Positron emission tomography imaging of neuroinflammation
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Richard B. Banati | Michael Kassiou | Annachiara Cagnin | S. Meikle | M. Kassiou | A. Cagnin | R. Banati | Steve R. Meikle
[1] Richard B. Banati,et al. Ligands for peripheral benzodiazepine binding sites in glial cells , 2005, Brain Research Reviews.
[2] R. Colvin,et al. The in situ cellular immune response in acute herpes simplex encephalitis. , 1986, The American journal of pathology.
[3] Vincent J. Cunningham,et al. Parametric Imaging of Ligand-Receptor Binding in PET Using a Simplified Reference Region Model , 1997, NeuroImage.
[4] Alexander Gerhard,et al. Evolution of microglial activation in patients after ischemic stroke: a [11C](R)-PK11195 PET study , 2005, NeuroImage.
[5] R. Banati,et al. Visualising microglial activation in vivo , 2002, Glia.
[6] M. Esiri,et al. Macrophages and microglia in HSV-1 infected mouse brain , 1995, Journal of Neuroimmunology.
[7] S. Meikle,et al. Synthesis and in vivo evaluation of a novel peripheral benzodiazepine receptor PET radioligand. , 2005, Bioorganic & medicinal chemistry.
[8] R. Anholt,et al. The peripheral-type benzodiazepine receptor. Localization to the mitochondrial outer membrane. , 1986, The Journal of biological chemistry.
[9] Vincent J. Cunningham,et al. Parametric Imaging of Ligand-Receptor Interactions Using a Reference Tissue Model and Cluster Analysis , 1998 .
[10] B. Kiss,et al. PET studies on the brain uptake and regional distribution of [11C]vinpocetine in human subjects , 2002, Acta neurologica Scandinavica.
[11] A. Lammertsma,et al. Simplified Reference Tissue Model for PET Receptor Studies , 1996, NeuroImage.
[12] T. Guilarte,et al. Peripheral benzodiazepine receptor imaging in CNS demyelination: functional implications of anatomical and cellular localization. , 2004, Brain : a journal of neurology.
[13] R B Banati,et al. PK (‘peripheral benzodiazepine’) – binding sites in the CNS indicate early and discrete brain lesions: microautoradiographic detection of [3H]PK 11195 binding to activated microglia , 1997, Journal of neurocytology.
[14] Alexander Gerhard,et al. Microglial activation in presymptomatic Huntington's disease gene carriers. , 2005, Brain : a journal of neurology.
[15] Christopher J. Taylor,et al. A cluster analysis approach for the characterization of dynamic PET data , 1996 .
[16] Roger N Gunn,et al. In-vivo measurement of activated microglia in dementia , 2001, The Lancet.
[17] R B Banati,et al. The peripheral benzodiazepine binding site in the brain in multiple sclerosis: quantitative in vivo imaging of microglia as a measure of disease activity. , 2000, Brain : a journal of neurology.
[18] Tetsuya Suhara,et al. Development of a new radioligand, N-(5-fluoro-2-phenoxyphenyl)-N-(2-[18F]fluoroethyl-5-methoxybenzyl)acetamide, for pet imaging of peripheral benzodiazepine receptor in primate brain. , 2004, Journal of medicinal chemistry.
[19] R. Banati,et al. Brain microglia and blood-derived macrophages: molecular profiles and functional roles in multiple sclerosis and animal models of autoimmune demyelinating disease , 2004, Brain Research Reviews.
[20] Richard S. J. Frackowiak,et al. Macrophage and Astrocyte Populations in Relation to [3H]PK 11195 Binding in Rat Cerebral Cortex following a Local Ischaemic Lesion , 1991, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[21] Ryuji Nakao,et al. Quantitative analyses of 18F-FEDAA1106 binding to peripheral benzodiazepine receptors in living human brain. , 2006, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[22] A. Young,et al. Localization of the peripheral-type benzodiazepine binding site to mitochondria of human glioma cells , 1992, Journal of Neuro-Oncology.
[23] Cytotoxicity of microglia , 1993 .
[24] T. Rasmussen,et al. The syndrome of chronic encephalitis and epilepsy. A study based on the MNI series of 48 cases. , 1992, Advances in neurology.
