Sleep fragmentation affects glymphatic system through the different expression of AQP4 in wild type and 5xFAD mouse models
暂无分享,去创建一个
A. Casile | M. Guglielmotto | A. Cicolin | E. Tamagno | Valeria Vasciaveo | Antonella Iadarola | Davide Dante | Giulia Morello | Lorenzo Minotta | D. Dante | Michela Guglielmotto
[1] F. Turkheimer,et al. Aquaporin-4 cerebrospinal fluid levels are higher in neurodegenerative dementia: looking at glymphatic system dysregulation , 2022, Alzheimer's Research & Therapy.
[2] M. Zhang,et al. Does Chronic Sleep Fragmentation Lead to Alzheimer's Disease in Young Wild-Type Mice? , 2021, Frontiers in Aging Neuroscience.
[3] R. Czajkowski,et al. Retrosplenial cortex in spatial memory: focus on immediate early genes mapping , 2021, Molecular Brain.
[4] T. Fenzl,et al. Altered sleep behavior in a genetic mouse model of impaired fear extinction , 2021, Scientific Reports.
[5] S. Goldman,et al. Glymphatic failure as a final common pathway to dementia , 2020, Science.
[6] M. Nedergaard,et al. Circadian control of brain glymphatic and lymphatic fluid flow , 2020, Nature Communications.
[7] Ian F. Harrison,et al. Impaired glymphatic function and clearance of tau in an Alzheimer’s disease model , 2020, Brain : a journal of neurology.
[8] B. O’Hara,et al. A comparative study of sleep and diurnal patterns in house mouse (Mus musculus) and Spiny mouse (Acomys cahirinus) , 2020, Scientific Reports.
[9] C. Guttmann,et al. Perivascular Unit: This Must Be the Place. The Anatomical Crossroad Between the Immune, Vascular and Nervous System , 2020, Frontiers in Neuroanatomy.
[10] David Kleinfeld,et al. Cerebrospinal fluid influx drives acute ischemic tissue swelling , 2020, Science.
[11] Jian Song,et al. Chronic stress impairs the aquaporin-4-mediated glymphatic transport through glucocorticoid signaling , 2019, Psychopharmacology.
[12] H. Hirase,et al. Aquaporin-4-dependent glymphatic solute transport in the rodent brain , 2018, eLife.
[13] J. Trojanowski,et al. Connexin‐43 and aquaporin‐4 are markers of ageing‐related tau astrogliopathy (ARTAG)‐related astroglial response , 2018, Neuropathology and applied neurobiology.
[14] Joanna Wardlaw,et al. The Glymphatic System and Waste Clearance with Brain Aging: A Review , 2018, Gerontology.
[15] H. Morrison,et al. Quantifying Microglia Morphology from Photomicrographs of Immunohistochemistry Prepared Tissue Using ImageJ , 2018, Journal of visualized experiments : JoVE.
[16] G. Buzsáki,et al. Transformation of a Spatial Map across the Hippocampal-Lateral Septal Circuit , 2018, Neuron.
[17] C. Rowe,et al. GENETIC VARIATION IN AQUAPORINS MODERATES THE RELATIONSHIP BETWEEN SLEEP AND BRAIN Aβ-AMYLOID BURDEN , 2018, Alzheimer's & Dementia.
[18] C. Goldsbury,et al. Microglia show altered morphology and reduced arborization in human brain during aging and Alzheimer's disease , 2017, Brain pathology.
[19] Xiaoming Yao,et al. Test of the 'glymphatic' hypothesis demonstrates diffusive and aquaporin-4-independent solute transport in rodent brain parenchyma , 2017, eLife.
[20] M. Walker,et al. The sleep-deprived human brain , 2017, Nature Reviews Neuroscience.
[21] E. Maywood,et al. Astrocytes Control Circadian Timekeeping in the Suprachiasmatic Nucleus via Glutamatergic Signaling , 2017, Neuron.
