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author Meeter, Lieke H.H.
Gendron, Tania F.
Sias, Ana C.
Jiskoot, Lize C.
Russo, Silvia P.
Donker Kaat, Laura
Papma, Janne M.
Panman, Jessica L.
van der Ende, Emma L.
Dopper, Elise G.
Franzen, Sanne
Graff, Caroline
Boxer, Adam L.
Rosen, Howard J.
Sanchez‐Valle, Raquel
Galimberti, Daniela
Pijnenburg, Yolande A. L.
Benussi, Luisa
Ghidoni, Roberta
Borroni, Barbara
Laforce, Robert
del Campo, Marta
Teunissen, Charlotte E.
van Minkelen, Rick
Rojas, Julio C.
Coppola, Giovanni
Geschwind, Dan H.
Rademakers, Rosa
Karydas, Anna M.
Öijerstedt, Linn
Scarpini, Elio
Binetti, Giuliano
Padovani, Alessandro
Cash, David M.
Dick, Katrina M.
Bocchetta, Martina
Miller, Bruce L.
Rohrer, Jonathan D.
Petrucelli, Leonard
van Swieten, John C.
Lee, Suzee E.
author_facet Meeter, Lieke H.H.
Gendron, Tania F.
Sias, Ana C.
Jiskoot, Lize C.
Russo, Silvia P.
Donker Kaat, Laura
Papma, Janne M.
Panman, Jessica L.
van der Ende, Emma L.
Dopper, Elise G.
Franzen, Sanne
Graff, Caroline
Boxer, Adam L.
Rosen, Howard J.
Sanchez‐Valle, Raquel
Galimberti, Daniela
Pijnenburg, Yolande A. L.
Benussi, Luisa
Ghidoni, Roberta
Borroni, Barbara
Laforce, Robert
del Campo, Marta
Teunissen, Charlotte E.
van Minkelen, Rick
Rojas, Julio C.
Coppola, Giovanni
Geschwind, Dan H.
Rademakers, Rosa
Karydas, Anna M.
Öijerstedt, Linn
Scarpini, Elio
Binetti, Giuliano
Padovani, Alessandro
Cash, David M.
Dick, Katrina M.
Bocchetta, Martina
Miller, Bruce L.
Rohrer, Jonathan D.
Petrucelli, Leonard
van Swieten, John C.
Lee, Suzee E.
author_sort Meeter, Lieke H.H.
collection PubMed
description OBJECTIVE: To evaluate poly(GP), a dipeptide repeat protein, and neurofilament light chain (NfL) as biomarkers in presymptomatic C9orf72 repeat expansion carriers and patients with C9orf72‐associated frontotemporal dementia. Additionally, to investigate the relationship of poly(GP) with indicators of neurodegeneration as measured by NfL and grey matter volume. METHODS: We measured poly(GP) and NfL levels in cerebrospinal fluid (CSF) from 25 presymptomatic C9orf72 expansion carriers, 64 symptomatic expansion carriers with dementia, and 12 noncarriers. We explored associations with grey matter volumes using region of interest and voxel‐wise analyses. RESULTS: Poly(GP) was present in C9orf72 expansion carriers and absent in noncarriers (specificity 100%, sensitivity 97%). Presymptomatic carriers had lower poly(GP) levels than symptomatic carriers. NfL levels were higher in symptomatic carriers than in presymptomatic carriers and healthy noncarriers. NfL was highest in patients with concomitant motor neuron disease, and correlated with disease severity and survival. Associations between poly(GP) levels and small grey matter regions emerged but did not survive multiple comparison correction, while higher NfL levels were associated with atrophy in frontotemporoparietal cortices and the thalamus. INTERPRETATION: This study of C9orf72 expansion carriers reveals that: (1) poly(GP) levels discriminate presymptomatic and symptomatic expansion carriers from noncarriers, but are not associated with indicators of neurodegeneration; and (2) NfL levels are associated with grey matter atrophy, disease severity, and shorter survival. Together, poly(GP) and NfL show promise as complementary biomarkers for clinical trials for C9orf72‐associated frontotemporal dementia, with poly(GP) as a potential marker for target engagement and NfL as a marker of disease activity and progression.
