Literature DB >> 25549971

Frontotemporal lobar degeneration: defining phenotypic diversity through personalized medicine.

David J Irwin1, Nigel J Cairns, Murray Grossman, Corey T McMillan, Edward B Lee, Vivianna M Van Deerlin, Virginia M-Y Lee, John Q Trojanowski.   

Abstract

Frontotemporal lobar degeneration (FTLD) comprises two main classes of neurodegenerative diseases characterized by neuronal/glial proteinaceous inclusions (i.e., proteinopathies) including tauopathies (i.e., FTLD-Tau) and TDP-43 proteinopathies (i.e., FTLD-TDP) while other very rare forms of FTLD are known such as FTLD with FUS pathology (FTLD-FUS). This review focuses mainly on FTLD-Tau and FLTD-TDP, which may present as several clinical syndromes: a behavioral/dysexecutive syndrome (behavioral variant frontotemporal dementia); language disorders (primary progressive aphasia variants); and motor disorders (amyotrophic lateral sclerosis, corticobasal syndrome, progressive supranuclear palsy syndrome). There is considerable heterogeneity in clinical presentations of underlying neuropathology and current clinical criteria do not reliably predict underlying proteinopathies ante-mortem. In contrast, molecular etiologies of hereditary FTLD are consistently associated with specific proteinopathies. These include MAPT mutations with FTLD-Tau and GRN, C9orf72, VCP and TARDBP with FTLD-TDP. The last decade has seen a rapid expansion in our knowledge of the molecular pathologies associated with this clinically and neuropathologically heterogeneous group of FTLD diseases. Moreover, in view of current limitations to reliably diagnose specific FTLD neuropathologies prior to autopsy, we summarize the current state of the science in FTLD biomarker research including neuroimaging, biofluid and genetic analyses. We propose that combining several of these biomarker modalities will improve diagnostic specificity in FTLD through a personalized medicine approach. The goals of these efforts are to enhance power for clinical trials focused on slowing or preventing progression of spread of tau, TDP-43 and other FTLD-associated pathologies and work toward the goal of defining clinical endophenotypes of FTD.

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Year:  2014        PMID: 25549971      PMCID: PMC4369168          DOI: 10.1007/s00401-014-1380-1

Source DB:  PubMed          Journal:  Acta Neuropathol        ISSN: 0001-6322            Impact factor:   17.088


  220 in total

1.  Pattern of ubiquilin pathology in ALS and FTLD indicates presence of C9ORF72 hexanucleotide expansion.

Authors:  Johannes Brettschneider; Vivianna M Van Deerlin; John L Robinson; Linda Kwong; Edward B Lee; Yousuf O Ali; Nathaniel Safren; Mervyn J Monteiro; Jon B Toledo; Lauren Elman; Leo McCluskey; David J Irwin; Murray Grossman; Laura Molina-Porcel; Virginia M-Y Lee; John Q Trojanowski
Journal:  Acta Neuropathol       Date:  2012-03-18       Impact factor: 17.088

2.  The MAPT H1 haplotype is associated with tangle-predominant dementia.

Authors:  Ismael Santa-Maria; Aya Haggiagi; Xinmin Liu; Jessica Wasserscheid; Peter T Nelson; Ken Dewar; Lorraine N Clark; John F Crary
Journal:  Acta Neuropathol       Date:  2012-07-17       Impact factor: 17.088

Review 3.  Nonprogressive behavioural frontotemporal dementia: recent developments and clinical implications of the 'bvFTD phenocopy syndrome'.

