 2014, Obesity.
[138] R. Park,et al. Compulsivity in anorexia nervosa: a transdiagnostic concept , 2014, Front. Psychol..
[139] A. Kalsbeek,et al. Estradiol Regulates Brown Adipose Tissue Thermogenesis via Hypothalamic AMPK , 2014, Cell metabolism.
[140] A. Kauffman,et al. Impaired kisspeptin signaling decreases metabolism and promotes glucose intolerance and obesity. , 2014, The Journal of clinical investigation.
[141] D. Allison,et al. Variations in body weight, food intake and body composition after long-term high-fat diet feeding in C57BL/6J Mice , 2014, Obesity.
[142] D. Cai,et al. Obesity- and aging-induced excess of central transforming growth factor-β potentiates diabetic development via an RNA stress response , 2014, Nature Medicine.
[143] Yi Zhang,et al. Chronic stress induces steatohepatitis while decreases visceral fat mass in mice , 2014, BMC Gastroenterology.
[144] Jin Kwon Jeong,et al. Leptin signaling in astrocytes regulates hypothalamic neuronal circuits and feeding , 2014, Nature Neuroscience.
[145] D. Clegg,et al. Sexually dimorphic role of G protein-coupled estrogen receptor (GPER) in modulating energy homeostasis , 2014, Hormones and Behavior.
[146] Mathias Leblanc,et al. TRPV1 Pain Receptors Regulate Longevity and Metabolism by Neuropeptide Signaling , 2014, Cell.
[147] Marco Prinz,et al. Microglia and brain macrophages in the molecular age: from origin to neuropsychiatric disease , 2014, Nature Reviews Neuroscience.
[148] O. Rønnekleiv,et al. Insulin excites anorexigenic proopiomelanocortin neurons via activation of canonical transient receptor potential channels. , 2014, Cell metabolism.
[149] D. Pizzagalli,et al. Depression, stress, and anhedonia: toward a synthesis and integrated model. , 2014, Annual review of clinical psychology.
[150] Luba Sominsky,et al. Eating behavior and stress: a pathway to obesity , 2014, Front. Psychol..
[151] B. Finsen,et al. Accelerated microglial pathology is associated with Aβ plaques in mouse models of Alzheimer’s disease , 2014, Aging cell.
[152] Andreas Stengel,et al. CRF and urocortin peptides as modulators of energy balance and feeding behavior during stress , 2014, Front. Neurosci..
[153] F. Bäckhed,et al. Microbiota-Generated Metabolites Promote Metabolic Benefits via Gut-Brain Neural Circuits , 2014, Cell.
[154] R. Seeley,et al. Hormones and diet, but not body weight, control hypothalamic microglial activity , 2014, Glia.
[155] Rui Zhang,et al. Morbid obesity resulting from inactivation of the ciliary protein CEP19 in humans and mice. , 2013, American journal of human genetics.
[156] J. Elmquist,et al. Serotonin 2C receptors in pro-opiomelanocortin neurons regulate energy and glucose homeostasis. , 2013, The Journal of clinical investigation.
[157] K. Jin,et al. Notch1 signaling modulates neuronal progenitor activity in the subventricular zone in response to aging and focal ischemia , 2013, Aging cell.
[158] E. Stupka,et al. ARNT2 mutation causes hypopituitarism, post-natal microcephaly, visual and renal anomalies. , 2013, Brain : a journal of neurology.
[159] Erik D Herzog,et al. Sirt1 extends life span and delays aging in mice through the regulation of Nk2 homeobox 1 in the DMH and LH. , 2013, Cell metabolism.
[160] Y. Yau,et al. Stress and eating behaviors. , 2013, Minerva endocrinologica.
[161] P. Bork,et al. Richness of human gut microbiome correlates with metabolic markers , 2013, Nature.
[162] E. Prossnitz,et al. GPER deficiency in male mice results in insulin resistance, dyslipidemia, and a proinflammatory state. , 2013, Endocrinology.
[163] A. L. Garcia-Garcia,et al. Social vs. environmental stress models of depression from a behavioural and neurochemical approach , 2013, European Neuropsychopharmacology.
[164] Mehul Dattani,et al. Rare variants in single-minded 1 (SIM1) are associated with severe obesity. , 2013, The Journal of clinical investigation.
