Early life adversity as a risk factor for cognitive impairment and Alzheimer’s disease
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[1] Quanguang Zhang,et al. Photobiomodulation attenuates oligodendrocyte dysfunction and prevents adverse neurological consequences in a rat model of early life adversity , 2023, Theranostics.
[2] Bocong Yuan,et al. Longstanding health risk across the life course: The influence of early-life experience on health status throughout the life span. , 2022, Journal of biosocial science.
[3] Yong Tang,et al. Stress-induced myelin damage in the hippocampal formation in a rat model of depression. , 2022, Journal of psychiatric research.
[4] Renée C. Waters,et al. Early Life Adversity and Neuropsychiatric Disease: Differential Outcomes and Translational Relevance of Rodent Models , 2022, Frontiers in Systems Neuroscience.
[5] Jing Zhang,et al. Ganoderma Lucidum Triterpenoids Improve Maternal Separation-Induced Anxiety- and Depression-like Behaviors in Mice by Mitigating Inflammation in the Periphery and Brain , 2022, Nutrients.
[6] S. Tsirka,et al. Chronic stress disrupts the homeostasis and progeny progression of oligodendroglial lineage cells, associating immune oligodendrocytes with prefrontal cortex hypomyelination , 2022, Molecular Psychiatry.
[7] Wei-yang Sun,et al. Inhibition of Adult Hippocampal Neurogenesis Plays a Role in Sevoflurane-Induced Cognitive Impairment in Aged Mice Through Brain-Derived Neurotrophic Factor/Tyrosine Receptor Kinase B and Neurotrophin-3/Tropomyosin Receptor Kinase C Pathways , 2022, Frontiers in Aging Neuroscience.
[8] M. Tremblay,et al. Early stress-induced impaired microglial pruning of excitatory synapses on immature CRH-expressing neurons provokes aberrant adult stress responses , 2022, Cell reports.
[9] R. Zafonte,et al. Association of Adverse Childhood Experiences With Poor Neuropsychiatric Health and Dementia Among Former Professional US Football Players , 2022, JAMA network open.
[10] Quanguang Zhang,et al. Long-term exercise pre-training attenuates Alzheimer’s disease–related pathology in a transgenic rat model of Alzheimer’s disease , 2022, GeroScience.
[11] Nastassia J Hajal,et al. Conceptualizing Emotion Regulation and Coregulation as Family-Level Phenomena , 2022, Clinical child and family psychology review.
[12] K. Ye,et al. Gut microbiota regulate Alzheimer’s disease pathologies and cognitive disorders via PUFA-associated neuroinflammation , 2022, Gut.
[13] Wei Zhang,et al. Adverse Childhood Experiences and Mild Cognitive Impairment in Later Life: Exploring Rural/Urban and Gender Differences Using CHARLS , 2021, Journal of applied gerontology : the official journal of the Southern Gerontological Society.
[14] Vrinda Kalia,et al. Adverse childhood experiences (ACEs) associated with reduced cognitive flexibility in both college and community samples , 2021, PloS one.
[15] L. Jennings,et al. The Association Between Adverse Childhood Experiences and Positive Dementia Screen in American Older Adults , 2021, Journal of General Internal Medicine.
[16] M. Oh,et al. Transplantation of gut microbiota derived from Alzheimer’s disease mouse model impairs memory function and neurogenesis in C57BL/6 mice , 2021, Brain, Behavior, and Immunity.
[17] J. Fichna,et al. The role of microbiota-gut-brain axis in neuropsychiatric and neurological disorders. , 2021, Pharmacological research.
[18] Peiyuan Qiu,et al. The influence of childhood adversities on mid to late cognitive function: From the perspective of life course , 2021, PloS one.
[19] S. Ryu,et al. Disease Burdens of Alzheimer's Disease, Vascular Dementia, and Mild Cognitive Impairment. , 2021, Journal of the American Medical Directors Association.
[20] S. Laws,et al. Chronic stress and Alzheimer's disease: the interplay between the hypothalamic–pituitary–adrenal axis, genetics and microglia , 2021, Biological reviews of the Cambridge Philosophical Society.
[21] J. Sáez,et al. Reduced Oligodendrocyte Precursor Cell Impairs Astrocytic Development in Early Life Stress , 2021, Advanced science.
[22] Xinyan Han,et al. Early-Life Intervention Using Exogenous Fecal Microbiota Alleviates Gut Injury and Reduce Inflammation Caused by Weaning Stress in Piglets , 2021, Frontiers in Microbiology.
