Neuroimmune Response in Ischemic Preconditioning

[1]  M. Schachner,et al.  Improvement of neuronal cell survival by astrocyte‐derived exosomes under hypoxic and ischemic conditions depends on prion protein , 2016, Glia.

[2]  J. Filosa,et al.  Beyond neurovascular coupling, role of astrocytes in the regulation of vascular tone , 2016, Neuroscience.

[3]  C. Naus,et al.  Astrocytes in neuroprotection and neurodegeneration: The role of connexin43 and pannexin1 , 2016, Neuroscience.

[4]  Ben A. Barres,et al.  Complement and microglia mediate early synapse loss in Alzheimer mouse models , 2016, Science.

[5]  M. Schwaninger,et al.  Protective features of peripheral monocytes/macrophages in stroke. , 2016, Biochimica et biophysica acta.

[6]  K. Suk,et al.  Functional polarization of neuroglia: Implications in neuroinflammation and neurological disorders. , 2016, Biochemical pharmacology.

[7]  L. Kao,et al.  Astrocytic GAP43 Induced by the TLR4/NF-κB/STAT3 Axis Attenuates Astrogliosis-Mediated Microglial Activation and Neurotoxicity , 2016, The Journal of Neuroscience.

[8]  E. Gross,et al.  Remote Ischemic Preconditioning and Cardiac Surgery. , 2016, The New England journal of medicine.

[9]  J. Godbout,et al.  Sequential activation of microglia and astrocyte cytokine expression precedes increased iba‐1 or GFAP immunoreactivity following systemic immune challenge , 2016, Glia.

[10]  Jianhua Yao,et al.  Focal cerebral ischemic tolerance and change in blood-brain barrier permeability after repetitive pure oxygen exposure preconditioning in a rodent model. , 2016, Journal of neurosurgery.

[11]  Hui Zheng,et al.  Astrocyte-Microglia Cross Talk through Complement Activation Modulates Amyloid Pathology in Mouse Models of Alzheimer's Disease , 2016, The Journal of Neuroscience.

[12]  G. Mahé,et al.  Remote Ischemic Preconditioning and Cardiac Surgery. , 2016, The New England journal of medicine.

[13]  N. Gonzalez,et al.  Matched Cohort Analysis of the Effects of Limb Remote Ischemic Conditioning in Patients with Aneurysmal Subarachnoid Hemorrhage , 2015, Translational Stroke Research.

[14]  B. Malgrange,et al.  Mechanisms and Functional Significance of Stroke-Induced Neurogenesis , 2015, Front. Neurosci..

[15]  P. Bickler,et al.  Hypoxic preconditioning and cell death from oxygen/glucose deprivation co-opt a subset of the unfolded protein response in hippocampal neurons , 2015, Neuroscience.

[16]  Jh Bennett,et al.  The expression of Toll-like receptor 4, 7 and co-receptors in neurochemical sub-populations of rat trigeminal ganglion sensory neurons , 2015, Neuroscience.

[17]  T. Möller,et al.  IgM-Dependent Phagocytosis in Microglia Is Mediated by Complement Receptor 3, Not Fcα/μ Receptor , 2015, The Journal of Immunology.

[18]  H. Hartung,et al.  Macrophage‐derived osteopontin induces reactive astrocyte polarization and promotes re‐establishment of the blood brain barrier after ischemic stroke , 2015, Glia.

[19]  B. Ransom,et al.  Ischemic Preconditioning in White Matter: Magnitude and Mechanism , 2015, The Journal of Neuroscience.

[20]  A. Inácio,et al.  Endogenous IFN-β signaling exerts anti-inflammatory actions in experimentally induced focal cerebral ischemia , 2015, Journal of Neuroinflammation.

[21]  R. Simon,et al.  A critical review of mechanisms regulating remote preconditioning-induced brain protection. , 2015, Journal of applied physiology.

[22]  M. McMonagle,et al.  A MultiCenter Pilot Randomized Controlled Trial of Remote Ischemic Preconditioning in Major Vascular Surgery , 2015, Vascular and endovascular surgery.

[23]  B. Pakkenberg,et al.  Lack of Neuronal IFN-β-IFNAR Causes Lewy Body- and Parkinson’s Disease-like Dementia , 2015, Cell.

[24]  G. Vatcher,et al.  Ischemia preconditioning protects astrocytes from ischemic injury through 14‐3‐3γ , 2015, Journal of neuroscience research.