[22] Blake A. Richards,et al. Bidirectional Control of Anxiety-Related Behaviors in Mice: Role of Inputs Arising from the Ventral Hippocampus to the Lateral Septum and Medial Prefrontal Cortex , 2017, Neuropsychopharmacology.
[23] S. Swoap,et al. Accurate discrimination of the wake-sleep states of mice using non-invasive whole-body plethysmography , 2017, Scientific Reports.
[24] Manoj Kumar,et al. INGE GRUNDKE-IQBAL AWARD FOR ALZHEIMER’S RESEARCH: NEUROTOXIC REACTIVE ASTROCYTES ARE INDUCED BY ACTIVATED MICROGLIA , 2019, Alzheimer's & Dementia.
[25] A. Verkhratsky,et al. Translational potential of astrocytes in brain disorders , 2016, Progress in Neurobiology.
[26] David I. Bass,et al. The Amygdala and Prioritization of Declarative Memories , 2016, Current directions in psychological science.
[27] G. Hu,et al. Deletion of aquaporin-4 in APP/PS1 mice exacerbates brain Aβ accumulation and memory deficits , 2015, Molecular Neurodegeneration.
[28] Thomas Wisniewski,et al. Clearance systems in the brain—implications for Alzheimer disease , 2015, Nature Reviews Neurology.
[29] Seung-Chul Hong,et al. Sleep and Alzheimer’s Disease , 2015 .
[30] Renata Alves Pachota Chaves da Silva,et al. Sleep disturbances and mild cognitive impairment: A review , 2015, Sleep science.
[31] Laure Peter-Derex,et al. Sleep and Alzheimer's disease. , 2015, Sleep medicine reviews.
[32] M. Irwin,et al. Why sleep is important for health: a psychoneuroimmunology perspective. , 2015, Annual review of psychology.
[33] Simone Lista,et al. Biomarkers in Sporadic and Familial Alzheimer's Disease. , 2015, Journal of Alzheimer's disease : JAD.
[34] Maiken Nedergaard,et al. Impairment of paravascular clearance pathways in the aging brain , 2014, Annals of neurology.
[35] A. Gabrielli,et al. SCOPRISM: A new algorithm for automatic sleep scoring in mice , 2014, Journal of Neuroscience Methods.
[36] S. Diekelmann. Sleep for cognitive enhancement , 2014, Front. Syst. Neurosci.
[37] M. Walker,et al. The role of sleep in emotional brain function. , 2014, Annual review of clinical psychology.
[38] Justin K. Rising,et al. Aging in Mice Reduces the Ability to Sustain Sleep/Wake States , 2013, PloS one.
[39] Daniel J. R. Christensen,et al. Sleep Drives Metabolite Clearance from the Adult Brain , 2013, Science.
[40] M. Perola,et al. Midlife sleep characteristics associated with late life cognitive function. , 2013, Sleep.
[41] J. Born,et al. Sleep for preserving and transforming episodic memory. , 2013, Annual review of neuroscience.
[42] M. Nedergaard,et al. Garbage Truck of the Brain , 2013, Science.
[43] Tian Feng,et al. Brain-wide pathway for waste clearance captured by contrast-enhanced MRI. , 2013, The Journal of clinical investigation.
[44] G. E. Vates,et al. A Paravascular Pathway Facilitates CSF Flow Through the Brain Parenchyma and the Clearance of Interstitial Solutes, Including Amyloid β , 2012, Science Translational Medicine.
[45] Jian-Guo Chen,et al. Aquaporin-4 Deficiency Impairs Synaptic Plasticity and Associative Fear Memory in the Lateral Amygdala: Involvement of Downregulation of Glutamate Transporter-1 Expression , 2012, Neuropsychopharmacology.
[46] S. Peirson,et al. Rapid Assessment of Sleep-Wake Behavior in Mice , 2012, Journal of biological rhythms.
[47] M. Antunes,et al. The novel object recognition memory: neurobiology, test procedure, and its modifications , 2011, Cognitive Processing.
[48] H. Scharfman,et al. Impairment of Select Forms of Spatial Memory and Neurotrophin-Dependent Synaptic Plasticity by Deletion of Glial Aquaporin-4 , 2011, The Journal of Neuroscience.