[23] J. Chan,et al. Enhancing myelin renewal reverses cognitive dysfunction in a murine model of Alzheimer’s disease , 2021, Neuron.
[24] M. Cunningham,et al. Acute systemic inflammation exacerbates neuroinflammation in Alzheimer's disease: IL‐1β drives amplified responses in primed astrocytes and neuronal network dysfunction , 2021, Alzheimer's & dementia : the journal of the Alzheimer's Association.
[25] B. Naliboff,et al. Early life adversity predicts brain-gut alterations associated with increased stress and mood , 2021, Neurobiology of Stress.
[26] Qiaoqin Wan,et al. Comparative efficacy of various exercise interventions on cognitive function in patients with mild cognitive impairment or dementia: A systematic review and network meta-analysis , 2021, Journal of sport and health science.
[27] K. Kondo,et al. Adverse Childhood Experiences and Dementia: Interactions With Social Capital in the Japan Gerontological Evaluation Study Cohort. , 2021, American journal of preventive medicine.
[28] M. Peeri,et al. Exercise and fluoxetine treatment during adolescence protect against early life stress-induced behavioral abnormalities in adult rats , 2021, Pharmacology Biochemistry and Behavior.
[29] Xuebo Liu,et al. Mannan oligosaccharide attenuates cognitive and behavioral disorders in the 5xFAD Alzheimer's disease mouse model via regulating the gut microbiota-brain axis , 2021, Brain, Behavior, and Immunity.
[30] J. Jia,et al. Gut Microbiota Changes and Their Correlation with Cognitive and Neuropsychiatric Symptoms in Alzheimer's Disease. , 2021, Journal of Alzheimer's disease : JAD.
[31] A. Rábano,et al. Evidences for Adult Hippocampal Neurogenesis in Humans , 2021, The Journal of Neuroscience.
[32] V. Sheibani,et al. Effects of short environmental enrichment on early‐life adversity induced cognitive alternations in adolescent rats , 2021, Journal of neuroscience research.
[33] Jason M. Nagata,et al. Adverse childhood events and cognitive function among young adults: Prospective results from the national longitudinal study of adolescent to adult health. , 2021, Child abuse & neglect.
[34] T. Baram,et al. Neurodevelopmental origins of substance use disorders: Evidence from animal models of early‐life adversity and addiction , 2021, The European journal of neuroscience.
[35] Jong Woo Kim,et al. Early-Life Stress Modulates Gut Microbiota and Peripheral and Central Inflammation in a Sex-Dependent Manner , 2021, International journal of molecular sciences.
[36] Jun Peng,et al. Gut Microbiome Features of Chinese Patients Newly Diagnosed with Alzheimer's Disease or Mild Cognitive Impairment. , 2021, Journal of Alzheimer's Disease.
[37] Jun Wang,et al. Involvement of the microbiota-gut-brain axis in chronic restraint stress: disturbances of the kynurenine metabolic pathway in both the gut and brain , 2021, Gut microbes.
[38] Ping Liu,et al. Altered Gut Microbial Metabolites in Amnestic Mild Cognitive Impairment and Alzheimer’s Disease: Signals in Host–Microbe Interplay , 2021, Nutrients.
[39] M. Hasegawa,et al. Early-life stress induces the development of Alzheimer's disease pathology via angiopathy , 2020, Experimental Neurology.
[40] I. Gotlib,et al. The Social Ecology of Childhood and Early Life Adversity , 2020, Pediatric Research.
[41] Y. Noam,et al. Unexpected Transcriptional Programs Contribute to Hippocampal Memory Deficits and Neuronal Stunting after Early-Life Adversity , 2020, Cell reports.
[42] M. Gunnar,et al. Microbiota-immune alterations in adolescents following early life adversity: A proof of concept study. , 2020, Developmental psychobiology.
[43] Xiaoming Hu. Microglia/macrophage polarization: Fantasy or evidence of functional diversity? , 2020, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[44] M. Bigdeli,et al. Hypericin ameliorates maternal separation-induced cognitive deficits and hippocampal inflammation in rats. , 2020, Mini reviews in medicinal chemistry.
[45] Zengqiang Yuan,et al. Stress-induced NLRP3 inflammasome activation negatively regulates fear memory in mice , 2020, Journal of Neuroinflammation.
[46] F. Khodagholi,et al. Early postnatal stress impairs insulin secretion in response to psychological stress in adult rats , 2020, Journal of Endocrinological Investigation.