[25]  T. Kielian,et al.  Neuron–astrocyte interactions in neurodegenerative diseases: Role of neuroinflammation , 2015, Clinical & experimental neuroimmunology.

[26]  K. Blomgren,et al.  Resident microglia, rather than blood‐derived macrophages, contribute to the earlier and more pronounced inflammatory reaction in the immature compared with the adult hippocampus after hypoxia‐ischemia , 2015, Glia.

[27]  A. Taguchi,et al.  Brain Vascular Pericytes Following Ischemia Have Multipotential Stem Cell Activity to Differentiate Into Neural and Vascular Lineage Cells , 2015, Stem cells.

[28]  A. Bar-Or,et al.  Roles of microglia in brain development, tissue maintenance and repair. , 2015, Brain : a journal of neurology.

[29]  I. Lizasoain,et al.  Rational modulation of the innate immune system for neuroprotection in ischemic stroke , 2015, Front. Neurosci..

[30]  S. Weiss,et al.  Induction of endogenous Type I interferon within the central nervous system plays a protective role in experimental autoimmune encephalomyelitis , 2015, Acta Neuropathologica.

[31]  Tatsuhide Tanaka,et al.  Interferon regulatory factor 7 participates in the M1‐like microglial polarization switch , 2015, Glia.

[32]  P. Vespa,et al.  Phase I clinical trial for the feasibility and safety of remote ischemic conditioning for aneurysmal subarachnoid hemorrhage. , 2014, Neurosurgery.

[33]  A. Yoshimura,et al.  Post-ischemic inflammation regulates neural damage and protection , 2014, Front. Cell. Neurosci..

[34]  S. L. Stevens,et al.  Reprogramming the Response to Stroke by Preconditioning , 2014, Stroke.

[35]  Wei Zhu,et al.  Astrocytic Toll-Like Receptor 3 Is Associated with Ischemic Preconditioning- Induced Protection against Brain Ischemia in Rodents , 2014, PloS one.

[36]  K. Pennypacker,et al.  Molecular and Cellular Immune Responses to Ischemic Brain Injury , 2014, Translational Stroke Research.

[37]  J. Godbout,et al.  TGFβ produced by IL‐10 redirected astrocytes attenuates microglial activation , 2014, Glia.

[38]  C. Iadecola,et al.  Immune mechanisms in cerebral ischemic tolerance , 2014, Front. Neurosci..

[39]  T. Owens,et al.  Interferons in the central nervous system: A few instruments play many tunes , 2014, Glia.

[40]  M. Chwastyniak,et al.  Modifications in Rat Plasma Proteome after Remote Ischemic Preconditioning (RIPC) Stimulus: Identification by a SELDI-TOF-MS Approach , 2014, PloS one.

[41]  T. Möller,et al.  The p53 Transcription Factor Modulates Microglia Behavior through MicroRNA-Dependent Regulation of c-Maf , 2014, The Journal of Immunology.

[42]  S. Gygi,et al.  Identification of a Unique TGF-β Dependent Molecular and Functional Signature in Microglia , 2013, Nature Neuroscience.

[43]  F. Shi,et al.  CX3CR1 deficiency suppresses activation and neurotoxicity of microglia/macrophage in experimental ischemic stroke , 2014, Journal of Neuroinflammation.

[44]  P. Carmeliet,et al.  Role of hypoxia inducible factor-1α in remote limb ischemic preconditioning. , 2013, Journal of molecular and cellular cardiology.

[45]  E. Benarroch Microglia , 2013, Neurology.

[46]  M. Lynch,et al.  Toll‐like receptor 3 activation modulates hippocampal network excitability, via glial production of interferon‐β , 2013, Hippocampus.

[47]  M. Chwastyniak,et al.  Apolipoprotein A-I Is a Potential Mediator of Remote Ischemic Preconditioning , 2013, PloS one.

[48]  S. Fumagalli,et al.  CX3CR1 deficiency induces an early protective inflammatory environment in ischemic mice , 2013, Glia.

[49]  K. Arai,et al.  Biphasic mechanisms of neurovascular unit injury and protection in CNS diseases. , 2013, CNS & neurological disorders drug targets.

[50]  Guohong Li,et al.  Simvastatin Attenuates Stroke-induced Splenic Atrophy and Lung Susceptibility to Spontaneous Bacterial Infection in Mice , 2013, Stroke.

