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Lupu, C.

Publications and source records attributed to Lupu, C..

2 recordsLinked to original sources

Multimodal Analysis of Sepsis-induced Cardiomyopathy in a Baboon Model

Sepsis-induced cardiomyopathy (SIC) significantly contributes to sepsis-related morbidity and mortality, necessitating a deeper understanding of its mechanisms. This study used a post-hoc, multimodal approach--including single-nucleus RNA sequencing (snRNA-seq), echocardiography, mitochondrial function, and histopathology--to characterize SIC in a non-human primate model. Archived data and samples from six baboons challenged with 37.5 mg/kg of purified peptidoglycan were analyzed. Vital signs and echocardiography were monitored for 8 hours; the endpoint was survival at 168 hours or euthanasia for irreversible organ failure. Septic shock--defined by hypotension, tachycardia, and elevated lactate--was associated with poor outcomes. Echocardiography showed reduced intravascular volume, contraction, stroke volume, and cardiac index. SnRNA-seq revealed distinct transcriptomic profiles: non-survivors exhibited inflammation, mitochondrial dysfunction, and maladaptive remodeling; survivors showed activation of pathways supporting contraction, metabolism, and repair. Cell-type analysis highlighted metabolic dysfunction in cardiomyocytes, TNF/NF-{kappa}B-driven inflammation in endothelial cells, and stress responses in fibroblasts and pericytes. Mitochondrial analysis showed impaired electron transport and disrupted metabolism. Histopathology revealed inflammation and myofibrillar damage, more severe in non-survivors. This model recapitulates key SIC features and supports mechanistic and therapeutic discovery.

pathology↗

Tissue-specific sex difference in the metabolism of fatty acid esters of hydroxy fatty acids

Fatty acid esters of hydroxy fatty acids (FAHFAs) are endogenous bioactive lipids known for their anti-inflammatory and anti-diabetic properties. Despite their therapeutic potential, little is known about the sex-specific variations in FAHFA metabolism. This study investigated the role of Androgen Dependent TFPI Regulating Protein (ADTRP), a FAHFA hydrolase. Additionally, tissue-specific differences in FAHFA levels, focusing on the perigonadal white adipose tissue (pgWAT), subcutaneous white adipose tissue (scWAT), brown adipose tissue (BAT), plasma, and liver, were evaluated using metabolomics and lipidomics. We found that female mice exhibited higher FAHFA levels in pgWAT, scWAT, and BAT compared to males. FAHFA levels were inversely related to Adtrp mRNA, which showed significantly lower expression in females compared with males in pgWAT and scWAT. However, no significant differences between the sexes were observed in plasma and liver FAHFA levels. Adtrp deletion had minimal impact on both sexes metabolome and lipidome of pgWAT. However, we discovered higher endogenous levels of triacylglycerol estolides containing FAHFAs, a FAHFA metabolic reservoir, in the pgWAT of female mice. These findings suggest that sex-dependent differences in FAHFA levels occur primarily in specific WAT depots and may modulate local insulin sensitivity in adipocytes. However, further investigations are warranted to fully comprehend the underlying mechanisms and implications of sex effects on FAHFA metabolism in humans.

biochemistry↗