[47] Peter B. Jones,et al. Childhood socio‐economic disadvantage predicts reduced myelin growth across adolescence and young adulthood , 2020, Human brain mapping.
[48] E. Lunkenheimer,et al. Understanding the parent-child coregulation patterns shaping child self-regulation. , 2020, Developmental psychology.
[49] H. Baik,et al. Probiotic Supplementation Improves Cognitive Function and Mood with Changes in Gut Microbiota in Community-Dwelling Older Adults: A Randomized, Double-Blind, Placebo-Controlled, Multicenter Trial , 2020, The journals of gerontology. Series A, Biological sciences and medical sciences.
[50] N. Brydges,et al. Environmental enrichment rescues survival and function of adult-born neurons following early life stress , 2020, Molecular Psychiatry.
[51] N. Mastorakis,et al. Stress-induced blood brain barrier disruption: molecular mechanisms and signaling pathways. , 2020, Pharmacological research.
[52] Tae-Beom Seo,et al. Effects of treadmill exercise on activity, short-term memory, vascular dysfunction in maternal separation rats , 2020, Journal of exercise rehabilitation.
[53] Wu Enqi,et al. Comparison of the Gut Microbiota Disturbance in Rat Models of Irritable Bowel Syndrome Induced by Maternal Separation and Multiple Early-Life Adversity , 2020, Frontiers in Cellular and Infection Microbiology.
[54] J. Chan,et al. Myelin degeneration and diminished myelin renewal contribute to age-related deficits in memory , 2020, Nature Neuroscience.
[55] M. Kheirbek,et al. Preservation of a remote fear memory requires new myelin formation , 2020, Nature Neuroscience.
[56] K. Kondo,et al. Association Between Adverse Childhood Experiences and Dementia in Older Japanese Adults. , 2020, JAMA network open.
[57] N. Tottenham. Early Adversity and the Neotenous Human Brain , 2020, Biological Psychiatry.
[58] Nuria K. Mackes,et al. Early childhood deprivation is associated with alterations in adult brain structure despite subsequent environmental enrichment , 2020, Proceedings of the National Academy of Sciences.
[59] P. Mello-Carpes,et al. Maternal deprivation impairs memory and cognitive flexibility, effect that is avoided by environmental enrichment , 2020, Behavioural Brain Research.
[60] D. Morris,et al. Effects of early life adversity on immune function and cognitive performance: results from the ALSPAC cohort , 2020, Social Psychiatry and Psychiatric Epidemiology.
[61] P. Lucassen,et al. Characterization of astrocytes throughout life in wildtype and APP/PS1 mice after early-life stress exposure , 2019, Journal of Neuroinflammation.
[62] Andrew J. Mocle,et al. Disruption of Oligodendrogenesis Impairs Memory Consolidation in Adult Mice , 2019, Neuron.
[63] Junrong Du,et al. Probiotics modulate the microbiota–gut–brain axis and improve memory deficits in aged SAMP8 mice , 2019, Acta pharmaceutica Sinica. B.
[64] Christopher M. Jones,et al. Identifying and Preventing Adverse Childhood Experiences: Implications for Clinical Practice. , 2020, JAMA.
[65] Y. Kakinuma,et al. Stress-induced microglial activation occurs through β-adrenergic receptor: noradrenaline as a key neurotransmitter in microglial activation , 2019, Journal of Neuroinflammation.
[66] Tao Li,et al. Myelin Deficits Caused by Olig2 Deficiency Lead to Cognitive Dysfunction and Increase Vulnerability to Social Withdrawal in Adult Mice , 2019, Neuroscience Bulletin.
[67] E. Boda. Myelin and oligodendrocyte lineage cell dysfunctions: New players in the etiology and treatment of depression and stress‐related disorders , 2019, The European journal of neuroscience.
[68] L. Buée,et al. NLRP3 inflammasome activation drives tau pathology , 2019, Nature.
[69] Kieran Rea,et al. The Microbiota-Gut-Brain Axis. , 2019, Physiological reviews.
[70] Huidong Tang,et al. Mild cognitive impairment has similar alterations as Alzheimer's disease in gut microbiota , 2019, Alzheimer's & Dementia.
[71] T. Baram,et al. Early-life adversity and neurological disease: age-old questions and novel answers , 2019, Nature Reviews Neurology.
[72] I. Mook‐Jung,et al. Transfer of a healthy microbiota reduces amyloid and tau pathology in an Alzheimer’s disease animal model , 2019, Gut.