[25] H. Braak,et al. Staging of brain pathology related to sporadic Parkinson’s disease , 2003, Neurobiology of Aging.
[26] F. Turkheimer,et al. Reference and target region modeling of [11C]-(R)-PK11195 brain studies. , 2007, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[27] P G Bhide,et al. Early and Progressive Accumulation of Reactive Microglia in the Huntington Disease Brain , 2001, Journal of neuropathology and experimental neurology.
[28] F E Turkheimer,et al. [11C](R)-PK11195 positron emission tomography imaging of activated microglia in vivo in Rasmussen’s encephalitis , 1999, Neurology.
[29] Alexander Gerhard,et al. In vivo imaging of microglial activation with [11C](R)‐PK11195 PET in corticobasal degeneration , 2004, Movement disorders : official journal of the Movement Disorder Society.
[30] Abraham Weizman,et al. Enigma of the peripheral benzodiazepine receptor. , 1999, Pharmacological reviews.
[31] H. Park,et al. Effects of peripheral benzodiazepine receptor ligands on proliferation and differentiation of human mesenchymal stem cells , 2004, Journal of cellular physiology.
[32] W. Gan,et al. ATP mediates rapid microglial response to local brain injury in vivo , 2005, Nature Neuroscience.
[33] Peter J. Ell,et al. Multivariate cluster analysis of dynamic iodine-123 iodobenzamide SPET dopamine D2 receptor images in schizophrenia , 1997, European Journal of Nuclear Medicine.
[34] S. Taylor-Robinson,et al. In vivo imaging of cerebral “peripheral benzodiazepine binding sites” in patients with hepatic encephalopathy , 2005, Gut.
[35] J A Luijten,et al. The occurrence of IgM and complement factors along myelin sheaths of peripheral nerves. An immunohistochemical study of the Guillain-Barré syndrome. Preliminary communication. , 1972, Journal of the neurological sciences.
[36] E. Yoshikawa,et al. Microglial activation and dopamine terminal loss in early Parkinson's disease , 2005, Annals of neurology.
[37] R. Banati. Brain plasticity and microglia: is transsynaptic glial activation in the thalamus after limb denervation linked to cortical plasticity and central sensitisation? , 2002, Journal of Physiology-Paris.
[38] F. Fazio,et al. Evaluation of three quinoline-carboxamide derivatives as potential radioligands for the in vivo pet imaging of neurodegeneration , 2004, Neurochemistry International.
[39] S. Snyder,et al. Peripheral-type benzodiazepine receptor density and in vitro tumorigenicity of glioma cell lines. , 2004, Biochemical pharmacology.
[40] F. Helmchen,et al. Resting Microglial Cells Are Highly Dynamic Surveillants of Brain Parenchyma in Vivo , 2005, Science.
[41] Makoto Sawada,et al. Distribution of major histocompatibility complex class II-positive microglia and cytokine profile of Parkinson's disease brains , 2003, Acta Neuropathologica.
[42] F. Turkheimer,et al. Microglia in Culture: What Genes Do They Express? , 2004, Developmental Neuroscience.
[43] R. Dempsey,et al. Traumatic Brain Injury Leads to Increased Expression of Peripheral-Type Benzodiazepine Receptors, Neuronal Death, and Activation of Astrocytes and Microglia in Rat Thalamus , 2000, Experimental Neurology.
[44] Philippe Cornu,et al. Imaging of human brain lesions with an ω3 site radioligand , 1988 .
[45] R B Banati,et al. Thalamic microglial activation in ischemic stroke detected in vivo by PET and [11C]PK11195 , 2000, Neurology.
[46] E. G. Jones,et al. Cortical and subcortical contributions to activity-dependent plasticity in primate somatosensory cortex. , 2000, Annual review of neuroscience.
[47] Tetsuya Suhara,et al. [(11)C]DAA1106: radiosynthesis and in vivo binding to peripheral benzodiazepine receptors in mouse brain. , 2003, Nuclear medicine and biology.
[48] M. Graeber,et al. Surveillance, intervention and cytotoxicity: is there a protective role of microglia? , 1994, Developmental neuroscience.
[49] R. Myers. Quantification of brain function using PET , 1996 .