[51]  H. Hartung,et al.  Secondary Intracerebral Hemorrhage Due to Early Initiation of Oral Anticoagulation After Ischemic Stroke: An Experimental Study in Mice , 2012, Stroke.

[52]  K. Becker Activation of immune responses to brain antigens after stroke , 2012, Journal of neurochemistry.

[53]  Tetsuro Ago,et al.  Novel therapeutic strategies targeting innate immune responses and early inflammation after stroke , 2012, Journal of neurochemistry.

[54]  Tao Yang,et al.  Poly‐ICLC preconditioning protects the blood–brain barrier against ischemic injury in vitro through type I interferon signaling , 2012, Journal of neurochemistry.

[55]  S. L. Stevens,et al.  TLR9 Bone Marrow Chimeric Mice Define a Role for Cerebral TNF in Neuroprotection Induced by CpG Preconditioning , 2012, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[56]  M. Prinz,et al.  How type I interferons shape myeloid cell function in CNS autoimmunity , 2012, Journal of leukocyte biology.

[57]  U. Dirnagl Pathobiology of injury after stroke: the neurovascular unit and beyond , 2012, Annals of the New York Academy of Sciences.

[58]  H. Hartung,et al.  Macrophages prevent hemorrhagic infarct transformation in murine stroke models , 2012, Annals of neurology.

[59]  R. Simon,et al.  Toll-Like Receptor 7 Preconditioning Induces Robust Neuroprotection Against Stroke by a Novel Type I Interferon-Mediated Mechanism , 2012, Stroke.

[60]  K. Pennypacker,et al.  The spleen contributes to stroke induced neurodegeneration through interferon gamma signaling , 2012, Metabolic Brain Disease.

[61]  Heng Zhao,et al.  The Chronic Protective Effects of Limb Remote Preconditioning and the Underlying Mechanisms Involved in Inflammatory Factors in Rat Stroke , 2012, PloS one.

[62]  L. McCullough,et al.  Preconditioning induces sustained neuroprotection by downregulation of adenosine 5′-monophosphate-activated protein kinase , 2012, Neuroscience.

[63]  R. Simon,et al.  Can Genes Modify Stroke Outcome and By What Mechanisms? , 2012, Stroke.

[64]  Sunhee C. Lee,et al.  Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway , 2011, Journal of Neuroinflammation.

[65]  T. Owens,et al.  Interferon regulatory factor-7 modulates experimental autoimmune encephalomyelitis in mice , 2011, Journal of Neuroinflammation.

[66]  K. Pennypacker,et al.  Lateral fluid percussion injury of the brain induces CCL20 inflammatory chemokine expression in rats , 2011, Journal of Neuroinflammation.

[67]  Tao Yang,et al.  Multiple Preconditioning Paradigms Converge on Interferon Regulatory Factor-Dependent Signaling to Promote Tolerance to Ischemic Brain Injury , 2011, The Journal of Neuroscience.

[68]  C. Iadecola,et al.  The immunology of stroke: from mechanisms to translation , 2011, Nature Medicine.

[69]  G. A. West,et al.  Proof of Concept: Pharmacological Preconditioning with a Toll-like Receptor Agonist Protects against Cerebrovascular Injury in a Primate Model of Stroke , 2011, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[70]  U. Dirnagl,et al.  Stroke and the immune system: from pathophysiology to new therapeutic strategies , 2011, The Lancet Neurology.

[71]  A. Planas,et al.  Astrocyte TLR4 activation induces a proinflammatory environment through the interplay between MyD88‐dependent NFκB signaling, MAPK, and Jak1/Stat1 pathways , 2011, Glia.

[72]  I. Julkunen,et al.  TLR ligands induce synergistic interferon-β and interferon-λ1 gene expression in human monocyte-derived dendritic cells. , 2011, Molecular immunology.

[73]  F. Ginhoux,et al.  Fate Mapping Analysis Reveals That Adult Microglia Derive from Primitive Macrophages , 2010, Science.

[74]  E. Lo,et al.  Biphasic actions of HMGB1 signaling in inflammation and recovery after stroke , 2010, Annals of the New York Academy of Sciences.

[75]  K. Nakai,et al.  The Jmjd3-Irf4 axis regulates M2 macrophage polarization and host responses against helminth infection , 2010, Nature Immunology.

[76]  T. Owens,et al.  Injury-Induced Type I IFN Signaling Regulates Inflammatory Responses in the Central Nervous System , 2010, The Journal of Immunology.

