PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 11, 2026Frontiers in Cardiovascular Medicine0 citationsOpen Access

Myocardial fibrosis and tissue alterations predict cardiovascular outcomes in chronic kidney disease—a prospective virtual twin study design using large-scale population database

GVGeorgios VavilisYKYeshe M. KwayZRZahra Raisi-Estabragh

Key Result

In patients with chronic kidney disease, each 1-SD increase in native myocardial T1 was associated with a significantly higher risk of cardiovascular death (HR 3.86).

Study Design

Type

Cohort (n=386)

Multicenter

Yes

Structured PICO

Does elevated native myocardial T1 predict mortality and incident cardiovascular outcomes in patients with chronic kidney disease?

P
Population
193 matched pairs (n=386) of chronic kidney disease (CKD) cases and phenotypically matched non-CKD controls from the UK Biobank imaging cohort, median age 68 years, 57.5% women.
I
Intervention
Native myocardial T1 mapping by cardiovascular magnetic resonance (CMR)
C
Comparator
Phenotypically matched non-CKD controls
O
Outcome
Mortality and incident cardiovascular outcomes (cardiovascular death, heart failure, atrial fibrillation, all-cause mortality, myocardial infarction)hard clinical

Elevated native myocardial T1 by CMR is independently associated with increased risks of cardiovascular death, heart failure, and atrial fibrillation in patients with chronic kidney disease.

Main Result

Effect estimate: HR 3.86 (95% CI 1.62, 9.18)

p-value: p=0.002

Limitations

  • Reliance on diagnostic codes for CKD definition due to lack of repeat lab values
  • Small number of events for some endpoints
  • Observational design cannot prove causality

Abstract

Background Myocardial fibrosis is a key feature of chronic kidney disease (CKD) and may contribute to its disproportionate cardiovascular (CV) burden. Cardiovascular magnetic resonance (CMR) T1-mapping quantifies diffuse fibrosis non-invasively, but its prognostic value in CKD remains uncertain Aims To investigate associations between native myocardial T1, mortality and incident CV outcomes, in CKD using a virtual twin-matching framework within the UK Biobank imaging cohort. Methods We conducted a 1:1 virtual twin-matched case-cohort study of CKD cases and phenotypically matched non-CKD controls based on demographics, comorbidities, socioeconomic status, and cardiovascular risk factors. Paired analyses compared myocardial T1 between groups, and stratified Cox models estimated the effect of a 1-SD T1 increase on incident outcomes over a median follow-up of 4.9 years. Results Among 193 matched pairs (median age 68 years; 57.5% women), CKD participants had trend-level higher myocardial T1 values than controls ( p = 0.063), with greater differences among those experiencing adverse outcomes. Over follow-up, CKD participants had higher cumulative incidences of all-cause mortality (11.3 vs. 3.8 events/1,000 person-years; p = 0.049) and heart failure (12.7 vs. 3.9 events/1,000 person-years; p = 0.021). In CKD, each 1-SD increase in T1 was associated with higher risks of cardiovascular death (HR: 3.86; 95% CI: 1.62, 9.18), heart failure (HR: 2.00; 95% CI: 1.27, 3.15), and atrial fibrillation (HR: 2.04; 95% CI: 1.01, 4.12), but not all-cause mortality or myocardial infarction. No significant associations were observed in matched non-CKD controls. Conclusions Elevated native myocardial T1 was independently associated with CV death, heart failure, and atrial fibrillation in CKD. Virtual twin-matching framework improved comparability and internal validity in matched pairs supporting the precision-matched cohort designs for mechanistic inference and risk stratification in multimorbid populations.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Vavilis et al. (2026) conducted a cohort in Chronic kidney disease (n=386). Elevated native myocardial T1 vs. Lower native myocardial T1 was evaluated on Cardiovascular mortality (HR 3.86, 95% CI 1.62, 9.18, p=0.002). In patients with chronic kidney disease, each 1-SD increase in native myocardial T1 was associated with a significantly higher risk of cardiovascular death (HR 3.86).

synapsesocial.com/papers/6a1a163e407564563bf6eb85https://doi.org/10.3389/fcvm.2026.1726445
Ask AI
Helpful
Bookmark
Share
View Full Paper