Aging-related tau astrogliopathy (ARTAG): harmonized evaluation strategy

被引:0
|
作者
Gabor G. Kovacs
Isidro Ferrer
Lea T. Grinberg
Irina Alafuzoff
Johannes Attems
Herbert Budka
Nigel J. Cairns
John F. Crary
Charles Duyckaerts
Bernardino Ghetti
Glenda M. Halliday
James W. Ironside
Seth Love
Ian R. Mackenzie
David G. Munoz
Melissa E. Murray
Peter T. Nelson
Hitoshi Takahashi
John Q. Trojanowski
Olaf Ansorge
Thomas Arzberger
Atik Baborie
Thomas G. Beach
Kevin F. Bieniek
Eileen H. Bigio
Istvan Bodi
Brittany N. Dugger
Mel Feany
Ellen Gelpi
Stephen M. Gentleman
Giorgio Giaccone
Kimmo J. Hatanpaa
Richard Heale
Patrick R. Hof
Monika Hofer
Tibor Hortobágyi
Kurt Jellinger
Gregory A. Jicha
Paul Ince
Julia Kofler
Enikö Kövari
Jillian J. Kril
David M. Mann
Radoslav Matej
Ann C. McKee
Catriona McLean
Ivan Milenkovic
Thomas J. Montine
Shigeo Murayama
Edward B. Lee
机构
[1] Institute of Neurology,Institute of Neuropathology, Bellvitge University Hospital
[2] Medical University of Vienna,Department of Neurology, Memory and Aging Center
[3] University of Barcelona,Department of Pathology, LIM
[4] Hospitalet de Llobregat,22
[5] University of California,Department of Immunology, Genetics and Pathology
[6] University of Sao Paulo Medical School,Institute of Neuroscience
[7] Uppsala University,Institute of Neuropathology
[8] Newcastle University,Department of Pathology and Immunology
[9] University Hospital Zürich,Department of Pathology, Friedman Brain Institute, and the Ronald M. Loeb Center for Alzheimer’s Disease
[10] Washington University School of Medicine,Neuropathology Department, Hopital de La Salpetrière, AP
[11] Icahn School of Medicine at Mount Sinai,HP
[12] UPMC-Sorbonne-University,Department of Pathology and Laboratory Medicine
[13] Indiana University School of Medicine,Centre for Clinical Brain Sciences
[14] GMH-Neuroscience Research Australia and the University of New South Wales,Institute of Clinical Neurosciences
[15] University of Edinburgh,Department of Pathology and Laboratory Medicine
[16] University of Bristol,Division of Pathology
[17] Learning and Research Level 2,Department of Neuroscience
[18] Southmead Hospital,Department of Pathology and Sanders
[19] University of British Columbia,Brown Center on Aging
[20] St. Michael’s Hospital,Department of Pathology, Brain Research Institute
[21] Mayo Clinic,Department of Pathology and Laboratory Medicine of the Perelman School of Medicine, Center for Neurodegenerative Disease Research, Institute On Aging
[22] University of Kentucky,Department of Neuropathology
[23] Niigata University,Department of Psychiatry and Psychotherapy, Centre for Neuropathology and Prion Research
[24] University of Pennsylvania,Department of Neuropathology
[25] John Radcliffe Hospital,Civin Laboratory for Neuropathology
[26] Ludwig-Maximilians-University Munich,Northwestern ADC Neuropathology Core
[27] Walton Centre,Department of Pathology
[28] Banner Sun Health Research Institute,Department of Medicine
[29] Northwestern University Feinberg School of Medicine,Department of Pathology
[30] Clinical Neuropathology,Fishberg Department of Neuroscience, Friedman Brain Institute, and Ronald M. Loeb Center for Alzheimer’s Disease
[31] King’s College Hospital,Department of Neuropathology, Faculty of Medicine, Institute of Pathology
[32] London Neurodegenerative Brain Bank,Department of Neurology and Sanders
[33] Institute for Neurodegenerative Diseases,Brown Center on Aging
[34] University of California San Francisco,Sheffield Institute for Translational Neuroscience
[35] Brigham and Women’s Hospital,Department of Pathology
[36] Harvard Medical School,Department of Mental Health and Psychiatry
[37] Neurological Tissue Bank of the Biobank-Hospital Clinic-IDIBAPS,Discipline of Pathology, Sydney Medical School
[38] Institut d’Investigacions Biomediques August Pi i Sunyer,Institute of Brain, Behaviour and Mental Health
[39] Imperial College London,Department of Pathology and Molecular Medicine
[40] IRCCS Foundation “Carlo Besta” Neurological Institute,Department of Neurology and Pathology
[41] University of Texas Southwestern Medical Center,Department of Anatomical Pathology
[42] Icahn School of Medicine at Mount Sinai,Department of Neurology
[43] University of Debrecen,Department of Pathology
[44] Institute of Clinical Neurobiology,Department of Neuropathology (The Brain Bank for Aging Research)
[45] University of Kentucky,Physiopathology in Aging Lab/Brazilian Aging Brain Study Group
[46] University of Sheffield,LIM22
[47] University of Pittsburgh,Netherlands Brainbank and Department of Pathology
[48] University Hospitals and University of Geneva School of Medicine,Department of Pathology
[49] The University of Sydney,Department of Neurological Sciences
[50] Manchester University Faculty of Medical and Health Sciences,Institute of Neuroanatomy, Centre for Biomedicine and Medical Technology Mannheim, Medical Faculty Mannheim
来源
Acta Neuropathologica | 2016年 / 131卷
关键词
Aging; ARTAG; Tau astrogliopathy; Tau;
D O I
暂无
中图分类号
学科分类号
摘要
Pathological accumulation of abnormally phosphorylated tau protein in astrocytes is a frequent, but poorly characterized feature of the aging brain. Its etiology is uncertain, but its presence is sufficiently ubiquitous to merit further characterization and classification, which may stimulate clinicopathological studies and research into its pathobiology. This paper aims to harmonize evaluation and nomenclature of aging-related tau astrogliopathy (ARTAG), a term that refers to a morphological spectrum of astroglial pathology detected by tau immunohistochemistry, especially with phosphorylation-dependent and 4R isoform-specific antibodies. ARTAG occurs mainly, but not exclusively, in individuals over 60 years of age. Tau-immunoreactive astrocytes in ARTAG include thorn-shaped astrocytes at the glia limitans and in white matter, as well as solitary or clustered astrocytes with perinuclear cytoplasmic tau immunoreactivity that extends into the astroglial processes as fine fibrillar or granular immunopositivity, typically in gray matter. Various forms of ARTAG may coexist in the same brain and might reflect different pathogenic processes. Based on morphology and anatomical distribution, ARTAG can be distinguished from primary tauopathies, but may be concurrent with primary tauopathies or other disorders. We recommend four steps for evaluation of ARTAG: (1) identification of five types based on the location of either morphologies of tau astrogliopathy: subpial, subependymal, perivascular, white matter, gray matter; (2) documentation of the regional involvement: medial temporal lobe, lobar (frontal, parietal, occipital, lateral temporal), subcortical, brainstem; (3) documentation of the severity of tau astrogliopathy; and (4) description of subregional involvement. Some types of ARTAG may underlie neurological symptoms; however, the clinical significance of ARTAG is currently uncertain and awaits further studies. The goal of this proposal is to raise awareness of astroglial tau pathology in the aged brain, facilitating communication among neuropathologists and researchers, and informing interpretation of clinical biomarkers and imaging studies that focus on tau-related indicators.
引用
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页码:87 / 102
页数:15
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