Accès ouvert déclaré
2022
article
Constructing custom-made radiotranscriptomic signatures of vascular inflammation from routine CT angiograms: a prospective outcomes validation study in COVID-19
Christos P. Kotanidis, Cheng Xie, Donna Maria Alexander, Jonathan Rodrigues, Katie L. Burnham, Alexander J. Mentzer, Daniel O’Connor, Julian C. Knight, Muhammad Siddique, Helen Lockstone, Sheena Thomas, Rafail A. Kotronias, Evangelos K. Oikonomou, Ileana Badi, Maria Lyasheva, Cheerag Shirodaria, Sheila Lumley, Bede Constantinides, Nicholas Sanderson, Gillian Rodger, Kevin Chau, Archie Lodge, Maria Tsakok, Fergus Gleeson, David Adlam, Praveen P. N. Rao, Das Indrajeet, Aparna Deshpande, Amrita Bajaj, Benjamin Hudson, Vivek Srivastava, Shakil Farid, George Krasopoulos, Rana Sayeed, Ling‐Pei Ho, Stefan Neubauer, David E. Newby, Keith M. Channon, John Deanfield, Charalambos Antoniades, David Ahern, Zhichao Ai, Mark Ainsworth, Chris Allan, Alice Allcock, Brian Angus, M. Azim Ansari, Carolina V. Arancibia-Cárcamo, Dominik Aschenbrenner, Moustafa Attar, J. Kenneth Baillie, Eleanor Barnes, Rachael Bashford-Rogers, Archana Bashyal, Sally Beer, G. Berridge, Amy Beveridge, Sagida Bibi, Tihana Bicanic, Luke Blackwell, Paul Bowness, Andrew Brent, Andrew Brown, John Broxholme, David Buck, Helen M. Byrne, Susana Camara, Ivan Candido-Ferreira, Philip D. Charles, Wentao Chen, Yi‐Ling Chen, Amanda Y. Chong, Elizabeth Clutterbuck, Mark Coles, Christopher P. Conlon, Richard J. Cornall, Adam P. Cribbs, Fabiola Curion, Emma E. Davenport, Neil C. Davidson, Simon Davis, Calliope A. Dendrou, Julie Dequaire, Lea Dib, James Docker, Christina Dold, Tao Dong, Damien J. Downes, Hal Drakesmith, Susanna Dunachie, David A. Duncan, Chris Eijsbouts, Robert Esnouf, Alexis Espinosa, Rachel Etherington, Benjamin P. Fairfax, Rory Fairhead, Hai Fang, Shayan Fassih, Sally Felle, Maria Fernandez Mendoza, Ricardo Melo Ferreira, Roman Fischer, Thomas Foord, Aden Forrow, John Frater, Anastasia Fries, Verónica Sánchez, Lucy C. Garner, Clementine Geeves, Dominique Georgiou, Leila Godfrey, Tanya Golubchik, Maria Gomez Vazquez, Angie Green, Hong Harper, Heather A. Harrington, Raphael Heilig, Svenja Hester, Jennifer Hill, Charles Hinds, Clare Hird, Renee S. Hoekzema, Benjamin Hollis, Jim R. Hughes, Paula Hutton, Matthew A. Jackson-Wood, Ashwin Jainarayanan, Anna James-Bott, Kathrin Jansen, Katie Jeffery, Elizabeth Jones, Luke Jostins, Georgina Kerr, David Kim, Paul Klenerman, Vinod Kumar, Piyush Kumar Sharma, Prathiba Kurupati, Andrew Kwok, A.H.S. Lee, Aline Linder, Teresa Lockett, Lorne Lonie, Maria Lopopolo, Martyna Lukoseviciute, Jian Luo, Spyridoula Marinou, Brian D. Marsden, Jose Martinez, Philippa C. Matthews, Michalina Mazurczyk, Simon J. McGowan, Stuart McKechnie, Adam J. Mead, Yuxin Mi, Claudia Monaco, Ruddy Montadon, Giorgio Napolitani, Isar Nassiri, Alex Novak, Darragh P. O’Brien, Denise O’Donnell, Graham S. Ogg, Lauren Overend, Inhye Park, Ian Pavord, Yanchun Peng, Frank Penkava, Mariana Pereira Pinho, Elena Perez, Andrew J. Pollard, Fiona Powrie, Bethan Psaila, T. Phuong Quan, Emmanouela Repapi, Santiago Revale, Laura Silva-Reyes, Jean-Baptiste Richard, Charlotte Rich‐Griffin, Thomas Ritter, Christine S. Rollier, Matthew Rowland, Fabian Ruehle, Mariolina Salio, Stephen N. Sansom, Raphael Sanches Peres, Tatjana Sauka‐Spengler, Ron Schweßinger, Giuseppe Scozzafava, Gavin Screaton, Anna Seigal, Malcolm G. Semple, Martin J. Sergeant, Christina Simoglou Karali, David Sims, Donal Skelly, Hubert Slawinski, Alberto Sobrinodiaz, Nikolaos Sousos, Lizzie Stafford, Lisa Stockdale, Marie Strickland, Otto Sumray, Bo Sun, Chelsea Taylor, Stephen Taylor, A Taylor, Supat Thongjuea, Hannah Thraves, John A. Todd, Adriana Tomić, Orion Tong, Amy Trebes, Dominik Trzupek, Felicia Anna Tucci, Lance Turtle, Irina A. Udalova, Holm H. Uhlig, Erinke van Grinsven, Iolanda Vendrell, Marije K. Verheul, Alexandru-Ioan Voda, Guanlin Wang, Lihui Wang, Dapeng Wang, Peter Watkinson, Robert Watson, Michael Weinberger, Justin P. Whalley, Lorna Witty, Katherine Wray, Luzheng Xue, Hing‐Yuen Yeung, Zixi Yin, Rebecca Young, Jonathan Youngs, Ping Zhang, Yasemin-Xiomara Zurke, Adrian Banning, Alexios S. Antonopoulos, Andrew Kelion, Attila Kardos, Bon–Kwon Koo, Ciara Mahon, Colin Berry, Derek Connolly, Diane Scaletta, Ed Nicol, Elisa McAlindon, Francesca Pugliese, Gianluca Pontone, Giulia Benedetti, Guo‐Wei He, Henry West, Hidekazu Kondo, Imre Benedek, Intrajeet Das, John Graby, John P. Greenwood, Junbo Ge, Larissa Fabritz, Lijuan Fan, Lucy Kingham, Marco Guglielmo, Matthias Schmitt, Meinrad Beer, Michelle A. Anderson, Milind Y. Desai, Mohamed Marwan, Naohiko Takahashi, Nehal N. Mehta, Neng Dai, Nicholas Screaton, Nikant Sabharwal, Pál Maurovich‐Horvat, Rajesh Kharbanda, Rebecca Preston, R. F. Wood, Ron Blankstein, Ronak Rajani, Saeed Mirsadraee, Shahzad Munir, Steffen Klömpken, Steffen E. Petersen, Stephan Achenbach, Susan Anthony, Sze Mun Mak, Tarun Mittal, Theodora Benedek, Vinoda Sharma, Wenhua Lin
