Carnosine-Related Metabolism in Rat Cardiomyocytes and Human Heart Tissue.
JV, C., L, d.S.G., S, G., BS, V., L, J., MHG, d.M., H, R., MD, T., CL, D., & GG, A. (2026). Carnosine-Related Metabolism in Rat Cardiomyocytes and Human Heart Tissue.. FASEB journal : official publication of the Federation of American Societies for Experimental Biolog. https://doi.org/10.1096/fj.202504676R
JV C, L dSG, S G, BS V, L J, MHG dM, et al. Carnosine-Related Metabolism in Rat Cardiomyocytes and Human Heart Tissue.. FASEB journal : official publication of the Federation of American Societies for Experimental Biolog. 2026; doi: 10.1096/fj.202504676R
JV C, L dSG, S G, et al. Carnosine-Related Metabolism in Rat Cardiomyocytes and Human Heart Tissue.[J]. FASEB journal : official publication of the Federation of American Societies for Experimental Biolog. 2026. DOI: 10.1096/fj.202504676R.
@article{jv2026,
author = {Creighton JV and de Souza Gonçalves L and Gil S and Vargas BS and Jensen L and de Medeiros MHG and Roschel H and Turner MD and Doig CL and Artioli GG},
title = {Carnosine-Related Metabolism in Rat Cardiomyocytes and Human Heart Tissue.},
journal = {FASEB journal : official publication of the Federation of American Societies for Experimental Biolog},
year = {2026},
doi = {10.1096/fj.202504676R},
note = {PMID: 42455463},
}
TY - JOUR AU - Creighton JV AU - de Souza Gonçalves L AU - Gil S AU - Vargas BS AU - Jensen L AU - de Medeiros MHG AU - Roschel H AU - Turner MD AU - Doig CL AU - Artioli GG TI - Carnosine-Related Metabolism in Rat Cardiomyocytes and Human Heart Tissue. T2 - FASEB journal : official publication of the Federation of American Societies for Experimental Biolog PY - 2026 DO - 10.1096/fj.202504676R AN - PMID:42455463 ER -
The therapeutic potential of carnosine in healthy and diseased heart models is promising; however, the understanding of carnosine and β-alanine metabolism in cardiac tissue is lacking. Exploring how these compounds are metabolized in cardiac tissue is critical to determine their viability for in vivo supplementation studies. Two independent studies were conducted. Study 1 investigated the uptake of exogenous carnosine and β-alanine in cardiomyocytes and the influence of this on the expression of carnosine- and β-alanine-related enzyme and transporter genes. Study 2 investigated whether human cardiac tissue expresses carnosine and β-alanine metabolism proteins and the endogenous concentrations of carnosine and β-alanine. In Study 1, differentiated H9c2 cells were treated with 0.1-10.0 mM of carnosine or β-alanine for 4, 24 and 72 h. Gene expression was measured at 4 h using real-time quantitative polymerase chain reaction, and amino acid and histidine-containing dipeptides (HCD) concentrations were analyzed at all-time points using an amino acid analyzer. In Study 2, post-mortem human heart ventricle samples (n = 16) were analyzed for carnosine and β-alanine using HPLC-ESI+-MS/MS, and metabolism-related proteins using western blots. H9c2 cardiomyocytes expressed genes related to carnosine and β-alanine metabolism, except for the β-alanine transaminase, AGXT2. Carnosine supplementation did not affect gene expression, whereas β-alanine decreased transporter TAUT and PHT1 expression. Both exogenously supplied carnosine and β-alanine were taken up and accumulated in cardiomyocytes. Carnosine- and β-alanine-related enzymes and transporters are present in human heart ventricles. In conclusion, cardiomyocytes and the human heart express enzymes and transporters required to uptake β-alanine and synthesize carnosine.