Authors:  Christopher M Kipps; John R Hodges; Michael Hornberger
Journal:  Curr Opin Neurol       Date:  2010-12       Impact factor: 5.710

4.  Estimating the number of persons with frontotemporal lobar degeneration in the US population.

Authors:  David S Knopman; Rosebud O Roberts
Journal:  J Mol Neurosci       Date:  2011-05-17       Impact factor: 3.444

5.  Association of an extended haplotype in the tau gene with progressive supranuclear palsy.

Authors:  M Baker; I Litvan; H Houlden; J Adamson; D Dickson; J Perez-Tur; J Hardy; T Lynch; E Bigio; M Hutton
Journal:  Hum Mol Genet       Date:  1999-04       Impact factor: 6.150

6.  Identification of common variants influencing risk of the tauopathy progressive supranuclear palsy.

Authors:  Günter U Höglinger; Nadine M Melhem; Dennis W Dickson; Patrick M A Sleiman; Li-San Wang; Lambertus Klei; Rosa Rademakers; Rohan de Silva; Irene Litvan; David E Riley; John C van Swieten; Peter Heutink; Zbigniew K Wszolek; Ryan J Uitti; Jana Vandrovcova; Howard I Hurtig; Rachel G Gross; Walter Maetzler; Stefano Goldwurm; Eduardo Tolosa; Barbara Borroni; Pau Pastor; Laura B Cantwell; Mi Ryung Han; Allissa Dillman; Marcel P van der Brug; J Raphael Gibbs; Mark R Cookson; Dena G Hernandez; Andrew B Singleton; Matthew J Farrer; Chang-En Yu; Lawrence I Golbe; Tamas Revesz; John Hardy; Andrew J Lees; Bernie Devlin; Hakon Hakonarson; Ulrich Müller; Gerard D Schellenberg
Journal:  Nat Genet       Date:  2011-06-19       Impact factor: 38.330

7.  Brain progranulin expression in GRN-associated frontotemporal lobar degeneration.

Authors:  Alice S Chen-Plotkin; Jiping Xiao; Felix Geser; Maria Martinez-Lage; Murray Grossman; Travis Unger; Elisabeth M Wood; Vivianna M Van Deerlin; John Q Trojanowski; Virginia M-Y Lee
Journal:  Acta Neuropathol       Date:  2009-08-02       Impact factor: 17.088

8.  Co-morbidity of TDP-43 proteinopathy in Lewy body related diseases.

Authors:  Hanae Nakashima-Yasuda; Kunihiro Uryu; John Robinson; Sharon X Xie; Howard Hurtig; John E Duda; Steven E Arnold; Andrew Siderowf; Murray Grossman; James B Leverenz; Randy Woltjer; Oscar L Lopez; Ronald Hamilton; Debby W Tsuang; Douglas Galasko; Eliezer Masliah; Jeffrey Kaye; Christopher M Clark; Thomas J Montine; Virginia M-Y Lee; John Q Trojanowski
Journal:  Acta Neuropathol       Date:  2007-07-25       Impact factor: 17.088

9.  TDP-43 skeins show properties of amyloid in a subset of ALS cases.

Authors:  John L Robinson; Felix Geser; Anna Stieber; Mfon Umoh; Linda K Kwong; Vivianna M Van Deerlin; Virginia M-Y Lee; John Q Trojanowski
Journal:  Acta Neuropathol       Date:  2012-11-03       Impact factor: 17.088

10.  Characterization of frontotemporal dementia and/or amyotrophic lateral sclerosis associated with the GGGGCC repeat expansion in C9ORF72.

Authors:  Bradley F Boeve; Kevin B Boylan; Neill R Graff-Radford; Mariely DeJesus-Hernandez; David S Knopman; Otto Pedraza; Prashanthi Vemuri; David Jones; Val Lowe; Melissa E Murray; Dennis W Dickson; Keith A Josephs; Beth K Rush; Mary M Machulda; Julie A Fields; Tanis J Ferman; Matthew Baker; Nicola J Rutherford; Jennifer Adamson; Zbigniew K Wszolek; Anahita Adeli; Rodolfo Savica; Brendon Boot; Karen M Kuntz; Ralitza Gavrilova; Andrew Reeves; Jennifer Whitwell; Kejal Kantarci; Clifford R Jack; Joseph E Parisi; John A Lucas; Ronald C Petersen; Rosa Rademakers
Journal:  Brain       Date:  2012-03       Impact factor: 13.501

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  122 in total

1.  Integrated multimodal imaging in neurodegenerative disease.

Authors:  Murray Grossman
Journal:  Lancet Neurol       Date:  2015-08-26       Impact factor: 44.182

2.  Association of Cerebrospinal Fluid Neurofilament Light Protein Levels With Cognition in Patients With Dementia, Motor Neuron Disease, and Movement Disorders.