[165] Rebecca C Taylor,et al. XBP-1 Is a Cell-Nonautonomous Regulator of Stress Resistance and Longevity , 2013, Cell.
[166] G. Karsenty,et al. Developmental androgen excess programs sympathetic tone and adipose tissue dysfunction and predisposes to a cardiometabolic syndrome in female mice. , 2013, American journal of physiology. Endocrinology and metabolism.
[167] R. Malenka,et al. Double deletion of melanocortin 4 receptors and SAPAP3 corrects compulsive behavior and obesity in mice , 2013, Proceedings of the National Academy of Sciences.
[168] R. Quirion,et al. Aging and long-term caloric restriction regulate neuropeptide Y receptor subtype densities in the rat brain , 2013, Neuropeptides.
[169] D. Cai,et al. Hypothalamic Programming of Systemic Aging Involving IKKβ/NF-κB and GnRH , 2013, Nature.
[170] R. Sinha,et al. Stress as a Common Risk Factor for Obesity and Addiction , 2013, Biological Psychiatry.
[171] S. Yeh,et al. Neuronal Androgen Receptor Regulates Insulin Sensitivity via Suppression of Hypothalamic NF-κB–Mediated PTP1B Expression , 2013, Diabetes.
[172] T. Inagami,et al. Angiotensin AT2 Receptor Contributes towards Gender Bias in Weight Gain , 2013, PloS one.
[173] B. O’Malley,et al. Steroid receptor coactivator-1 mediates estrogenic actions to prevent body weight gain in female mice. , 2013, Endocrinology.
[174] L. Mattar,et al. Depression, anxiety and obsessive–compulsive symptoms in relation to nutritional status and outcome in severe anorexia nervosa , 2012, Psychiatry Research.
[175] S. Hentges,et al. Expression of GABAergic and glutamatergic phenotypic markers in hypothalamic proopiomelanocortin neurons , 2012, The Journal of comparative neurology.
[176] Bin Yang,et al. Targeted estrogen delivery reverses the metabolic syndrome , 2012, Nature Medicine.
[177] Seung-Jae V. Lee,et al. Regulation of lifespan by chemosensory and thermosensory systems: findings in invertebrates and their implications in mammalian aging , 2012, Front. Gene..
[178] K. Tsai,et al. TAp63 is a master transcriptional regulator of lipid and glucose metabolism. , 2012, Cell metabolism.
[179] T. Numakawa,et al. Chronic restraint stress causes anxiety- and depression-like behaviors, downregulates glucocorticoid receptor expression, and attenuates glutamate release induced by brain-derived neurotrophic factor in the prefrontal cortex , 2012, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[180] B. Han,et al. Recapitulation of the Association of the Val66Met Polymorphism of BDNF Gene With BMI in Koreans , 2012, Obesity.
[181] Y. Jan,et al. Rapamycin Ameliorates Age-Dependent Obesity Associated with Increased mTOR Signaling in Hypothalamic POMC Neurons , 2012, Neuron.
[182] H. Pijl,et al. The effects of high fat diet on the basal activity of the hypothalamus-pituitary-adrenal axis in mice. , 2012, The Journal of endocrinology.
[183] D. Cai,et al. IKKβ/NF-κB Disrupts Adult Hypothalamic Neural Stem Cells to Mediate Neurodegenerative Mechanism of Dietary Obesity and Pre-Diabetes , 2012, Nature Cell Biology.
[184] Kristen L. Mueller,et al. Is It Time for a Metagenomic Basis of Therapeutics? , 2012, Science.
[185] E. Alleva,et al. Social deprivation stress is a triggering factor for the emergence of anxiety- and depression-like behaviours and leads to reduced brain BDNF levels in C57BL/6J mice , 2012, Psychoneuroendocrinology.
[186] Satchidananda Panda,et al. Time-restricted feeding without reducing caloric intake prevents metabolic diseases in mice fed a high-fat diet. , 2012, Cell metabolism.
[187] Joachim Spranger,et al. Sexual Dimorphic Regulation of Body Weight Dynamics and Adipose Tissue Lipolysis , 2012, PloS one.
[188] Peter Tontonoz,et al. The Number of X Chromosomes Causes Sex Differences in Adiposity in Mice , 2012, PLoS genetics.