[73] M. Bertolotti,et al. Omega-3 Fatty Acids and Neurodegenerative Diseases: New Evidence in Clinical Trials , 2019, International journal of molecular sciences.
[74] P. Gaspar,et al. Early-life stress impairs postnatal oligodendrogenesis and adult emotional behaviour through activity-dependent mechanisms , 2019, Molecular Psychiatry.
[75] Gary F. Temple,et al. Region-specific myelin differences define behavioral consequences of chronic social defeat stress in mice , 2019, eLife.
[76] N. Fox,et al. Global deficits in executive functioning are transdiagnostic mediators between severe childhood neglect and psychopathology in adolescence , 2019, Psychological Medicine.
[77] M. Joëls,et al. Sex-Dependent Modulation of Acute Stress Reactivity After Early Life Stress in Mice: Relevance of Mineralocorticoid Receptor Expression , 2019, Front. Behav. Neurosci..
[78] M. Leboyer,et al. Multi-hit early life adversity affects gut microbiota, brain and behavior in a sex-dependent manner , 2019, Brain, Behavior, and Immunity.
[79] K. Bath,et al. Limited Bedding and Nesting Induces Maternal Behavior Resembling Both Hypervigilance and Abuse , 2019, Front. Behav. Neurosci..
[80] P. Lucassen,et al. Treatment with the glutamate modulator riluzole prevents early life stress-induced cognitive deficits and impairments in synaptic plasticity in APPswe/PS1dE9 mice , 2019, Neuropharmacology.
[81] L. D. de Souza,et al. Alzheimer’s disease: risk factors and potentially protective measures , 2019, Journal of Biomedical Science.
[82] Vanni Bucci,et al. Alzheimer’s Disease Microbiome Is Associated with Dysregulation of the Anti-Inflammatory P-Glycoprotein Pathway , 2019, mBio.
[83] Sudha Seshadri,et al. Physical inactivity, cardiometabolic disease, and risk of dementia: an individual-participant meta-analysis , 2019, BMJ.
[84] A. Minihane,et al. APOE genotype influences the gut microbiome structure and function in humans and mice: relevance for Alzheimer’s disease pathophysiology , 2019, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[85] R. Richardson,et al. Early-life stress, microbiota, and brain development: probiotics reverse the effects of maternal separation on neural circuits underpinning fear expression and extinction in infant rats , 2019, Developmental Cognitive Neuroscience.
[86] Jesús Ávila,et al. Adult hippocampal neurogenesis is abundant in neurologically healthy subjects and drops sharply in patients with Alzheimer’s disease , 2019, Nature Medicine.
[87] M. Liong,et al. Lactobacillus paracasei PS23 reduced early-life stress abnormalities in maternal separation mouse model. , 2019, Beneficial microbes.
[88] E. D. Leonardo,et al. Early life stress delays hippocampal development and diminishes the adult stem cell pool in mice , 2019, Scientific Reports.
[89] G. Kempermann. Environmental enrichment, new neurons and the neurobiology of individuality , 2019, Nature Reviews Neuroscience.
[90] W. Abraham,et al. Environmental enrichment effects on synaptic and cellular physiology of hippocampal neurons , 2019, Neuropharmacology.
[91] H. Tiemeier,et al. Prenatal maternal psychopathology and stress and offspring HPA axis function at 6 years , 2019, Psychoneuroendocrinology.
[92] P. Lucassen,et al. Increasing availability of ω‐3 fatty acid in the early‐life diet prevents the early‐life stress‐induced cognitive impairments without affecting metabolic alterations , 2019, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[93] Nicola J. Ray,et al. Neuroinflammation in mild cognitive impairment and Alzheimer’s disease: A meta-analysis , 2019, Ageing Research Reviews.
[94] Dan J Stein,et al. Global, regional, and national burden of Alzheimer's disease and other dementias, 1990–2016: a systematic analysis for the Global Burden of Disease Study 2016 , 2019, The Lancet Neurology.
[95] E. Mayer,et al. The Gut–Brain Axis and the Microbiome: Mechanisms and Clinical Implications , 2019, Clinical gastroenterology and hepatology : the official clinical practice journal of the American Gastroenterological Association.
[96] A. El Hessni,et al. Animal Models of Early-Life Adversity. , 2019, Methods in molecular biology.
[97] L. Grinkevich,et al. Stress early in life leads to cognitive impairments, reduced numbers of CA3 neurons and altered maternal behavior in adult female mice , 2018, Genes, brain, and behavior.
