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Gene expression signature predicts rate of type 1 diabetes progression

  • INNODIA Consortium

Forskningsoutput: TidskriftsbidragArtikelVetenskapligPeer review

17 Citeringar (Scopus)
102 Nedladdningar (Pure)

Sammanfattning

Background: Type 1 diabetes is a complex heterogenous autoimmune disease without therapeutic interventions available to prevent or reverse the disease. This study aimed to identify transcriptional changes associated with the disease progression in patients with recent-onset type 1 diabetes. Methods: Whole-blood samples were collected as part of the INNODIA study at baseline and 12 months after diagnosis of type 1 diabetes. We used linear mixed-effects modelling on RNA-seq data to identify genes associated with age, sex, or disease progression. Cell-type proportions were estimated from the RNA-seq data using computational deconvolution. Associations to clinical variables were estimated using Pearson's or point-biserial correlation for continuous and dichotomous variables, respectively, using only complete pairs of observations. Findings: We found that genes and pathways related to innate immunity were downregulated during the first year after diagnosis. Significant associations of the gene expression changes were found with ZnT8A autoantibody positivity. Rate of change in the expression of 16 genes between baseline and 12 months was found to predict the decline in C-peptide at 24 months. Interestingly and consistent with earlier reports, increased B cell levels and decreased neutrophil levels were associated with the rapid progression. Interpretation: There is considerable individual variation in the rate of progression from appearance of type 1 diabetes-specific autoantibodies to clinical disease. Patient stratification and prediction of disease progression can help in developing more personalised therapeutic strategies for different disease endotypes. Funding: A full list of funding bodies can be found under Acknowledgments.

OriginalspråkEngelska
Artikelnummer104625
Antal sidor12
TidskriftEBioMedicine
Volym92
DOI
StatusPublicerad - juni 2023
MoE-publikationstypA1 Tidskriftsartikel-refererad

Finansiering

Funding: R.L. received funding from the Academy of Finland (grants 292335 , 294337 , 319280 , 31444 , 319280 , 329277 , 331790 ), Business Finland and by grants from the JDRF, the Sigrid Jusélius Foundation (SJF), Jane and Aatos Erkko Foundation , Finnish Diabetes Foundation and the Finnish Cancer Foundation . R.L. and M.K. were supported by the Academy of Finland , AoF, Centre of Excellence in Molecular Systems Immunology and Physiology Research (2012–2017) grant 250114 and grant 292482. I.S. was supported by Turku Doctoral Programme of Molecular Medicine (TuDMM) and Finnish Diabetes Research Foundation . Prof. Elo reports grants from the European Research Council ERC ( 677943 ), Academy of Finland ( 310561 , 314443 , 329278 , 335434 , 335611 and 341342 ), and Sigrid Jusélius Foundation during the conduct of the study. Our research is also supported by University of Turku Graduate School (UTUGS), Biocenter Finland , ELIXIR Finland, and by InFLAMES Flagship Programme of the Academy of Finland (decision number: 337530). This project has received funding from the Innovative Medicines Initiative 2 Joint Undertaking under grant agreement No 115797 (INNODIA) and No 945268 (INNODIA HARVEST). This Joint Undertaking receives support from the Union's Horizon 2020 research and innovation programme , ‘EFPIA’, ‘JDRF’ and ‘The Leona M. and Harry B. Helmsley Charitable Trust’.

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