[189] A. Kalsbeek,et al. AgRP and NPY expression in the human hypothalamic infundibular nucleus correlate with body mass index, whereas changes in αMSH are related to type 2 diabetes. , 2012, The Journal of clinical endocrinology and metabolism.
[190] J. Clemente,et al. The Impact of the Gut Microbiota on Human Health: An Integrative View , 2012, Cell.
[191] Michael G. Sugiyama,et al. Sex differences in lipid metabolism and metabolic disease risk. , 2012, Biochemistry and cell biology = Biochimie et biologie cellulaire.
[192] M. Dietrich,et al. Obesity is associated with hypothalamic injury in rodents and humans. , 2012, The Journal of clinical investigation.
[193] V. Holcomb,et al. Estrogen modulates abdominal adiposity and protects female mice from obesity and impaired glucose tolerance , 2012, European Journal of Nutrition.
[194] P. Kwok,et al. Replication and Extension of Association Between Common Genetic Variants in SIM1 and Human Adiposity , 2011, Obesity.
[195] J. Elmquist,et al. Distinct hypothalamic neurons mediate estrogenic effects on energy homeostasis and reproduction. , 2011, Cell metabolism.
[196] L. Vivas,et al. Serotonergic system involvement in the inhibitory action of estrogen on induced sodium appetite in female rats , 2011, Physiology & Behavior.
[197] John F. Cryan,et al. Ingestion of Lactobacillus strain regulates emotional behavior and central GABA receptor expression in a mouse via the vagus nerve , 2011, Proceedings of the National Academy of Sciences.
[198] S. Ghosh,et al. Crosstalk in NF-κB signaling pathways , 2011, Nature Immunology.
[199] J. Kaye,et al. The aging systemic milieu negatively regulates neurogenesis and cognitive function , 2011, Nature.
[200] M. Low,et al. The estrogen receptor α colocalizes with proopiomelanocortin in hypothalamic neurons and binds to a conserved motif present in the neuron-specific enhancer nPE2. , 2011, European journal of pharmacology.
[201] J. Santollo,et al. Estradiol acts in the medial preoptic area, arcuate nucleus, and dorsal raphe nucleus to reduce food intake in ovariectomized rats , 2011, Hormones and Behavior.
[202] G. Fishell,et al. Division-coupled astrocytic differentiation and age-related depletion of neural stem cells in the adult hippocampus. , 2011, Cell stem cell.
[203] Donald W. Miller,et al. Fatty acid transport protein expression in human brain and potential role in fatty acid transport across human brain microvessel endothelial cells , 2011, Journal of neurochemistry.
[204] D. M. White,et al. Cold pre‐conditioning neuroprotection depends on TNF‐α and is enhanced by blockade of interleukin‐11 , 2011, Journal of neurochemistry.
[205] H. Münzberg,et al. Early-life exposure to testosterone programs the hypothalamic melanocortin system. , 2011, Endocrinology.
[206] A. Dillin,et al. The Cell-Non-Autonomous Nature of Electron Transport Chain-Mediated Longevity , 2011, Cell.
[207] F. Ginhoux,et al. Fate Mapping Analysis Reveals That Adult Microglia Derive from Primitive Macrophages , 2010, Science.
[208] C. Landry,et al. Molecular characterization of the evolution of phagosomes , 2010, Molecular systems biology.
[209] S. Woods,et al. Meal patterns and hypothalamic NPY expression during chronic social stress and recovery. , 2010, American journal of physiology. Regulatory, integrative and comparative physiology.
[210] D. Richard,et al. Effects of albumin‐conjugated PYY on food intake: the respective roles of the circumventricular organs and vagus nerve , 2010, The European journal of neuroscience.
[211] T. Horvath,et al. Synaptic input organization of the melanocortin system predicts diet-induced hypothalamic reactive gliosis and obesity , 2010, Proceedings of the National Academy of Sciences.
[212] R. Coppari,et al. SIRT1 deacetylase in POMC neurons is required for homeostatic defenses against diet-induced obesity. , 2010, Cell metabolism.
[213] D. Clegg,et al. A microarray analysis of sexual dimorphism of adipose tissues in high-fat-diet-induced obese mice , 2010, International Journal of Obesity.
[214] V. Perry,et al. Microglia in neurodegenerative disease , 2010, Nature Reviews Neurology.