[98] K. Walker. Inflammation and neurodegeneration: chronicity matters , 2018, Aging.
[99] P. Licona-Limón,et al. Early life stress accelerates age-induced effects on neurogenesis, depression, and metabolic risk , 2018, Psychoneuroendocrinology.
[100] E. Newcombe,et al. Inflammation: the link between comorbidities, genetics, and Alzheimer’s disease , 2018, Journal of Neuroinflammation.
[101] Yong Cheng,et al. Cerebrospinal Fluid Inflammatory Cytokine Aberrations in Alzheimer's Disease, Parkinson's Disease and Amyotrophic Lateral Sclerosis: A Systematic Review and Meta-Analysis , 2018, Front. Immunol..
[102] Eunhee Kim,et al. Combined adult neurogenesis and BDNF mimic exercise effects on cognition in an Alzheimer’s mouse model , 2018, Science.
[103] T. Tuomainen,et al. Association of childhood stress with late-life dementia and Alzheimer’s disease: the KIHD study , 2018, European journal of public health.
[104] Huadong Zhou,et al. Gut Microbiota is Altered in Patients with Alzheimer's Disease. , 2018, Journal of Alzheimer's disease : JAD.
[105] S. Lightman,et al. Role of glucocorticoid negative feedback in the regulation of HPA axis pulsatility , 2018, Stress.
[106] Yuqin Ye,et al. Sex differences in associations between maternal deprivation and alterations in hippocampal calcium-binding proteins and cognitive functions in rats , 2018, Behavioral and Brain Functions.
[107] Nicholas M. Timme,et al. Maternal deprivation induces alterations in cognitive and cortical function in adulthood , 2018, Translational Psychiatry.
[108] F. Shahidi,et al. Omega-3 Polyunsaturated Fatty Acids and Their Health Benefits. , 2018, Annual review of food science and technology.
[109] J. Gleeson,et al. Early life experience shapes neural genome , 2018, Science.
[110] S. Weggen,et al. Targeting glucocorticoid receptors prevents the effects of early life stress on amyloid pathology and cognitive performance in APP/PS1 mice , 2018, Translational Psychiatry.
[111] F. Jessen,et al. Characterization and clinical use of inflammatory cerebrospinal fluid protein markers in Alzheimer’s disease , 2018, Alzheimer's Research & Therapy.
[112] T. Smeeding,et al. A Universal Child Allowance: A Plan to Reduce Poverty and Income Instability Among Children in the United States , 2018, RSF.
[113] P. Lucassen,et al. A preclinical perspective on the enhanced vulnerability to Alzheimer's disease after early-life stress , 2018, Neurobiology of Stress.
[114] Qiu-qin Han,et al. Microglial activation mediates chronic mild stress-induced depressive- and anxiety-like behavior in adult rats , 2018, Journal of Neuroinflammation.
[115] Y. Takatsuru,et al. Early-life stress induces cognitive disorder in middle-aged mice , 2017, Neurobiology of Aging.
[116] M. Rutter,et al. HPA axis dysregulation in adult adoptees twenty years after severe institutional deprivation in childhood , 2017, Psychoneuroendocrinology.
[117] W. D. de Vos,et al. The First Microbial Colonizers of the Human Gut: Composition, Activities, and Health Implications of the Infant Gut Microbiota , 2017, Microbiology and Molecular Biology Reviews.
[118] H. Shair,et al. Lasting effects of early life stress in mice: interaction of maternal environment and infant genes , 2017, Genes, brain, and behavior.
[119] Sterling C. Johnson,et al. Gut microbiome alterations in Alzheimer’s disease , 2017, Scientific Reports.
[120] R. Cumming,et al. Childhood Stress and Adversity is Associated with Late-Life Dementia in Aboriginal Australians. , 2017, The American journal of geriatric psychiatry : official journal of the American Association for Geriatric Psychiatry.
[121] Tzong-Shiue Yu,et al. Depletion of adult neurogenesis exacerbates cognitive deficits in Alzheimer’s disease by compromising hippocampal inhibition , 2017, Molecular Neurodegeneration.
[122] B. Kolb,et al. Prenatal noise stress impairs HPA axis and cognitive performance in mice , 2017, Scientific Reports.
[123] P. Lucassen,et al. Early‐life stress diminishes the increase in neurogenesis after exercise in adult female mice , 2017, Hippocampus.
[124] S. Salim,et al. Behavioral and cognitive impact of early life stress: Insights from an animal model , 2017, Progress in Neuro-Psychopharmacology and Biological Psychiatry.
