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Trimethylamine-N-Oxide (TMAO)-Induced Impairment of Cardiomyocyte Function and the Protective Role of Urolithin B-Glucuronide
Monia Savi, Leonardo Bocchi, Letizia Bresciani, Angela Falco, Federico Quaini, Pedro Mena, Furio Brighenti, Alan Crozier, Donatella Stilli, Daniele Del Rio
Molecules · 2018 · ▲ 113 citations
Abstract
-oxide (TMAO). Possible direct effects of TMAO on myocardial tissue, independent of vascular damage, have been only partially explored so far. In the present study, we assessed the detrimental direct effects of TMAO on cardiomyocyte contractility and intracellular calcium dynamics, and the ability of urolithin B-glucuronide (Uro B-gluc) in counteracting TMAO-induced cell damage. Cell mechanics and calcium transients were measured, and ultrastructural analysis was performed in ventricular cardiomyocytes isolated from the heart of normal adult rats. Cells were either untreated, exposed to TMAO, or to TMAO and Uro B-gluc. TMAO exposure worsened cardiomyocyte mechanics and intracellular calcium handling, as documented by the decrease in the fraction of shortening (FS) and the maximal rate of shortening and re-lengthening, associated with reduced efficiency in the intracellular calcium removal. Ultrastructurally, TMAO-treated cardiomyocytes also exhibited glycogen accumulation, a higher number of mitochondria and lipofuscin-like pigment deposition, suggesting an altered cellular energetic metabolism and a higher rate of protein oxidative damage, respectively. Uro B-gluc led to a complete recovery of cellular contractility and calcium dynamics, and morphologically to a reduced glycogen accumulation. We demonstrated for the first time a direct negative role of TMAO on cardiomyocyte functional properties and the ability of Uro B-gluc in counteracting these detrimental effects.
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- 10.3390/molecules23030549
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- 2026-09-21 MST
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APA
Savi, M., Bocchi, L., Bresciani, L., Falco, A., Quaini, F., Mena, P., Brighenti, F., Crozier, A., Stilli, D., & Rio, D.D. (2018). Trimethylamine-N-Oxide (TMAO)-Induced Impairment of Cardiomyocyte Function and the Protective Role of Urolithin B-Glucuronide. <em>Molecules</em>. https://doi.org/10.3390/molecules23030549
Vancouver
Savi M, Bocchi L, Bresciani L, Falco A, Quaini F, Mena P, et al. Trimethylamine-N-Oxide (TMAO)-Induced Impairment of Cardiomyocyte Function and the Protective Role of Urolithin B-Glucuronide. Molecules. 2018. doi:10.3390/molecules23030549.
BibTeX
@article{monia2018Trimet,
title = {Trimethylamine-N-Oxide (TMAO)-Induced Impairment of Cardiomyocyte Function and the Protective Role of Urolithin B-Glucuronide},
author = {Monia Savi and Leonardo Bocchi and Letizia Bresciani and Angela Falco and Federico Quaini and Pedro Mena and Furio Brighenti and Alan Crozier and Donatella Stilli and Daniele Del Rio},
journal = {Molecules},
year = {2018},
doi = {10.3390/molecules23030549},
}
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