[215] C. Kenyon. The genetics of ageing , 2010, Nature.
[216] A. Zinn,et al. Postnatal Sim1 Deficiency Causes Hyperphagic Obesity and Reduced Mc4r and Oxytocin Expression , 2010, The Journal of Neuroscience.
[217] M. Dallman. Stress-induced obesity and the emotional nervous system , 2010, Trends in Endocrinology & Metabolism.
[218] O. Rønnekleiv,et al. Leptin Excites Proopiomelanocortin Neurons via Activation of TRPC Channels , 2010, The Journal of Neuroscience.
[219] E. Attia. Anorexia nervosa: current status and future directions. , 2010, Annual review of medicine.
[220] P. Elliott,et al. A novel highly-penetrant form of obesity due to microdeletions on chromosome 16p11.2 , 2009, Nature.
[221] W. Brooks,et al. Reduced limbic and hypothalamic volumes correlate with bone density in early Alzheimer's disease. , 2010, Journal of Alzheimer's disease : JAD.
[222] Devanand S. Manoli,et al. Estrogen Masculinizes Neural Pathways and Sex-Specific Behaviors , 2009, Cell.
[223] D. Storm,et al. Adult Type 3 Adenylyl Cyclase–Deficient Mice Are Obese , 2009, PloS one.
[224] Deborah J. Clegg,et al. Sexual differences in the control of energy homeostasis , 2009, Frontiers in Neuroendocrinology.
[225] J. Herman,et al. Neural regulation of endocrine and autonomic stress responses , 2009, Nature Reviews Neuroscience.
[226] Seung-Jae V. Lee,et al. Regulation of the Longevity Response to Temperature by Thermosensory Neurons in Caenorhabditis elegans , 2009, Current Biology.
[227] A. Thomson,et al. Immunoregulatory functions of mTOR inhibition , 2009, Nature Reviews Immunology.
[228] S. Mazmanian,et al. The gut microbiota shapes intestinal immune responses during health and disease , 2009, Nature Reviews Immunology.
[229] M. Siervo,et al. The contribution of psychosocial stress to the obesity epidemic: an evolutionary approach. , 2009, Hormone and metabolic research = Hormon- und Stoffwechselforschung = Hormones et metabolisme.
[230] K. Strissel,et al. Reduced energy expenditure and increased inflammation are early events in the development of ovariectomy-induced obesity. , 2009, Endocrinology.
[231] D. Clegg,et al. Regulatory role of G protein-coupled estrogen receptor for vascular function and obesity. , 2009, Circulation research.
[232] P. Govoni,et al. Metabolic Consequences and Vulnerability to Diet-Induced Obesity in Male Mice under Chronic Social Stress , 2009, PloS one.
[233] S. Boonen,et al. Differential regulation of bone and body composition in male mice with combined inactivation of androgen and estrogen receptor‐α , 2009, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[234] Kevin W. Williams,et al. 5-HT2CRs Expressed by Pro-Opiomelanocortin Neurons Regulate Energy Homeostasis , 2008, Neuron.
[235] M. Lutter,et al. The orexigenic hormone ghrelin defends against depressive symptoms of chronic stress , 2008, Nature Neuroscience.
[236] R. Bibiloni,et al. Changes in Gut Microbiota Control Metabolic Endotoxemia-Induced Inflammation in High-Fat Diet–Induced Obesity and Diabetes in Mice , 2008, Diabetes.
[237] J. Gustafsson,et al. Metabolic Actions of Estrogen Receptor Beta (ERβ) are Mediated by a Negative Cross-Talk with PPARγ , 2008, PLoS genetics.
[238] O. Rønnekleiv,et al. PI3K signaling effects in hypothalamic neurons mediated by estrogen , 2008, The Journal of comparative neurology.
[239] N. Geary,et al. Estradiol enhances cholecystokinin-dependent lipid-induced satiation and activates estrogen receptor-alpha-expressing cells in the nucleus tractus solitarius of ovariectomized rats. , 2007, Endocrinology.
[240] A. Mykletun,et al. Age-specific prevalence of the metabolic syndrome defined by the International Diabetes Federation and the National Cholesterol Education Program: the Norwegian HUNT 2 study , 2007, BMC public health.
[241] W. Colledge,et al. Hypogonadotropic hypogonadism in mice lacking a functional Kiss1 gene , 2007, Proceedings of the National Academy of Sciences.