[125] M. Bellis,et al. The effect of multiple adverse childhood experiences on health: a systematic review and meta-analysis. , 2017, The Lancet. Public health.
[126] M. Meaney,et al. Association of a History of Child Abuse With Impaired Myelination in the Anterior Cingulate Cortex: Convergent Epigenetic, Transcriptional, and Morphological Evidence. , 2017, The American journal of psychiatry.
[127] P. Lucassen,et al. Early-life stress lastingly alters the neuroinflammatory response to amyloid pathology in an Alzheimer’s disease mouse model , 2017, Brain, Behavior, and Immunity.
[128] R. Hen,et al. Adult hippocampal neurogenesis and cognitive flexibility — linking memory and mood , 2017, Nature Reviews Neuroscience.
[129] M. Colonna,et al. Microglia Function in the Central Nervous System During Health and Neurodegeneration. , 2017, Annual review of immunology.
[130] Fang Pan,et al. Effects of Traumatic Stress Induced in the Juvenile Period on the Expression of Gamma-Aminobutyric Acid Receptor Type A Subunits in Adult Rat Brain , 2017, Neural plasticity.
[131] M. Joëls,et al. Effects of early-life stress on cognitive function and hippocampal structure in female rodents , 2017, Neuroscience.
[132] N. Jia,et al. Maternal separation exacerbates Alzheimer’s disease-like behavioral and pathological changes in adult APPswe/PS1dE9 mice , 2017, Behavioural Brain Research.
[133] Bao-Ming Li,et al. Neonatal Maternal Separation Impairs Prefrontal Cortical Myelination and Cognitive Functions in Rats Through Activation of Wnt Signaling , 2016, Cerebral cortex.
[134] Rob Knight,et al. Gut Microbiota Regulate Motor Deficits and Neuroinflammation in a Model of Parkinson’s Disease , 2016, Cell.
[135] K. Wawrowsky,et al. Chronic peripheral inflammation, hippocampal neurogenesis, and behavior , 2016, Brain, Behavior, and Immunity.
[136] Brian D. Boyd,et al. Effects of early life stress on depression, cognitive performance and brain morphology , 2016, Psychological Medicine.
[137] R. Grassi‐Oliveira,et al. Cognitive impairment effects of early life stress in adolescents can be predicted with early biomarkers: Impacts of sex, experience, and cytokines , 2016, Psychoneuroendocrinology.
[138] M. Hosseini,et al. Adolescent voluntary exercise attenuated hippocampal innate immunity responses and depressive-like behaviors following maternal separation stress in male rats , 2016, Physiology & Behavior.
[139] Alon Chen,et al. Genetic predisposition for high stress reactivity amplifies effects of early-life adversity , 2016, Psychoneuroendocrinology.
[140] Alejandra Ochoa-Zarzosa,et al. Maternal separation activates microglial cells and induces an inflammatory response in the hippocampus of male rat pups, independently of hypothalamic and peripheral cytokine levels , 2016, Brain, Behavior, and Immunity.
[141] Tanya Narahari,et al. Effects of early adolescent environmental enrichment on cognitive dysfunction, prefrontal cortex development, and inflammatory cytokines after early life stress. , 2016, Developmental psychobiology.
[142] K. Hsu,et al. Early life stress dampens stress responsiveness in adolescence: Evaluation of neuroendocrine reactivity and coping behavior , 2016, Psychoneuroendocrinology.
[143] T. Dinan,et al. Regulation of prefrontal cortex myelination by the microbiota , 2016, Translational Psychiatry.
[144] Katie A. McLaughlin,et al. Future Directions in Childhood Adversity and Youth Psychopathology , 2016, Journal of clinical child and adolescent psychology : the official journal for the Society of Clinical Child and Adolescent Psychology, American Psychological Association, Division 53.
[145] T. Baram,et al. Fragmentation and high entropy of neonatal experience predict adolescent emotional outcome , 2016, Translational psychiatry.
[146] T. Dinan,et al. N-3 Polyunsaturated Fatty Acids (PUFAs) Reverse the Impact of Early-Life Stress on the Gut Microbiota , 2015, PloS one.
[147] T. Dinan,et al. n-3 PUFAs have beneficial effects on anxiety and cognition in female rats: Effects of early life stress , 2015, Psychoneuroendocrinology.
[148] De-xiang Liu,et al. Long-term effects of early adolescent stress: dysregulation of hypothalamic–pituitary–adrenal axis and central corticotropin releasing factor receptor 1 expression in adult male rats , 2015, Behavioural Brain Research.