[49] Jee Hoon Roh,et al. Neuronal activity regulates the regional vulnerability to amyloid-β deposition , 2011, Nature Neuroscience.
[50] J. Morris,et al. Decreased Clearance of CNS β-Amyloid in Alzheimer’s Disease , 2010, Science.
[51] Natalie L. Trent,et al. The ventral hippocampus and the lateral septum work in tandem to regulate rats' open-arm exploration in the elevated plus-maze , 2010, Physiology & Behavior.
[52] B. Rusak,et al. Impact of acute sleep restriction on cortisol and leptin levels in young women , 2010, Physiology & Behavior.
[53] J. Born,et al. The memory function of sleep , 2010, Nature Reviews Neuroscience.
[54] William D S Killgore,et al. Effects of sleep deprivation on cognition. , 2010, Progress in brain research.
[55] D. Dinges,et al. Neurocognitive consequences of sleep deprivation. , 2005, Seminars in neurology.
[56] Katie Hamm,et al. apoE isoform-specific disruption of amyloid beta peptide clearance from mouse brain. , 2008, The Journal of clinical investigation.
[57] Christoph M. Michel,et al. A mouse model for studying large-scale neuronal networks using EEG mapping techniques , 2008, NeuroImage.
[58] Brian J. Bacskai,et al. Aβ Plaques Lead to Aberrant Regulation of Calcium Homeostasis In Vivo Resulting in Structural and Functional Disruption of Neuronal Networks , 2008, Neuron.
[59] D. Jeste,et al. The neurobiology of neuropsychiatric syndromes in dementia , 2006, Current opinion in psychiatry.
[60] J. Siegel. Clues to the functions of mammalian sleep , 2005, Nature.
[61] Dov Zohar,et al. The effects of sleep loss on medical residents' emotional reactions to work events: a cognitive-energy model. , 2005, Sleep.
[62] M. Wolfe,et al. Tumor Necrosis Factor-α, Interleukin-1β, and Interferon-γ Stimulate γ-Secretase-mediated Cleavage of Amyloid Precursor Protein through a JNK-dependent MAPK Pathway* , 2004, Journal of Biological Chemistry.
[63] C. Guilleminault,et al. Meta-analysis of quantitative sleep parameters from childhood to old age in healthy individuals: developing normative sleep values across the human lifespan. , 2004, Sleep.
[64] T. Takano,et al. Signaling at the Gliovascular Interface , 2003, The Journal of Neuroscience.
[65] Hilde van der Togt,et al. Publisher's Note , 2003, J. Netw. Comput. Appl..
[66] E. Brunamonti,et al. Evaluation of the elevated plus-maze and open-field tests for the assessment of anxiety-related behaviour in inbred mice , 2002, Behavioural Brain Research.
[67] C. Reynolds,et al. Treatment of sleep disturbance in Alzheimer's disease. , 2000, Sleep medicine reviews.
[68] J. Horne,et al. The impact of sleep deprivation on decision making: a review. , 2000, Journal of experimental psychology. Applied.
[69] R. Adolphs,et al. Impaired emotional declarative memory following unilateral amygdala damage. , 2000, Learning & memory.
[70] K. Spiegel,et al. Impact of sleep debt on metabolic and endocrine function , 1999, The Lancet.
[71] J. Hardy,et al. The Alzheimer family of diseases: many etiologies, one pathogenesis? , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[72] G. Schellenberg,et al. Secreted amyloid β–protein similar to that in the senile plaques of Alzheimer's disease is increased in vivo by the presenilin 1 and 2 and APP mutations linked to familial Alzheimer's disease , 1996, Nature Medicine.
[73] Daniel J Buysse,et al. The Pittsburgh sleep quality index: A new instrument for psychiatric practice and research , 1989, Psychiatry Research.
[74] J. Delacour,et al. A new one-trial test for neurobiological studies of memory in rats. 1: Behavioral data , 1988, Behavioural Brain Research.