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  3. Predicting trajectories of illness using RNA velocity of whole blood.
 

Predicting trajectories of illness using RNA velocity of whole blood.

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BORIS DOI
10.48620/97601
Publisher DOI
10.1038/s41467-026-71685-5
PubMed ID
42091589
Description
Transcriptomic analyses reveal the status of cells, tissues, or organisms, across states of health and disease. RNA velocity adds a temporal dimension to single cell analyses, predicting future transcriptomic and phenotypic states, based on the current spliced and unspliced mRNA of each cell. We hypothesized that RNA velocity could be adapted to predict future clinical state of individuals with acute and chronic illnesses, using their whole-blood transcriptomes. We developed VeloCD, a method for quantitative prediction of transitions in clinical state from a single time-point RNA sample. This predicts transcriptomic trajectories and future infection status in influenza A and SARS-CoV-2 controlled human infection studies, which are consistent with trajectories in naturally acquired infections. In HIV-TB coinfected individuals, VeloCD predicts the onset of immune reconstitution inflammatory syndrome. In individuals receiving biological therapy for inflammatory bowel disease, whole blood RNA velocity after the first dose of treatment indicates whether remission will be achieved by the end of the treatment course. In a multinational observational study of acutely unwell febrile children, VeloCD predicts those with greatest medical care requirements. Our results demonstrate proof-of-concept for the use of RNA velocity to predict trajectories of human diseases.
Date of Publication
2026-05-06
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Language(s)
en
Contributor(s)
Dunican, Claire
Wilson, Clare
Habgood-Coote, Dominic
Paterson, Suzanna
Noursadeghi, Mahdad
Moseki, Raymond
Stek, Cari
Wilkinson, Robert J
Agyeman, Philipp K. A.orcid-logo
Department of Paediatrics
Beudeker, Coco R
Biesbroek, Giske
von Both, Ulrich
Brengel-Pesce, Karen
Carrol, Enitan D
Coin, Lachlan J M
D'Souza, Giselle
De, Tisham
Emonts, Marieke
Fidler, Katy
Fink, Colin G
van der Flier, Michiel
Georgaki, Ioanna
Kolberg, Laura
Kolnik, Mojca
Kuijpers, Taco
Martinón-Torres, Federico
Mommert-Tripon, Marine
Nichols, Samuel
Paulus, Stephane
Pokorn, Marko
Pollard, Andrew J
Rivero-Calle, Irene
Rudzate, Aleksandra
Schlapbach, Luregn J
Schweintzger, Nina A
Shen, Ching-Fen
Shrestha, Shrijana
Tan, Chantal D
Tsolia, Maria
Usuf, Effua
van der Velden, Fabian
Vermont, Clementien L
Voice, Marie
Yeung, Shunmay
Zavadska, Dace
Zenz, Werner
Wright, Victoria J
Levin, Michael
Herberg, Jethro
Lai, Rachel P J
Meintjes, Graeme
Chiu, Christopher
Barahona, Mauricio
Kaforou, Myrsini
Cunnington, Aubrey J
Additional Credits
Department of Paediatrics
Series
Nature Communications
Publisher
Nature Research
ISSN
2041-1723
Access(Rights)
open.access
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