[242] R. Seymour,et al. An Evidence-Based Update on Nonsteroidal Anti-Inflammatory Drugs , 2007, Clinical Medicine & Research.
[243] D. Pfaff,et al. Silencing of estrogen receptor α in the ventromedial nucleus of hypothalamus leads to metabolic syndrome , 2007, Proceedings of the National Academy of Sciences.
[244] Minghua Li,et al. Neuronal SH2B1 is essential for controlling energy and glucose homeostasis. , 2007, The Journal of clinical investigation.
[245] C. Léránth,et al. Anorectic estrogen mimics leptin's effect on the rewiring of melanocortin cells and Stat3 signaling in obese animals , 2007, Nature Medicine.
[246] G. Barsh,et al. Inactivation of signal transducer and activator of transcription 3 in proopiomelanocortin (Pomc) neurons causes decreased pomc expression, mild obesity, and defects in compensatory refeeding. , 2007, Endocrinology.
[247] M. Block,et al. Microglia-mediated neurotoxicity: uncovering the molecular mechanisms , 2007, Nature Reviews Neuroscience.
[248] E. Mardis,et al. An obesity-associated gut microbiome with increased capacity for energy harvest , 2006, Nature.
[249] S. Bloom,et al. Gut hormones and the regulation of energy homeostasis , 2006, Nature.
[250] E. Schlenker,et al. Sex-specific densities of estrogen receptors alpha and beta in the subnuclei of the nucleus tractus solitarius, hypoglossal nucleus and dorsal vagal motor nucleus weanling rats , 2006, Brain Research.
[251] S. Morrison,et al. Increasing p16INK4a expression decreases forebrain progenitors and neurogenesis during ageing , 2006, Nature.
[252] K. Jin,et al. Turning neurogenesis up a Notch , 2006, Nature Network Boston.
[253] W. Wurst,et al. Inducible gene deletion in astroglia and radial glia—A valuable tool for functional and lineage analysis , 2006, Glia.
[254] S. O’Rahilly,et al. Genetics of obesity in humans. , 2006, Endocrine reviews.
[255] D. Mangelsdorf,et al. Hormonal control of C. elegans dauer formation and life span by a Rieske-like oxygenase. , 2006, Developmental cell.
[256] Hitoshi Inada,et al. Identification of Guanylyl Cyclases That Function in Thermosensory Neurons of Caenorhabditis elegans , 2006, Genetics.
[257] R. Buijs,et al. Ventromedial arcuate nucleus communicates peripheral metabolic information to the suprachiasmatic nucleus. , 2006, Endocrinology.
[258] T. Iwanaga,et al. Short-chain fatty acid receptor, GPR43, is expressed by enteroendocrine cells and mucosal mast cells in rat intestine , 2006, Cell and Tissue Research.
[259] Yi Zhang,et al. Hypothalamic pro-opiomelanocortin gene delivery ameliorates obesity and glucose intolerance in aged rats , 2005, Diabetologia.
[260] M. Cabanac,et al. Chronic stress reduces body fat content in both obesity-prone and obesity-resistant strains of mice , 2005, Hormones and Behavior.
[261] K. Murphy. Kisspeptins: Regulators of Metastasis and the Hypothalamic‐Pituitary‐Gonadal Axis , 2005, Journal of neuroendocrinology.
[262] A. Suzumura,et al. Autocrine activation of microglia by tumor necrosis factor-α , 2005, Journal of Neuroimmunology.
[263] T. Horvath. The hardship of obesity: a soft-wired hypothalamus , 2005, Nature Neuroscience.
[264] S. Kato,et al. Androgen receptor null male mice develop late-onset obesity caused by decreased energy expenditure and lipolytic activity but show normal insulin sensitivity with high adiponectin secretion. , 2005, Diabetes.
[265] G. Debonnel,et al. Oestrogen and Testosterone Modulate the Firing Activity of Dorsal Raphe Nucleus Serotonergic Neurones in Both Male and Female Rats , 2005, Journal of neuroendocrinology.
[266] S. Yeh,et al. Insulin and leptin resistance with hyperleptinemia in mice lacking androgen receptor. , 2005, Diabetes.