[77]  E. Lo,et al.  Inhibition of Reactive Astrocytes with Fluorocitrate Retards Neurovascular Remodeling and Recovery after Focal Cerebral Ischemia in Mice , 2010, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[78]  T. Möller,et al.  Microglia in ischemic brain injury. , 2010, Future neurology.

[79]  七田 崇 Pivotal role of cerebral interleukin-17-producing γδT cells in the delayed phase of ischemic brain injury , 2010 .

[80]  P. Monk,et al.  Astrocyte function and role in motor neuron disease: A future therapeutic target? , 2009, Glia.

[81]  C. Harrington,et al.  Systemic Lipopolysaccharide Protects the Brain from Ischemic Injury by Reprogramming the Response of the Brain to Stroke: A Critical Role for IRF3 , 2009, The Journal of Neuroscience.

[82]  P. Libby,et al.  Identification of Splenic Reservoir Monocytes and Their Deployment to Inflammatory Sites , 2009, Science.

[83]  Christian Gerloff,et al.  Temporal and spatial dynamics of cerebral immune cell accumulation in stroke. , 2009, Stroke.

[84]  U. Dirnagl,et al.  Preconditioning and tolerance against cerebral ischaemia: from experimental strategies to clinical use , 2009, The Lancet Neurology.

[85]  O. Hurtado,et al.  Toll‐like receptor 4 is involved in neuroprotection afforded by ischemic preconditioning , 2009, Journal of neurochemistry.

[86]  S. L. Stevens,et al.  Inflammation and the Emerging Role of the Toll-Like Receptor System in Acute Brain Ischemia , 2009, Stroke.

[87]  G. Zoppo Inflammation and the neurovascular unit in the setting of focal cerebral ischemia , 2009, Neuroscience.

[88]  F. Sharp,et al.  Very brief focal ischemia simulating transient ischemic attacks (TIAs) can injure brain and induce Hsp70 protein , 2008, Brain Research.

[89]  K. Pennypacker,et al.  The spleen contributes to stroke‐induced neurodegeneration , 2008, Journal of neuroscience research.

[90]  P. Chan,et al.  Hypoxic preconditioning up-regulates glucose transport activity and glucose transporter (GLUT1 and GLUT3) gene expression after acute anoxic exposure in the cultured rat hippocampal neurons and astrocytes , 2008, Brain Research.

[91]  B. Becher,et al.  Distinct and nonredundant in vivo functions of IFNAR on myeloid cells limit autoimmunity in the central nervous system. , 2008, Immunity.

[92]  R. Simon,et al.  Toll-Like Receptor 9: A New Target of Ischemic Preconditioning in the Brain , 2008, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[93]  M. Minami,et al.  Proliferating Progenitor Cells: A Required Cellular Element for Induction of Ischemic Tolerance in the Brain , 2008, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[94]  R. Nitsch,et al.  A Vicious Cycle Involving Release of Heat Shock Protein 60 from Injured Cells and Activation of Toll-Like Receptor 4 Mediates Neurodegeneration in the CNS , 2008, The Journal of Neuroscience.

[95]  R. Koehler,et al.  Delayed Tolerance With Repetitive Transient Focal Ischemic Preconditioning in the Mouse , 2008, Stroke.

[96]  P. Carmeliet,et al.  Protective Role of Reactive Astrocytes in Brain Ischemia , 2008, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[97]  V. Kaushal,et al.  Mechanisms of Microglia-Mediated Neurotoxicity in a New Model of the Stroke Penumbra , 2008, The Journal of Neuroscience.

[98]  G. Steinberg,et al.  Limb remote-preconditioning protects against focal ischemia in rats and contradicts the dogma of therapeutic time windows for preconditioning , 2008, Neuroscience.

[99]  M. Stenzel-Poore,et al.  Toll-like receptors: novel pharmacological targets for the treatment of neurological diseases. , 2008, Current opinion in pharmacology.

[100]  Shijie Jin,et al.  Interferon-β is neuroprotective against the toxicity induced by activated microglia , 2007, Brain Research.

[101]  G. Stark How cells respond to interferons revisited: from early history to current complexity. , 2007, Cytokine & growth factor reviews.

[102]  O. Hurtado,et al.  Toll-Like Receptor 4 Is Involved in Brain Damage and Inflammation After Experimental Stroke , 2007, Circulation.

