Monocrotaline exposure in rats induced significant early metabolic changes, including activated glycolysis and disrupted carnitine homeostasis, 14 days prior to the development of pulmonary hypertension.
Does monocrotaline exposure induce early metabolic changes preceding the development of pulmonary hypertension in a rat model?
Metabolic profiling in a rat model of pulmonary hypertension reveals significant shifts in glycolysis, inflammation, and carnitine homeostasis that precede structural right ventricular changes, suggesting potential early biomarkers for the disease.
There is increasing interest in the potential for metabolic profiling to evaluate the progression of pulmonary hypertension (PH). However, a detailed analysis of the metabolic changes in lungs at the early stage of PH, characterized by increased pulmonary artery pressure but prior to the development of right ventricle hypertrophy and failure, is lacking in a preclinical animal model of PH. Thus, we undertook a study using rats 14 days after exposure to monocrotaline (MCT), to determine whether we could identify early stage metabolic changes prior to the manifestation of developed PH. We observed changes in multiple pathways associated with the development of PH, including activated glycolysis, increased markers of proliferation, disruptions in carnitine homeostasis, increased inflammatory and fibrosis biomarkers, and a reduction in glutathione biosynthesis. Further, our global metabolic profile data compare favorably with prior work carried out in humans with PH. We conclude that despite the MCT-model not recapitulating all the structural changes associated with humans with advanced PH, including endothelial cell proliferation and the formation of plexiform lesions, it is very similar at a metabolic level. Thus, we suggest that despite its limitations it can still serve as a useful preclinical model for the study of PH.
Rafikova et al. (Thu,) conducted a other in Pulmonary Hypertension (n=44). Monocrotaline (MCT) vs. Vehicle was evaluated on Metabolic profile changes. Monocrotaline exposure in rats induced significant early metabolic changes, including activated glycolysis and disrupted carnitine homeostasis, 14 days prior to the development of pulmonary hypertension.
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