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A neutrophil activation signature predicts critical illness and mortality in COVID-19

Pathologic immune hyperactivation is emerging as a key feature of critical illness in COVID-19, but the mechanisms involved remain poorly understood. We carried out proteomic profiling of plasma from cross-sectional and longitudinal cohorts of hospitalized patients with COVID-19 and analyzed clinica...

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Autores principales: Meizlish, Matthew L., Pine, Alexander B., Bishai, Jason D., Goshua, George, Nadelmann, Emily R., Simonov, Michael, Chang, C-Hong, Zhang, Hanming, Shallow, Marcus, Bahel, Parveen, Owusu, Kent, Yamamoto, Yu, Arora, Tanima, Atri, Deepak S., Patel, Amisha, Gbyli, Rana, Kwan, Jennifer, Won, Christine H., Dela Cruz, Charles, Price, Christina, Koff, Jonathan, King, Brett A., Rinder, Henry M., Wilson, F. Perry, Hwa, John, Halene, Stephanie, Damsky, William, van Dijk, David, Lee, Alfred I., Chun, Hyung J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Hematology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7908851/
https://www.ncbi.nlm.nih.gov/pubmed/33635335
http://dx.doi.org/10.1182/bloodadvances.2020003568
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author Meizlish, Matthew L.
Pine, Alexander B.
Bishai, Jason D.
Goshua, George
Nadelmann, Emily R.
Simonov, Michael
Chang, C-Hong
Zhang, Hanming
Shallow, Marcus
Bahel, Parveen
Owusu, Kent
Yamamoto, Yu
Arora, Tanima
Atri, Deepak S.
Patel, Amisha
Gbyli, Rana
Kwan, Jennifer
Won, Christine H.
Dela Cruz, Charles
Price, Christina
Koff, Jonathan
King, Brett A.
Rinder, Henry M.
Wilson, F. Perry
Hwa, John
Halene, Stephanie
Damsky, William
van Dijk, David
Lee, Alfred I.
Chun, Hyung J.
author_facet Meizlish, Matthew L.
Pine, Alexander B.
Bishai, Jason D.
Goshua, George
Nadelmann, Emily R.
Simonov, Michael
Chang, C-Hong
Zhang, Hanming
Shallow, Marcus
Bahel, Parveen
Owusu, Kent
Yamamoto, Yu
Arora, Tanima
Atri, Deepak S.
Patel, Amisha
Gbyli, Rana
Kwan, Jennifer
Won, Christine H.
Dela Cruz, Charles
Price, Christina
Koff, Jonathan
King, Brett A.
Rinder, Henry M.
Wilson, F. Perry
Hwa, John
Halene, Stephanie
Damsky, William
van Dijk, David
Lee, Alfred I.
Chun, Hyung J.
author_sort Meizlish, Matthew L.
collection PubMed
description Pathologic immune hyperactivation is emerging as a key feature of critical illness in COVID-19, but the mechanisms involved remain poorly understood. We carried out proteomic profiling of plasma from cross-sectional and longitudinal cohorts of hospitalized patients with COVID-19 and analyzed clinical data from our health system database of more than 3300 patients. Using a machine learning algorithm, we identified a prominent signature of neutrophil activation, including resistin, lipocalin-2, hepatocyte growth factor, interleukin-8, and granulocyte colony-stimulating factor, which were the strongest predictors of critical illness. Evidence of neutrophil activation was present on the first day of hospitalization in patients who would only later require transfer to the intensive care unit, thus preceding the onset of critical illness and predicting increased mortality. In the health system database, early elevations in developing and mature neutrophil counts also predicted higher mortality rates. Altogether, these data suggest a central role for neutrophil activation in the pathogenesis of severe COVID-19 and identify molecular markers that distinguish patients at risk of future clinical decompensation.
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spelling pubmed-79088512021-02-26 A neutrophil activation signature predicts critical illness and mortality in COVID-19 Meizlish, Matthew L. Pine, Alexander B. Bishai, Jason D. Goshua, George Nadelmann, Emily R. Simonov, Michael Chang, C-Hong Zhang, Hanming Shallow, Marcus Bahel, Parveen Owusu, Kent Yamamoto, Yu Arora, Tanima Atri, Deepak S. Patel, Amisha Gbyli, Rana Kwan, Jennifer Won, Christine H. Dela Cruz, Charles Price, Christina Koff, Jonathan King, Brett A. Rinder, Henry M. Wilson, F. Perry Hwa, John Halene, Stephanie Damsky, William van Dijk, David Lee, Alfred I. Chun, Hyung J. Blood Adv Phagocytes, Granulocytes, and Myelopoiesis Pathologic immune hyperactivation is emerging as a key feature of critical illness in COVID-19, but the mechanisms involved remain poorly understood. We carried out proteomic profiling of plasma from cross-sectional and longitudinal cohorts of hospitalized patients with COVID-19 and analyzed clinical data from our health system database of more than 3300 patients. Using a machine learning algorithm, we identified a prominent signature of neutrophil activation, including resistin, lipocalin-2, hepatocyte growth factor, interleukin-8, and granulocyte colony-stimulating factor, which were the strongest predictors of critical illness. Evidence of neutrophil activation was present on the first day of hospitalization in patients who would only later require transfer to the intensive care unit, thus preceding the onset of critical illness and predicting increased mortality. In the health system database, early elevations in developing and mature neutrophil counts also predicted higher mortality rates. Altogether, these data suggest a central role for neutrophil activation in the pathogenesis of severe COVID-19 and identify molecular markers that distinguish patients at risk of future clinical decompensation. American Society of Hematology 2021-02-26 /pmc/articles/PMC7908851/ /pubmed/33635335 http://dx.doi.org/10.1182/bloodadvances.2020003568 Text en © 2021 by The American Society of Hematology This article is made available via the PMC Open Access Subset for unrestricted reuse and analyses in any form or by any means with acknowledgment of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic or until permissions are revoked in writing. Upon expiration of these permissions, PMC is granted a perpetual license to make this article available via PMC and Europe PMC, consistent with existing copyright protections.
spellingShingle Phagocytes, Granulocytes, and Myelopoiesis
Meizlish, Matthew L.
Pine, Alexander B.
Bishai, Jason D.
Goshua, George
Nadelmann, Emily R.
Simonov, Michael
Chang, C-Hong
Zhang, Hanming
Shallow, Marcus
Bahel, Parveen
Owusu, Kent
Yamamoto, Yu
Arora, Tanima
Atri, Deepak S.
Patel, Amisha
Gbyli, Rana
Kwan, Jennifer
Won, Christine H.
Dela Cruz, Charles
Price, Christina
Koff, Jonathan
King, Brett A.
Rinder, Henry M.
Wilson, F. Perry
Hwa, John
Halene, Stephanie
Damsky, William
van Dijk, David
Lee, Alfred I.
Chun, Hyung J.
A neutrophil activation signature predicts critical illness and mortality in COVID-19
title A neutrophil activation signature predicts critical illness and mortality in COVID-19
title_full A neutrophil activation signature predicts critical illness and mortality in COVID-19
title_fullStr A neutrophil activation signature predicts critical illness and mortality in COVID-19
title_full_unstemmed A neutrophil activation signature predicts critical illness and mortality in COVID-19
title_short A neutrophil activation signature predicts critical illness and mortality in COVID-19
title_sort neutrophil activation signature predicts critical illness and mortality in covid-19
topic Phagocytes, Granulocytes, and Myelopoiesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7908851/
https://www.ncbi.nlm.nih.gov/pubmed/33635335
http://dx.doi.org/10.1182/bloodadvances.2020003568
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