[103]  G. Gowing,et al.  Selective Ablation of Proliferating Microglial Cells Exacerbates Ischemic Injury in the Brain , 2007, The Journal of Neuroscience.

[104]  M. Minami,et al.  Endotoxin Preconditioning Protects against the Cytotoxic Effects of TNFα after Stroke: A Novel Role for TNFα in LPS-Ischemic Tolerance , 2007 .

[105]  Jie Cui,et al.  Reduced cerebral ischemia-reperfusion injury in Toll-like receptor 4 deficient mice. , 2007, Biochemical and biophysical research communications.

[106]  J. S. King,et al.  Preconditioning Reprograms the Response to Ischemic Injury and Primes the Emergence of Unique Endogenous Neuroprotective Phenotypes: A Speculative Synthesis , 2007, Stroke.

[107]  K. P. Murphy,et al.  Janeway's immunobiology , 2007 .

[108]  M. Minami,et al.  Endotoxin preconditioning protects against the cytotoxic effects of TNFalpha after stroke: a novel role for TNFalpha in LPS-ischemic tolerance. , 2007, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[109]  F. Mégret,et al.  The innate immune facet of brain , 2007, Journal of Molecular Neuroscience.

[110]  B. Mishra,et al.  Expression and distribution of Toll‐like receptors in the brain during murine neurocysticercosis , 2006, Journal of Neuroimmunology.

[111]  I. Teige,et al.  IFN-β Inhibits T Cell Activation Capacity of Central Nervous System APCs1 , 2006, The Journal of Immunology.

[112]  R. Tamargo,et al.  Inflammation in stroke and focal cerebral ischemia. , 2006, Surgical neurology.

[113]  R. Busto,et al.  Remote organ ischemic preconditioning protect brain from ischemic damage following asphyxial cardiac arrest , 2006, Neuroscience Letters.

[114]  Steffen Jung,et al.  Control of microglial neurotoxicity by the fractalkine receptor , 2006, Nature Neuroscience.

[115]  P. Hurn,et al.  Splenic Atrophy in Experimental Stroke Is Accompanied by Increased Regulatory T Cells and Circulating Macrophages1 , 2006, The Journal of Immunology.

[116]  J. Gidday Cerebral preconditioning and ischaemic tolerance , 2006, Nature Reviews Neuroscience.

[117]  U. Heinemann,et al.  The Impact of Astrocytic Gap Junctional Coupling on Potassium Buffering in the Hippocampus , 2006, The Journal of Neuroscience.

[118]  P. Bickford,et al.  Cord blood rescues stroke-induced changes in splenocyte phenotype and function , 2006, Experimental Neurology.

[119]  T. Möller,et al.  Microglia Biology in Health and Disease , 2006, Journal of Neuroimmune Pharmacology.

[120]  K. Hargreaves,et al.  Trigeminal Nociceptors Express TLR-4 and CD14: a Mechanism for Pain due to Infection , 2006, Journal of dental research.

[121]  I. Teige,et al.  IFN-beta inhibits T cell activation capacity of central nervous system APCs. , 2006, Journal of immunology.

[122]  R. Dempsey,et al.  Preconditioning-induced ischemic tolerance stimulates growth factor expression and neurogenesis in adult rat hippocampus , 2005, Neurochemistry International.

[123]  E. Benarroch,et al.  Neuron-astrocyte interactions: partnership for normal function and disease in the central nervous system. , 2005, Mayo Clinic proceedings.

[124]  N. Alkayed,et al.  Hypoxic Preconditioning and Tolerance via Hypoxia Inducible Factor (HIF) 1α-linked Induction of P450 2C11 Epoxygenase in Astrocytes , 2005, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[125]  U. Dirnagl,et al.  Neuroprotective role of astrocytes in cerebral ischemia: Focus on ischemic preconditioning , 2005, Glia.

[126]  U. Dirnagl,et al.  Role of glial cells in cerebral ischemia , 2005, Glia.

[127]  G. Rosenberg,et al.  Multiple roles for MMPs and TIMPs in cerebral ischemia , 2005, Glia.

[128]  H. Liu,et al.  Astrocytes in injured adult rat spinal cord may acquire the potential of neural stem cells , 2004, Neuroscience.

[129]  R. Simon,et al.  Genomics of Preconditioning , 2004, Stroke.