[50] R B Banati,et al. In vivo visualization of activated glia by [11C] (R)-PK11195-PET following herpes encephalitis reveals projected neuronal damage beyond the primary focal lesion. , 2001, Brain : a journal of neurology.
[51] M. Daube-Witherspoon,et al. Quantitative functional brain imaging with positron emission tomography , 1998 .
[52] N. Bowery. Peripheral benzodiazepine receptors: edited by Eva Giesen-Crouse, Academic Press, 1993. £45.00 (xiii + 281 pages) ISBN 0 1228 2630 2 , 1994 .
[53] R. Motter,et al. Immunization with amyloid-β attenuates Alzheimer-disease-like pathology in the PDAPP mouse , 1999, Nature.
[54] D J Brooks,et al. Microglial activation correlates with severity in Huntington disease , 2006, Neurology.
[55] David K. Menon,et al. Intrinsic Activated Microglia Map to the Peri-infarct Zone in the Subacute Phase of Ischemic Stroke , 2006, Stroke.
[56] Alexander Gerhard,et al. In vivo imaging of microglial activation with [11C](R)‐PK11195 PET in progressive supranuclear palsy , 2006, Movement disorders : official journal of the Movement Disorder Society.
[57] Alexander Hammers,et al. In vivo imaging of microglial activation with [11C](R)-PK11195 PET in idiopathic Parkinson's disease , 2006, Neurobiology of Disease.
[58] Yuji Nagai,et al. Novel peripheral benzodiazepine receptor ligand [11C]DAA1106 for PET: An imaging tool for glial cells in the brain , 2004, Synapse.
[59] R B Banati,et al. [11C](R)-PK11195 PET imaging of microglial activation in multiple system atrophy , 2003, Neurology.
[60] G. Kreutzberg. Microglia: a sensor for pathological events in the CNS , 1996, Trends in Neurosciences.
[61] P. Mcgeer,et al. The inflammatory response system of brain: implications for therapy of Alzheimer and other neurodegenerative diseases , 1995, Brain Research Reviews.
[62] F. Turkheimer,et al. Towards a transcriptome definition of microglial cells , 2004, Neurogenetics.
[63] G. Glick,et al. Inhibition of the mitochondrial F1F0-ATPase by ligands of the peripheral benzodiazepine receptor. , 2007, Bioorganic & medicinal chemistry letters.
[64] B. Gulyás,et al. [11C]Vinpocetine: a prospective peripheral benzodiazepine receptor ligand for primate PET studies , 2005, Journal of the Neurological Sciences.
[65] A. Rajput,et al. Progressive Supranuclear Palsy , 2001, Drugs & aging.
[66] T. Guilarte,et al. Cellular and Subcellular Localization of Peripheral Benzodiazepine Receptors After Trimethyltin Neurotoxicity , 2000, Journal of neurochemistry.
[67] E. Mackenzie,et al. Imaging of human brain lesions with an omega 3 site radioligand. , 1988, Annals of neurology.
[68] D. Schober,et al. Peripheral benzodiazepine receptors are colocalized with activated microglia following transient global forebrain ischemia in the rat , 1995, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[69] D. Nutt,et al. Translocator protein (18kDa): new nomenclature for the peripheral-type benzodiazepine receptor based on its structure and molecular function. , 2006, Trends in pharmacological sciences.
[70] M. Norenberg,et al. Characterization of the peripheral‐type benzodiazepine receptors in cultured astrocytes: Evidence for multiplicity , 1993, Glia.
[71] R. Myers,et al. Long-term trans-synaptic glial responses in the human thalamus after peripheral nerve injury , 2001, Neuroreport.
[72] E. Conway,et al. Temporal changes in glial fibrillary acidic protein messenger RNA and [3H]PK11195 binding in relation to imidazoline-I2-receptor and α 2-adrenoceptor binding in the hippocampus following transient global forebrain ischaemia in the rat , 1997, Neuroscience.
[73] C. Plata-salamán,et al. Inflammation and Alzheimer’s disease , 2000, Neurobiology of Aging.
[74] Elizabeth L Sampson,et al. In vivo detection of microglial activation in frontotemporal dementia , 2004, Annals of neurology.