[149] I. Amit,et al. Host microbiota constantly control maturation and function of microglia in the CNS , 2015, Nature Neuroscience.
[150] M. López-Gallardo,et al. The maternal deprivation animal model revisited , 2015, Neuroscience & Biobehavioral Reviews.
[151] S. Lazic,et al. Chronic early life stress alters developmental and adult neurogenesis and impairs cognitive function in mice , 2015, Hippocampus.
[152] Melissa T. Merrick,et al. Childhood adversity and adult chronic disease: an update from ten states and the District of Columbia, 2010. , 2015, American journal of preventive medicine.
[153] Klaus-Armin Nave,et al. Oligodendrocytes: Myelination and Axonal Support. , 2015, Cold Spring Harbor perspectives in biology.
[154] Frances A Champagne,et al. Early-Life Experience, Epigenetics, and the Developing Brain , 2015, Neuropsychopharmacology.
[155] F. Khodagholi,et al. Effect of early life stress on pancreatic isolated islets’ insulin secretion in young adult male rats subjected to chronic stress , 2015, Endocrine.
[156] J. Pollock,et al. A mechanistic look at the effects of adversity early in life on cardiovascular disease risk during adulthood , 2014, Acta physiologica.
[157] P. Vemuri,et al. Clinical epidemiology of Alzheimer’s disease: assessing sex and gender differences , 2014, Clinical epidemiology.
[158] R. Feldman,et al. Maternal-Preterm Skin-to-Skin Contact Enhances Child Physiologic Organization and Cognitive Control Across the First 10 Years of Life , 2014, Biological Psychiatry.
[159] F. LaFerla,et al. Mifepristone Alters Amyloid Precursor Protein Processing to Preclude Amyloid Beta and Also Reduces Tau Pathology , 2013, Biological Psychiatry.
[160] J. Morrison,et al. The Brain on Stress: Vulnerability and Plasticity of the Prefrontal Cortex over the Life Course , 2013, Neuron.
[161] J. Eriksson,et al. Cognitive ability and decline after early life stress exposure , 2013, Neurobiology of Aging.
[162] P. Scully,et al. The microbiome-gut-brain axis during early life regulates the hippocampal serotonergic system in a sex-dependent manner , 2013, Molecular Psychiatry.
[163] M. Ramírez,et al. Effects of early maternal separation on biobehavioral and neuropathological markers of Alzheimer's disease in adult male rats. , 2013, Current Alzheimer research.
[164] M. Ramírez,et al. Maternal deprivation effects on brain plasticity and recognition memory in adolescent male and female rats , 2013, Neuropharmacology.
[165] E. Nestler,et al. Early Stress Evokes Age-Dependent Biphasic Changes in Hippocampal Neurogenesis, Bdnf Expression, and Cognition , 2013, Biological Psychiatry.
[166] E. Sternberg,et al. Glucocorticoid regulation of inflammation and its functional correlates: from HPA axis to glucocorticoid receptor dysfunction , 2012, Annals of the New York Academy of Sciences.
[167] Danielle Swanson,et al. Omega-3 fatty acids EPA and DHA: health benefits throughout life. , 2012, Advances in nutrition.
[168] E. Adkins-Regan,et al. Deprivation of maternal care has long-lasting consequences for the hypothalamic–pituitary–adrenal axis of zebra finches , 2012, Proceedings of the Royal Society B: Biological Sciences.
[169] F. Gage,et al. Adult hippocampal neurogenesis and its role in Alzheimer's disease , 2011, Molecular Neurodegeneration.
[170] W. Collins,et al. Early roots of adult competence , 2011, International journal of behavioral development.
[171] B. Kolb,et al. Maternal separation altered behavior and neuronal spine density without influencing amphetamine sensitization , 2011, Behavioural Brain Research.
[172] F. Holsboer,et al. Forebrain CRF1 Modulates Early-Life Stress-Programmed Cognitive Deficits , 2011, The Journal of Neuroscience.
[173] P. Rabins,et al. Early parental death and remarriage of widowed parents as risk factors for Alzheimer disease: the Cache County study. , 2011, The American journal of geriatric psychiatry : official journal of the American Association for Geriatric Psychiatry.
[174] Kelly A. Bordner,et al. Functional Genomic and Proteomic Analysis Reveals Disruption of Myelin-Related Genes and Translation in a Mouse Model of Early Life Neglect , 2011, Front. Psychiatry.
