: Neutral lipid storage disease type M (NLSD-M) is an ultra-rare, autosomal recessive disorder that causes severe skeletal and cardiac muscle damage and lipid accumulation in all body tissues. In this hereditary pathology, the defective action of the adipose triglyceride lipase (ATGL) enzyme induces the enlargement of cytoplasmic lipid droplets and reduction in the detachment of mono- (MG) and diglycerides (DG). Although the pathogenesis of muscle fiber necrosis is unknown, some studies have shown alterations in cellular energy production, probably because MG and DG, the substrates of Krebs cycle, are less available. No tests have been tried with medium-chain fatty acid molecules to evaluate the anaplerotic effect in NLSD cells. In this study, we evaluated the in vitro effect of triheptanoin (Dojolvi®), a highly purified chemical triglyceride with seven carbon atoms, in fibroblasts obtained from five NLSD-M patients. Glycolytic and mitochondrial functions were determined by Seahorse XF Agylent Technology, and cellular viability and triglyceride content were measured through colorimetric assays. After the addition of triheptanoin, we observed an increase in glycolysis and mitochondrial respiration in all patients compared with healthy controls. These preliminary results show that triheptanoin is able to induce an anaplerotic effect in NLSD-M fibroblasts, paving the way towards new therapeutic strategies.

Effects of triheptanoin on mitochondrial respiration and glycolysis in cultured fibroblasts from neutral lipid storage disease type M (NLSD-M) patients / Noguera, Nelida Inés; Tavian, Daniela; Angelini, Corrado; Cortese, Francesca; Filosto, Massimiliano; Garibaldi, Matteo; Missaglia, Sara; Smigliani, Ariela; Zaza, Alessandra; Pennisi, Elena Maria. - In: BIOMOLECULES. - ISSN 2218-273X. - 13:3(2023), pp. 1-12. [10.3390/biom13030452]

Effects of triheptanoin on mitochondrial respiration and glycolysis in cultured fibroblasts from neutral lipid storage disease type M (NLSD-M) patients

Garibaldi, Matteo;Zaza, Alessandra;
2023

Abstract

: Neutral lipid storage disease type M (NLSD-M) is an ultra-rare, autosomal recessive disorder that causes severe skeletal and cardiac muscle damage and lipid accumulation in all body tissues. In this hereditary pathology, the defective action of the adipose triglyceride lipase (ATGL) enzyme induces the enlargement of cytoplasmic lipid droplets and reduction in the detachment of mono- (MG) and diglycerides (DG). Although the pathogenesis of muscle fiber necrosis is unknown, some studies have shown alterations in cellular energy production, probably because MG and DG, the substrates of Krebs cycle, are less available. No tests have been tried with medium-chain fatty acid molecules to evaluate the anaplerotic effect in NLSD cells. In this study, we evaluated the in vitro effect of triheptanoin (Dojolvi®), a highly purified chemical triglyceride with seven carbon atoms, in fibroblasts obtained from five NLSD-M patients. Glycolytic and mitochondrial functions were determined by Seahorse XF Agylent Technology, and cellular viability and triglyceride content were measured through colorimetric assays. After the addition of triheptanoin, we observed an increase in glycolysis and mitochondrial respiration in all patients compared with healthy controls. These preliminary results show that triheptanoin is able to induce an anaplerotic effect in NLSD-M fibroblasts, paving the way towards new therapeutic strategies.
2023
ATGL; NLSD; anaplerosis; cultured fibroblast; glycolysis; lipid storage myopathy; mitochondrial respiration; neutral lipid storage disease type M; triheptanoin
01 Pubblicazione su rivista::01a Articolo in rivista
Effects of triheptanoin on mitochondrial respiration and glycolysis in cultured fibroblasts from neutral lipid storage disease type M (NLSD-M) patients / Noguera, Nelida Inés; Tavian, Daniela; Angelini, Corrado; Cortese, Francesca; Filosto, Massimiliano; Garibaldi, Matteo; Missaglia, Sara; Smigliani, Ariela; Zaza, Alessandra; Pennisi, Elena Maria. - In: BIOMOLECULES. - ISSN 2218-273X. - 13:3(2023), pp. 1-12. [10.3390/biom13030452]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1676720
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