[130]  D. Weissman,et al.  Inhibition of Toll-like Receptor and Cytokine Signaling—A Unifying Theme in Ischemic Tolerance , 2004, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[131]  I. Konstantinov,et al.  The remote ischemic preconditioning stimulus modifies inflammatory gene expression in humans. , 2004, Physiological genomics.

[132]  S. Miller,et al.  Microglia Initiate Central Nervous System Innate and Adaptive Immune Responses through Multiple TLRs1 , 2004, The Journal of Immunology.

[133]  L. Malmgaard Induction and regulation of IFNs during viral infections. , 2004, Journal of interferon & cytokine research : the official journal of the International Society for Interferon and Cytokine Research.

[134]  N. Mitsuma,et al.  Effects of interferon-β on microglial functions as inflammatory and antigen presenting cells in the central nervous system , 2004, Neuropharmacology.

[135]  Taizen Nakase,et al.  Gap junctions and neurological disorders of the central nervous system. , 2004, Biochimica et biophysica acta.

[136]  A. Villringer,et al.  Transient Ischemic Attacks Before Ischemic Stroke: Preconditioning the Human Brain?: A Multicenter Magnetic Resonance Imaging Study , 2004, Stroke.

[137]  X. Mao,et al.  cDNA Microarray Analysis of Changes in Gene Expression Induced by Neuronal Hypoxia in Vitro , 2004, Neurochemical Research.

[138]  C. Harrington,et al.  For Personal Use. Only Reproduce with Permission from the Lancet , 2022 .

[139]  R. Gold,et al.  Phagocytosis of apoptotic inflammatory cells by microglia and its therapeutic implications: Termination of CNS autoimmune inflammation and modulation by interferon‐beta , 2003, Glia.

[140]  R. Jaenisch,et al.  HIF-1α Is Essential for Myeloid Cell-Mediated Inflammation , 2003, Cell.

[141]  R. Swanson,et al.  Astrocytes and Brain Injury , 2003, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[142]  K. Willecke,et al.  Neuroprotective Role of Astrocytic Gap Junctions in Ischemic Stroke , 2003, Cell communication & adhesion.

[143]  R. Jaenisch,et al.  HIF-1alpha is essential for myeloid cell-mediated inflammation. , 2003, Cell.

[144]  C. Brosnan,et al.  Interferon‐β activates multiple signaling cascades in primary human microglia , 2002 .

[145]  C. Brosnan,et al.  Interferon-beta activates multiple signaling cascades in primary human microglia. , 2002, Journal of neurochemistry.

[146]  H. Nawashiro,et al.  High Susceptibility to Cerebral Ischemia in GFAP-Null Mice , 2000, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.

[147]  J. Bogousslavsky,et al.  Do transient ischemic attacks have a neuroprotective effect? , 2000, Neurology.

[148]  K. Jin,et al.  Cannabinoids and Neuroprotection in Global and Focal Cerebral Ischemia and in Neuronal Cultures , 1999, The Journal of Neuroscience.

[149]  G. Rosenberg,et al.  Matrix metalloproteinases and TIMPs are associated with blood-brain barrier opening after reperfusion in rat brain. , 1998, Stroke.

[150]  G. Stark,et al.  How cells respond to interferons. , 1998, Annual review of biochemistry.

[151]  R. Currie,et al.  Ischemic preconditioning and brain tolerance: temporal histological and functional outcomes, protein synthesis requirement, and interleukin-1 receptor antagonist and early gene expression. , 1998, Stroke.

[152]  M. Shen,et al.  Cannabinoid Receptor Agonists Inhibit Glutamatergic Synaptic Transmission in Rat Hippocampal Cultures , 1996, The Journal of Neuroscience.

[153]  A. Tamura,et al.  Ischemic tolerance. Discussion , 1996 .

[154]  A. Tamura,et al.  Ischemic tolerance. , 1996, Advances in neurology.

[155]  G. Sutherland,et al.  Ischemia-induced cellular redistribution of the astrocytic gap junctional protein connexin43 in rat brain , 1994, Brain Research.

[156]  V. ter meulen,et al.  Isolation and direct characterization of resident microglial cells from the normal and inflamed central nervous system. , 1991, Proceedings of the National Academy of Sciences of the United States of America.

[157]  M. Reivich,et al.  ACTIVATION , 1980, The Social Value of Zoos.

[158]  K. Welch,et al.  Acute tissue response to cerebral ischemia in the gerbil An ultrastructural study , 1977, Journal of the Neurological Sciences.