[267] E. Syková,et al. Extrasynaptic volume transmission and diffusion parameters of the extracellular space , 2004, Neuroscience.
[268] Ting Wang,et al. The gut microbiota as an environmental factor that regulates fat storage. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[269] S. O’Rahilly,et al. A de novo mutation affecting human TrkB associated with severe obesity and developmental delay , 2004, Nature Neuroscience.
[270] Patrice D Cani,et al. Inulin-type fructans modulate gastrointestinal peptides involved in appetite regulation (glucagon-like peptide-1 and ghrelin) in rats* , 2004, British Journal of Nutrition.
[271] A. Matsumoto,et al. Blunted hypothalamic neuropeptide gene expression in response to fasting, but preservation of feeding responses to AgRP in aging male Brown Norway rats. , 2004, American journal of physiology. Regulatory, integrative and comparative physiology.
[272] I. Merchenthaler,et al. Distribution of estrogen receptor α and β in the mouse central nervous system: In vivo autoradiographic and immunocytochemical analyses , 2004 .
[273] J. Flier. Obesity Wars Molecular Progress Confronts an Expanding Epidemic , 2004, Cell.
[274] C. Kenyon,et al. Regulation of C. elegans Longevity by Specific Gustatory and Olfactory Neurons , 2004, Neuron.
[275] I. Merchenthaler,et al. Distribution of estrogen receptor alpha and beta in the mouse central nervous system: in vivo autoradiographic and immunocytochemical analyses. , 2004, The Journal of comparative neurology.
[276] Jan Nedergaard,et al. Brown adipose tissue: function and physiological significance. , 2004, Physiological reviews.
[277] S. O’Rahilly,et al. The GPR54 gene as a regulator of puberty. , 2004, The New England journal of medicine.
[278] T. Okura,et al. Association of polymorphisms in the estrogen receptor α gene with body fat distribution , 2003, International Journal of Obesity.
[279] E. H. Goulding,et al. Brain-derived neurotrophic factor regulates energy balance downstream of melanocortin-4 receptor , 2003, Nature Neuroscience.
[280] Takahiro Matsumoto,et al. Late onset of obesity in male androgen receptor-deficient (AR KO) mice. , 2003, Biochemical and biophysical research communications.
[281] T. Okura,et al. Association of polymorphisms in the estrogen receptor alpha gene with body fat distribution. , 2003, International journal of obesity and related metabolic disorders : journal of the International Association for the Study of Obesity.
[282] Donald L Riddle,et al. DAF-9, a cytochrome P450 regulating C. elegans larval development and adult longevity. , 2002, Development.
[283] V. Rottiers,et al. A hormonal signaling pathway influencing C. elegans metabolism, reproductive development, and life span. , 2001, Developmental cell.
[284] D. Pfaff,et al. Printed in U.S.A. Copyright © 2001 by The Endocrine Society Deficits in E2-Dependent Control of Feeding, Weight Gain, and Cholecystokinin Satiation in ER- � Null Mice , 2022 .
[285] J. Friedman,et al. Selective deletion of leptin receptor in neurons leads to obesity. , 2001, The Journal of clinical investigation.
[286] M. Belanger,et al. Sex hormones and the selective estrogen receptor modulator tamoxifen modulate weekly body weights and food intakes in adolescent and adult rats. , 2001, The Journal of nutrition.
[287] D. Pfaff,et al. Deficits in E2-dependent control of feeding, weight gain, and cholecystokinin satiation in ER-alpha null mice. , 2001, Endocrinology.
[288] G. Iwamoto,et al. Increased adipose tissue in male and female estrogen receptor-α knockout mice , 2000 .
[289] A. Thorburn,et al. Aromatase-deficient (ArKO) mice have a phenotype of increased adiposity. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[290] G. Iwamoto,et al. Increased adipose tissue in male and female estrogen receptor-alpha knockout mice. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[291] A. Zinn,et al. Profound obesity associated with a balanced translocation that disrupts the SIM1 gene. , 2000, Human molecular genetics.
[292] J. Apfeld,et al. Regulation of lifespan by sensory perception in Caenorhabditis elegans , 1999, Nature.
[293] E. Benveniste,et al. Interleukin-6 expression and regulation in astrocytes , 1999, Journal of Neuroimmunology.
[294] R. Auchus,et al. Estrogen: consequences and implications of human mutations in synthesis and action. , 1999, The Journal of clinical endocrinology and metabolism.
