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Somatic evolution following cancer treatment in normal tissue

7Citations signalées — pas une note de qualité
54Institutions déclarées
5Pays d’affiliation déclarés

Résumé fourni par la source

(more than 30,000× coverage) to analyse 168 cancer-free samples representing 16 organs from 22 patients with metastatic cancer enroled in the PEACE research autopsy study. In every sample, we identified somatic mutations (range 305-2,854 mutations) at low variant allele frequencies (median 0.0000323). We extracted 16 distinct single-base substitution mutational signatures, reflecting processes that have moulded the genomes of normal cells. We identified alcohol-induced mutation acquisition in liver, smoking-induced mutagenesis in lung and cardiac tissue, and multiple treatment-induced processes, which correlated with therapy type and duration. Exogenous sources, including treatment, underpinned, on average, more than 40% of mutations in liver but less than 10% of mutations in brain samples. Finally, we observed tissue-specific selection, with positive selection in tissues such as lung (PTEN and PIK3CA), liver (NF2L2) and spleen (BRAF and NOTCH2), and limited selection in others, such as brain and cardiac tissue. More than 25% of driver mutations in normal tissue exposed to systemic anti-cancer therapy, including in TP53, could be attributed to treatment. Immunotherapy, although not associated with increased mutagenesis, was linked to driver mutations in PPM1D and TP53, illustrating how non-mutagenic treatment can sculpt somatic evolution. Our study reveals the rich tapestry of mutational processes and driver mutations in normal tissue, and the profound effect of lifetime exposures, including cancer treatment, on somatic evolution.

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Contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Somatic evolution following cancer treatment in normal tissue
Date Crossref
10/12/2025
Éditeur
Springer Science and Business Media LLC
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

The Francis Crick InstituteCancer Research UKLondon CancerCRUK Lung Cancer Centre of ExcellenceUniversity College LondonGenomics (United Kingdom)Royal London HospitalUniversity of BirminghamUniversity of CambridgeCambridge University Hospitals NHS Foundation TrustNational Institute for Health and Care ResearchCancer Research UK Cambridge CenterAddenbrooke's HospitalNHS Greater Glasgow and ClydeQueen Elizabeth University HospitalUniversity of GlasgowUniversity of LeicesterNIHR Leicester Biomedical Research CentreUniversity Hospitals of Leicester NHS TrustUniversity of ManchesterCancer Research UK Manchester InstituteThe Christie NHS Foundation TrustNIHR Manchester Biomedical Research CentreInstitute of Cancer ResearchRoyal Marsden HospitalUniversity Hospital Southampton NHS Foundation TrustNIHR Southampton Biomedical Research CentreUniversity of SouthamptonUniversity College HospitalUniversity College London Hospitals NHS Foundation TrustThe University of Texas MD Anderson Cancer CenterUniversity of British ColumbiaSpinal Cord Injury BCImmune Regulation (United Kingdom)National Hospital for Neurology and NeurosurgeryMount Vernon Cancer CentreWhittington HospitalPeter MacCallum Cancer CentreToranomon HospitalImperial College LondonSt Bartholomew's HospitalQueen Mary University of LondonBarts Health NHS TrustSheffield Teaching Hospitals NHS Foundation TrustGuy's and St Thomas' NHS Foundation TrustKing's College LondonWellcome Sanger InstituteUniversity of OxfordCRUK/MRC Oxford Institute for Radiation OncologyBeatson West of Scotland Cancer CentreCancer Research UK Manchester CentreUniversity Hospitals Birmingham NHS Foundation TrustThe Patients AssociationSt Charles Hospital

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Sujets associés

Cancer Genomics and DiagnosticsEvolution and Genetic DynamicsMathematical Biology Tumor Growth

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