42Citations signalées — pas une note de qualité
15Institutions déclarées
2Pays d’affiliation déclarés
Résumé fourni par la source
BACKGROUND: Direct evaluation of vascular inflammation in patients with COVID-19 would facilitate more efficient trials of new treatments and identify patients at risk of long-term complications who might respond to treatment. We aimed to develop a novel artificial intelligence (AI)-assisted image analysis platform that quantifies cytokine-driven vascular inflammation from routine CT angiograms, and sought to validate its prognostic value in COVID-19. METHODS: For this prospective outcomes validation study, we developed a radiotranscriptomic platform that uses RNA sequencing data from human internal mammary artery biopsies to develop novel radiomic signatures of vascular inflammation from CT angiography images. We then used this platform to train a radiotranscriptomic signature (C19-RS), derived from the perivascular space around the aorta and the internal mammary artery, to best describe cytokine-driven vascular inflammation. The prognostic value of C19-RS was validated externally in 435 patients (331 from study arm 3 and 104 from study arm 4) admitted to hospital with or without COVID-19, undergoing clinically indicated pulmonary CT angiography, in three UK National Health Service (NHS) trusts (Oxford, Leicester, and Bath). We evaluated the diagnostic and prognostic value of C19-RS for death in hospital due to COVID-19, did sensitivity analyses based on dexamethasone treatment, and investigated the correlation of C19-RS with systemic transcriptomic changes. FINDINGS: Patients with COVID-19 had higher C19-RS than those without (adjusted odds ratio [OR] 2·97 [95% CI 1·43-6·27], p=0·0038), and those infected with the B.1.1.7 (alpha) SARS-CoV-2 variant had higher C19-RS values than those infected with the wild-type SARS-CoV-2 variant (adjusted OR 1·89 [95% CI 1·17-3·20] per SD, p=0·012). C19-RS had prognostic value for in-hospital mortality in COVID-19 in two testing cohorts (high [≥6·99] vs low [<6·99] C19-RS; hazard ratio [HR] 3·31 [95% CI 1·49-7·33], p=0·0033; and 2·58 [1·10-6·05], p=0·028), adjusted for clinical factors, biochemical biomarkers of inflammation and myocardial injury, and technical parameters. The adjusted HR for in-hospital mortality was 8·24 (95% CI 2·16-31·36, p=0·0019) in patients who received no dexamethasone treatment, but 2·27 (0·69-7·55, p=0·18) in those who received dexamethasone after the scan, suggesting that vascular inflammation might have been a therapeutic target of dexamethasone in COVID-19. Finally, C19-RS was strongly associated (r=0·61, p=0·00031) with a whole blood transcriptional module representing dysregulation of coagulation and platelet aggregation pathways. INTERPRETATION: Radiotranscriptomic analysis of CT angiography scans introduces a potentially powerful new platform for the development of non-invasive imaging biomarkers. Application of this platform in routine CT pulmonary angiography scans done in patients with COVID-19 produced the radiotranscriptomic signature C19-RS, a marker of cytokine-driven inflammation driving systemic activation of coagulation and responsible for adverse clinical outcomes, which predicts in-hospital mortality and might allow targeted therapy. FUNDING: Engineering and Physical Sciences Research Council, British Heart Foundation, Oxford BHF Centre of Research Excellence, Innovate UK, NIHR Oxford Biomedical Research Centre, Wellcome Trust, Onassis Foundation.
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Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Constructing custom-made radiotranscriptomic signatures of vascular inflammation from routine CT angiograms: a prospective outcomes validation study in COVID-19
- Date Crossref
- 01/10/2022
- Éditeur
- Elsevier BV
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.
Institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Sujets associés
Cardiovascular Disease and AdiposityCerebrovascular and Carotid Artery DiseasesCOVID-19 Clinical Research Studies