[295] L. Yaswen,et al. Obesity in the mouse model of pro-opiomelanocortin deficiency responds to peripheral melanocortin , 1999, Nature Medicine.
[296] S. O’Rahilly,et al. A frameshift mutation in MC4R associated with dominantly inherited human obesity , 1998, Nature Genetics.
[297] L. Tecott,et al. Leptin-independent hyperphagia and type 2 diabetes in mice with a mutated serotonin 5-HT2C receptor gene , 1998, Nature Medicine.
[298] A. Grüters,et al. Severe early-onset obesity, adrenal insufficiency and red hair pigmentation caused by POMC mutations in humans , 1998, Nature Genetics.
[299] D. Richard,et al. Effects of leptin on corticotropin-releasing factor (CRF) synthesis and CRF neuron activation in the paraventricular hypothalamic nucleus of obese (ob/ob) mice. , 1998, Endocrinology.
[300] K. Clément,et al. A mutation in the human leptin receptor gene causes obesity and pituitary dysfunction , 1998, Nature.
[301] Y. Hurd,et al. Differential distribution and regulation of estrogen receptor-alpha and -beta mRNA within the female rat brain. , 1998, Brain research. Molecular brain research.
[302] R. Cone,et al. Targeted Disruption of the Melanocortin-4 Receptor Results in Obesity in Mice , 1997, Cell.
[303] R. Kessler,et al. The effects of stressful life events on depression. , 1997, Annual review of psychology.
[304] G. Ruvkun,et al. A phosphatidylinositol-3-OH kinase family member regulating longevity and diapause in Caenorhabditis elegans , 1996, Nature.
[305] R. Billiar,et al. Effects of age and long-term ovariectomy on the estrogen-receptor containing subpopulations of beta-endorphin-immunoreactive neurons in the arcuate nucleus of female C57BL/6J mice. , 1995, Neuroendocrinology.
[306] David Julius,et al. Eating disorder and epilepsy in mice lacking 5-HT2C serotonin receptors , 1995, Nature.
[307] W. Snider,et al. Functions of the neurotrophins during nervous system development: What the knockouts are teaching us , 1994, Cell.
[308] C. Kenyon,et al. A C. elegans mutant that lives twice as long as wild type , 1993, Nature.
[309] P N Goodfellow,et al. SRY and sex determination in mammals. , 1993, Annual review of genetics.
[310] J. Micheau,et al. Age-related changes in cortico-releasing factor, somatostatin, neuropeptide Y, methionine enkephalin and β-endorphin in specific rat brain areas , 1992, Brain Research.
[311] P. C. Butera,et al. Central implants of diluted estradiol: independent effects on ingestive and reproductive behaviors of ovariectomized rats , 1989, Brain Research.
[312] P. Emery,et al. Energy balance in rats given chronic hormone treatment , 1989, British Journal of Nutrition.
[313] T. Johnson,et al. A mutation in the age-1 gene in Caenorhabditis elegans lengthens life and reduces hermaphrodite fertility. , 2002, Genetics.
[314] T. Johnson,et al. Three mutants that extend both mean and maximum life span of the nematode, Caenorhabditis elegans, define the age-1 gene. , 1988, Journal of gerontology.
[315] J. Gray,et al. Central vs. peripheral effects of estrogen on food intake and lipoprotein lipase activity in ovariectomized rats , 1986, Physiology & Behavior.
[316] M. Salcman,et al. Brain-blood barrier? Yes and no. , 1983, Proceedings of the National Academy of Sciences of the United States of America.
[317] S. Schwartz,et al. Effects of estradiol and progesterone on food intake, body weight, and carcass adiposity in weanling rats. , 1981, The American journal of physiology.
[318] A. Matsumoto,et al. Sexual dimorphism in ‘wiring pattern’ in the hypothalamic arcuate nucleus and its modification by neonatal hormonal environment , 1980, Brain Research.
[319] N. Shimizu. [Treatment of Cushing's disease]. , 1978, Nihon rinsho. Japanese journal of clinical medicine.
[320] R. Drewett,et al. Sexual Behaviour and Sexual Motivation in the Female Rat , 1973, Nature.
[321] R. Broadwell,et al. Brain-blood barrier ? , 2022 .