Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/105283
Title: An immune dysfunction score for stratification of patients with acute infection based on whole-blood gene expression
Authors: Cano-Gamez, Eddie
Burnham, Katie L.
Goh, Cyndi
Allcock, Alice
Malick, Zunaira H.
Overend, Lauren
Kwok, Andrew
Smith, David A.
Peters-Sengers, Hessel
Antcliffe, David
McKechnie, Stuart
Hall, Sally
Addison, Jenni
Roughton, Sian
Tennant, Heather
Guleri, Achyut
Waddington, Natalia
Arawwawala, Dilshan
Durcan, John
Short, Alasdair
Swan, Karen
Raymode, Parizade
Williams, Sarah
Smolen, Susan
Mitchell-Inwang, Christine
Gordon, Tony
Errington, Emily
Templeton, Maie
Venatesh, Pyda
Ward, Geraldine
McCauley, Marie
Baudouin, Simon
Thompson, Jonathan
Higham, Charley
Soar, Jasmeet
Grier, Sally
Hall, Elaine
Brett, Stephen
Kitson, David
Wilson, Robert
Mountford, Laura
Moreno, Juan
Hall, Peter
Bowrey, Sarah
Hewlett, Jackie
McKechnie, Stuart
Garrard, Christopher
Millo, Julian
Young, Duncan
Hutton, Paula
Parsons, Penny
Smiths, Alex
Faras-Arraya, Roser
Soar, Jasmeet
Kazembe, Sandra
Rich, Natalie
Andreou, Prem
Hales, Dawn
Roberts, Emma
Fletcher, Simon
Rosbergen, Melissa
Lowes, Sarah
Glister, Georgina
Moreno Cuesta, Jeronimo
Bion, Julian
Millar, Joanne
Perry, Elsa Jane
Willis, Heather
Mitchell, Natalie
Ruel, Sebastian
Carrera, Ronald
Wilde, Jude
Higham, Charley
Nilson, Annette
Lees, Sarah
Kapila, Atul
Jacques, Nicola
Atkinson, Jane
Brown, Abby
Prowse, Heather
Krige, Anton
Bland, Martin
Bullock, Lynne
Walsh, Helen
Harrison, Donna
Mills, Gary
Humphreys, John
Armitage, Kelsey
Laha, Shond
Baldwin, Jacqueline
Walsh, Angela
Doherty, Nicola
Drage, Stephen
Ortiz-Ruiz de Gordoa, Laura
Calder, Verity
Swan, Catherine
Payne, Heather
Higgins, David
Andrews, Sarah
Mappleback, Sarah
Hind, Charles
Scicluna, Brendon P.
Garrard, Chris
Watson, D.
McLees, Eleanor
Purdy, Alice
Stotz, Martin
Ochelli-Okpue, Adaeze
Bonner, Stephen
Whitehead, Iain
Hugil, Keith
Goodridge, Victoria
Poll, Tom van der
Cawthor, Louisa
Kuper, Martin
Pahary, Sheik
Bellingan, Geoffrey
Marshall, Richard
Montgomery, Hugh
Hyun Ryu, Jung
Bercades, Georgia
Boluda, Susan
Bentley, Andrew
Gordon, Anthony C.
Mccalman, Katie
Jefferies, Fiona
Knight, Julian
Davenport, Emma
Burnham, Katie L.
Maugeri, Narelle
Radhakrishnan, Jayachandran
Mi, Yuxin
Allcock, Alice
Goh, Cyndi
Hinds, Charles J.
Davenport, Emma E.
Knight, Julian C.
Webster, Nigel
Galley, Helen
Taylor, Jane
Authors: GAinS Investigators
Keywords: COVID-19 (Disease)
Genetic regulation
Influenza A virus
H1N1 influenza
Septicemia -- Diagnosis
Genetics
Issue Date: 2022
Publisher: American Association for the Advancement of Science (AAAS)
Citation: Cano-Gamez, E., Burnham, K. L., Goh, C., Malick, Z. H., Overend, L., Kwok, A., ... & Goh, C. (2022). An immune dysfunction score for stratification of patients with acute infection based on whole blood gene expression. Science Translational Medicine, 14(669), 10.1126/scitranslmed.abq4433.
Abstract: Dysregulated host responses to infection can lead to organ dysfunction and sepsis, causing millions of global deaths each year. To alleviate this burden, improved prognostication and biomarkers of response are urgently needed. We investigated the use of whole-blood transcriptomics for stratification of patients with severe infection by integrating data from 3149 samples from patients with sepsis due to community-acquired pneumonia or fecal peritonitis admitted to intensive care and healthy individuals into a gene expression reference map. We used this map to derive a quantitative sepsis response signature (SRSq) score reflective of immune dysfunction and predictive of clinical outcomes, which can be estimated using a 7- or 12-gene signature. Last, we built a machine learning framework, SepstratifieR, to deploy SRSq in adult and pediatric bacterial and viral sepsis, H1N1 influenza, and COVID-19, demonstrating clinically relevant stratification across diseases and revealing some of the physiological alterations linking immune dysregulation to mortality. Our method enables early identification of individuals with dysfunctional immune profiles, bringing us closer to precision medicine in infection.
URI: https://www.um.edu.mt/library/oar/handle/123456789/105283
Appears in Collections:Scholarly Works - FacHScABS



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