[175] D. Hedges,et al. Early-life stress and cognitive outcome , 2011, Psychopharmacology.
[176] G. Lynch,et al. Hippocampal Dysfunction and Cognitive Impairments Provoked by Chronic Early-Life Stress Involve Excessive Activation of CRH Receptors , 2010, The Journal of Neuroscience.
[177] Monique Ernst,et al. Early-life stress is associated with impairment in cognitive control in adolescence: An fMRI study , 2010, Neuropsychologia.
[178] R. Kessler,et al. Childhood adversities and adult psychiatric disorders in the national comorbidity survey replication II: associations with persistence of DSM-IV disorders. , 2010, Archives of general psychiatry.
[179] S. Maier,et al. Prior exposure to glucocorticoids sensitizes the neuroinflammatory and peripheral inflammatory responses to E. coli lipopolysaccharide , 2010, Brain, Behavior, and Immunity.
[180] B. Gómez-González,et al. Altered functional development of the blood–brain barrier after early life stress in the rat , 2009, Brain Research Bulletin.
[181] P. Scully,et al. Early Life Stress Alters Behavior, Immunity, and Microbiota in Rats: Implications for Irritable Bowel Syndrome and Psychiatric Illnesses , 2009, Biological Psychiatry.
[182] Sara E. Rimm-Kaufman,et al. Positive Mother–child Interactions in Kindergarten: Predictors of School Success in High School , 2008 .
[183] C. Sandman,et al. A novel mouse model for acute and long-lasting consequences of early life stress. , 2008, Endocrinology.
[184] T. Olsson,et al. Increased Saliva Cortisol Awakening Response in Patients with Mild Cognitive Impairment , 2007, Dementia and Geriatric Cognitive Disorders.
[185] C. Nemeroff,et al. Long‐term behavioural and molecular alterations associated with maternal separation in rats , 2007, The European journal of neuroscience.
[186] M. Ramírez,et al. Cognitive impairment associated to HPA axis hyperactivity after maternal separation in rats , 2007, Psychoneuroendocrinology.
[187] J. D. McGaugh,et al. Glucocorticoids Increase Amyloid-β and Tau Pathology in a Mouse Model of Alzheimer’s Disease , 2006, The Journal of Neuroscience.
[188] R. Sege,et al. Anticipatory Guidance and Violence Prevention: Results From Family and Pediatrician Focus Groups , 2006, Pediatrics.
[189] G. Lynch,et al. Mechanisms of Late-Onset Cognitive Decline after Early-Life Stress , 2005, The Journal of Neuroscience.
[190] G. Richter-Levin,et al. Exposure to juvenile stress exacerbates the behavioural consequences of exposure to stress in the adult rat. , 2005, The international journal of neuropsychopharmacology.
[191] B. Ellenbroek,et al. Early maternal deprivation retards neurodevelopment in Wistar rats , 2005, Stress.
[192] Christian Mirescu,et al. Early life experience alters response of adult neurogenesis to stress , 2004, Nature Neuroscience.
[193] O. Lindvall,et al. Inflammation is detrimental for neurogenesis in adult brain , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[194] A. Schatzberg,et al. Slowing the progression of cognitive decline in alzheimer’s disease using mifepristone , 2002, Journal of Molecular Neuroscience.
[195] N. Baumann,et al. Biology of oligodendrocyte and myelin in the mammalian central nervous system. , 2001, Physiological reviews.
[196] A. Schore. Effects of a secure attachment relationship on right brain development, affect regulation, and infant mental health , 2001 .
[197] J. Day,et al. Maternal care, hippocampal synaptogenesis and cognitive development in rats , 2000, Nature Neuroscience.
[198] C. Plata-salamán,et al. Inflammation and Alzheimer’s disease , 2000, Neurobiology of Aging.
[199] D. Williamson,et al. Relationship of childhood abuse and household dysfunction to many of the leading causes of death in adults. The Adverse Childhood Experiences (ACE) Study. , 1998, American journal of preventive medicine.
[200] M. Le Moal,et al. Prenatal Stress Induces High Anxiety and Postnatal Handling Induces Low Anxiety in Adult Offspring: Correlation with Stress-Induced Corticosterone Secretion , 1997, The Journal of Neuroscience.
[201] S. Levine. Stimulation in infancy. , 1960, Scientific American.
[202] G. Briggs,et al. Inapparent lymphocytic choriomeningitis infection in folic acid-deficient mice. , 1957, Science.