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Cardiomyocyte-Derived TGFB3 Attenuates Cardiac Fibrosis and Preserves Cardiac Function in Heart Failure

GSE311638 Mus musculus Expression profiling by high throughput sequencing 6 samples Submitted 2026/04/15 Platform GPL34290
Summary
Heart failure (HF), the common end-stage of cardiovascular diseases, features cardiac fibrosis. Transforming growth factor-β3 (TGFB3), a key TGFB/SMAD ligand, is upregulated in cardiac disorders, but its cellular source and precise role are debated. This study examined TGFB3 in human and mouse heart failure tissues. Histological and molecular analyses showed its increase mainly from cardiomyocytes, induced by angiotensin II. Circulating TGFB3 in patients positively correlated with plasma proBNP, a heart failure severity marker. A cardiomyocyte-specific TGFB3 knockout mouse model showed its absence worsens cardiac dysfunction and fibrosis under pressure overload. Mechanically, TGFB3 competes with TGFB1 for receptors, reducing Smad3 phosphorylation and profibrotic gene activation. Loss of TGFB3 in cardiomyocytes increased expression of profibrotic mediators such as CTGF and SERPINE1, ultimately accelerating fibrotic remodeling during HF progression. These findings identify cardiomyocyte-derived TGFB3 as a crucial endogenous modulator that protects against pathological cardiac fibrosis and highlight its therapeutic potential in HF.
Published in
Cardiomyocyte-derived TGFB3 attenuates cardiac fibrosis and preserves cardiac function in heart failure
Xuan J, Zhou J, Huang Y et al. · Scientific reports 2026 · PMID 41772008 · doi:10.1038/s41598-026-42367-5
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Direct links to NCBI, no account and no request form: the whole study as GSE311638_RAW.tar, processed values as the series matrix, the supplementary file directory, and per-sample supplementary files for any of the 6 samples. Raw sequencing reads are also available from ENA.

Also filed as BioProject PRJNA1370055 and SRA study SRP649267. Searching any of these in the dataset finder brings you back here.

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