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spelling pubmed-59459592018-05-14 Poly(GP), neurofilament and grey matter deficits in C9orf72 expansion carriers Meeter, Lieke H.H. Gendron, Tania F. Sias, Ana C. Jiskoot, Lize C. Russo, Silvia P. Donker Kaat, Laura Papma, Janne M. Panman, Jessica L. van der Ende, Emma L. Dopper, Elise G. Franzen, Sanne Graff, Caroline Boxer, Adam L. Rosen, Howard J. Sanchez‐Valle, Raquel Galimberti, Daniela Pijnenburg, Yolande A. L. Benussi, Luisa Ghidoni, Roberta Borroni, Barbara Laforce, Robert del Campo, Marta Teunissen, Charlotte E. van Minkelen, Rick Rojas, Julio C. Coppola, Giovanni Geschwind, Dan H. Rademakers, Rosa Karydas, Anna M. Öijerstedt, Linn Scarpini, Elio Binetti, Giuliano Padovani, Alessandro Cash, David M. Dick, Katrina M. Bocchetta, Martina Miller, Bruce L. Rohrer, Jonathan D. Petrucelli, Leonard van Swieten, John C. Lee, Suzee E. Ann Clin Transl Neurol Research Articles OBJECTIVE: To evaluate poly(GP), a dipeptide repeat protein, and neurofilament light chain (NfL) as biomarkers in presymptomatic C9orf72 repeat expansion carriers and patients with C9orf72‐associated frontotemporal dementia. Additionally, to investigate the relationship of poly(GP) with indicators of neurodegeneration as measured by NfL and grey matter volume. METHODS: We measured poly(GP) and NfL levels in cerebrospinal fluid (CSF) from 25 presymptomatic C9orf72 expansion carriers, 64 symptomatic expansion carriers with dementia, and 12 noncarriers. We explored associations with grey matter volumes using region of interest and voxel‐wise analyses. RESULTS: Poly(GP) was present in C9orf72 expansion carriers and absent in noncarriers (specificity 100%, sensitivity 97%). Presymptomatic carriers had lower poly(GP) levels than symptomatic carriers. NfL levels were higher in symptomatic carriers than in presymptomatic carriers and healthy noncarriers. NfL was highest in patients with concomitant motor neuron disease, and correlated with disease severity and survival. Associations between poly(GP) levels and small grey matter regions emerged but did not survive multiple comparison correction, while higher NfL levels were associated with atrophy in frontotemporoparietal cortices and the thalamus. INTERPRETATION: This study of C9orf72 expansion carriers reveals that: (1) poly(GP) levels discriminate presymptomatic and symptomatic expansion carriers from noncarriers, but are not associated with indicators of neurodegeneration; and (2) NfL levels are associated with grey matter atrophy, disease severity, and shorter survival. Together, poly(GP) and NfL show promise as complementary biomarkers for clinical trials for C9orf72‐associated frontotemporal dementia, with poly(GP) as a potential marker for target engagement and NfL as a marker of disease activity and progression. John Wiley and Sons Inc. 2018-04-06 /pmc/articles/PMC5945959/ /pubmed/29761121 http://dx.doi.org/10.1002/acn3.559 Text en © 2018 The Authors. Annals of Clinical and Translational Neurology published by Wiley Periodicals, Inc on behalf of American Neurological Association. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Meeter, Lieke H.H.
Gendron, Tania F.
Sias, Ana C.
Jiskoot, Lize C.
Russo, Silvia P.
Donker Kaat, Laura
Papma, Janne M.
Panman, Jessica L.
van der Ende, Emma L.
Dopper, Elise G.
Franzen, Sanne
Graff, Caroline
Boxer, Adam L.
Rosen, Howard J.
Sanchez‐Valle, Raquel
Galimberti, Daniela
Pijnenburg, Yolande A. L.
Benussi, Luisa
Ghidoni, Roberta
Borroni, Barbara
Laforce, Robert
del Campo, Marta
Teunissen, Charlotte E.
van Minkelen, Rick
Rojas, Julio C.
Coppola, Giovanni
Geschwind, Dan H.
Rademakers, Rosa
Karydas, Anna M.
Öijerstedt, Linn
Scarpini, Elio
Binetti, Giuliano
Padovani, Alessandro
Cash, David M.
Dick, Katrina M.
Bocchetta, Martina
Miller, Bruce L.
Rohrer, Jonathan D.
Petrucelli, Leonard
van Swieten, John C.
Lee, Suzee E.
Poly(GP), neurofilament and grey matter deficits in C9orf72 expansion carriers
title Poly(GP), neurofilament and grey matter deficits in C9orf72 expansion carriers
title_full Poly(GP), neurofilament and grey matter deficits in C9orf72 expansion carriers
title_fullStr Poly(GP), neurofilament and grey matter deficits in C9orf72 expansion carriers
title_full_unstemmed Poly(GP), neurofilament and grey matter deficits in C9orf72 expansion carriers
title_short Poly(GP), neurofilament and grey matter deficits in C9orf72 expansion carriers
title_sort poly(gp), neurofilament and grey matter deficits in c9orf72 expansion carriers
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5945959/
https://www.ncbi.nlm.nih.gov/pubmed/29761121
http://dx.doi.org/10.1002/acn3.559
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