Authors:  Bob Olsson; Erik Portelius; Nicholas C Cullen; Åsa Sandelius; Henrik Zetterberg; Ulf Andreasson; Kina Höglund; David J Irwin; Murray Grossman; Daniel Weintraub; Alice Chen-Plotkin; David Wolk; Leo McCluskey; Lauren Elman; Leslie M Shaw; Jon B Toledo; Jennifer McBride; Pilar Hernandez-Con; Virginia M-Y Lee; John Q Trojanowski; Kaj Blennow
Journal:  JAMA Neurol       Date:  2019-03-01       Impact factor: 18.302

3.  Ante mortem cerebrospinal fluid tau levels correlate with postmortem tau pathology in frontotemporal lobar degeneration.

Authors:  David J Irwin; Alberto Lleó; Sharon X Xie; Corey T McMillan; David A Wolk; Edward B Lee; Viviana M Van Deerlin; Leslie M Shaw; John Q Trojanowski; Murray Grossman
Journal:  Ann Neurol       Date:  2017-08-19       Impact factor: 10.422

4.  Tau pathology spread in PS19 tau transgenic mice following locus coeruleus (LC) injections of synthetic tau fibrils is determined by the LC's afferent and efferent connections.

Authors:  Michiyo Iba; Jennifer D McBride; Jing L Guo; Bin Zhang; John Q Trojanowski; Virginia M-Y Lee
Journal:  Acta Neuropathol       Date:  2015-07-07       Impact factor: 17.088

Review 5.  It's all about tau.

Authors:  Cheril Tapia-Rojas; Fabian Cabezas-Opazo; Carol A Deaton; Erick H Vergara; Gail V W Johnson; Rodrigo A Quintanilla
Journal:  Prog Neurobiol       Date:  2018-12-31       Impact factor: 11.685

Review 6.  Tauopathies as clinicopathological entities.

Authors:  David J Irwin
Journal:  Parkinsonism Relat Disord       Date:  2015-09-08       Impact factor: 4.891

7.  Perfusion alterations converge with patterns of pathological spread in transactive response DNA-binding protein 43 proteinopathies.

Authors:  Pilar M Ferraro; Charles Jester; Christopher A Olm; Katerina Placek; Federica Agosta; Lauren Elman; Leo McCluskey; David J Irwin; John A Detre; Massimo Filippi; Murray Grossman; Corey T McMillan
Journal:  Neurobiol Aging       Date:  2018-04-17       Impact factor: 4.673

8.  A 2-Step Cerebrospinal Algorithm for the Selection of Frontotemporal Lobar Degeneration Subtypes.

Authors:  Alberto Lleó; David J Irwin; Ignacio Illán-Gala; Corey T McMillan; David A Wolk; Edward B Lee; Vivianna M Van Deerlin; Leslie M Shaw; John Q Trojanowski; Murray Grossman
Journal:  JAMA Neurol       Date:  2018-06-01       Impact factor: 18.302

Review 9.  Therapeutic strategies for the treatment of tauopathies: Hopes and challenges.

Authors:  Mansi R Khanna; Jane Kovalevich; Virginia M-Y Lee; John Q Trojanowski; Kurt R Brunden
Journal:  Alzheimers Dement       Date:  2016-10       Impact factor: 21.566

Review 10.  Frontotemporal Dementia.

Authors:  Roger E Kelley; Ramy El-Khoury
Journal:  Neurol Clin       Date:  2016-02       Impact factor: 3.806

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