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A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies

INTRODUCTION: Neurofilament light (NfL) can be detected in blood of healthy individuals and at elevated levels in those with different neurological diseases. We investigated if the choice of biological matrix can affect results when using NfL as biomarker in epidemiological studies. METHOD: We obtai...

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Autores principales: Rübsamen, Nicole, Willemse, Eline A. J., Leppert, David, Wiendl, Heinz, Nauck, Matthias, Karch, André, Kuhle, Jens, Berger, Klaus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9237479/
https://www.ncbi.nlm.nih.gov/pubmed/35775045
http://dx.doi.org/10.3389/fneur.2022.894119
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author Rübsamen, Nicole
Willemse, Eline A. J.
Leppert, David
Wiendl, Heinz
Nauck, Matthias
Karch, André
Kuhle, Jens
Berger, Klaus
author_facet Rübsamen, Nicole
Willemse, Eline A. J.
Leppert, David
Wiendl, Heinz
Nauck, Matthias
Karch, André
Kuhle, Jens
Berger, Klaus
author_sort Rübsamen, Nicole
collection PubMed
description INTRODUCTION: Neurofilament light (NfL) can be detected in blood of healthy individuals and at elevated levels in those with different neurological diseases. We investigated if the choice of biological matrix can affect results when using NfL as biomarker in epidemiological studies. METHOD: We obtained paired serum and EDTA-plasma samples of 299 individuals aged 37–67 years (BiDirect study) and serum samples of 373 individuals aged 65–83 years (MEMO study). In BiDirect, Passing–Bablok analyses were performed to assess proportional and systematic differences between biological matrices. Associations between serum or EDTA-plasma NfL and renal function (serum creatinine, serum cystatin C, glomerular filtration rate, and kidney disease) were investigated using linear or logistic regression, respectively. All regression coefficients were estimated (1) per one ng/L increase and (2) per one standard deviation increase (standardization using z-scores). In MEMO, regression coefficients were estimated (1) per one ng/L increase of serum or calculated EDTA-plasma NfL and (2) per one standard deviation increase providing a comparison to the results from BiDirect. RESULTS: We found proportional and systematic differences between paired NfL measurements in BiDirect, i.e., serum NfL [ng/L] = −0.33 [ng/L] + 1.11 × EDTA-plasma NfL [ng/L]. Linear regression coefficients for the associations between NfL and renal function did not vary between the different NfL measurements. In MEMO, one standard deviation increase in serum NfL was associated with greater changes in the outcomes than in BiDirect. CONCLUSION: Although there are differences between serum and EDTA-plasma NfL, results can be used interchangeably if standardized values are used.
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spelling pubmed-92374792022-06-29 A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies Rübsamen, Nicole Willemse, Eline A. J. Leppert, David Wiendl, Heinz Nauck, Matthias Karch, André Kuhle, Jens Berger, Klaus Front Neurol Neurology INTRODUCTION: Neurofilament light (NfL) can be detected in blood of healthy individuals and at elevated levels in those with different neurological diseases. We investigated if the choice of biological matrix can affect results when using NfL as biomarker in epidemiological studies. METHOD: We obtained paired serum and EDTA-plasma samples of 299 individuals aged 37–67 years (BiDirect study) and serum samples of 373 individuals aged 65–83 years (MEMO study). In BiDirect, Passing–Bablok analyses were performed to assess proportional and systematic differences between biological matrices. Associations between serum or EDTA-plasma NfL and renal function (serum creatinine, serum cystatin C, glomerular filtration rate, and kidney disease) were investigated using linear or logistic regression, respectively. All regression coefficients were estimated (1) per one ng/L increase and (2) per one standard deviation increase (standardization using z-scores). In MEMO, regression coefficients were estimated (1) per one ng/L increase of serum or calculated EDTA-plasma NfL and (2) per one standard deviation increase providing a comparison to the results from BiDirect. RESULTS: We found proportional and systematic differences between paired NfL measurements in BiDirect, i.e., serum NfL [ng/L] = −0.33 [ng/L] + 1.11 × EDTA-plasma NfL [ng/L]. Linear regression coefficients for the associations between NfL and renal function did not vary between the different NfL measurements. In MEMO, one standard deviation increase in serum NfL was associated with greater changes in the outcomes than in BiDirect. CONCLUSION: Although there are differences between serum and EDTA-plasma NfL, results can be used interchangeably if standardized values are used. Frontiers Media S.A. 2022-06-14 /pmc/articles/PMC9237479/ /pubmed/35775045 http://dx.doi.org/10.3389/fneur.2022.894119 Text en Copyright © 2022 Rübsamen, Willemse, Leppert, Wiendl, Nauck, Karch, Kuhle and Berger. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neurology
Rübsamen, Nicole
Willemse, Eline A. J.
Leppert, David
Wiendl, Heinz
Nauck, Matthias
Karch, André
Kuhle, Jens
Berger, Klaus
A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies
title A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies
title_full A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies
title_fullStr A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies
title_full_unstemmed A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies
title_short A Method to Combine Neurofilament Light Measurements From Blood Serum and Plasma in Clinical and Population-Based Studies
title_sort method to combine neurofilament light measurements from blood serum and plasma in clinical and population-based studies
topic Neurology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9237479/
https://www.ncbi.nlm.nih.gov/pubmed/35775045
http://dx.doi.org/10.3389/fneur.2022.894119
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