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Biology subjects

Puertas-Miranda, D.

Publications and source records attributed to Puertas-Miranda, D..

2 recordsLinked to original sources

Urinary extracellular vesicles reveal a sex-specific miRNome profile in alcohol use disorder patients

miRNA-based transcriptomic analysis of extracellular vesicles (EVs) provide a promising strategy for identifying non-invasive biomarkers and understanding complex pathological mechanisms. Recently, however, urinary extracellular vesicles (uEVs) have emerged as a valuable window into molecular alterations. Despite the high morbidity and mortality associated with alcohol use disorder (AUD), the molecular mechanisms underlying its sex-specific differences remain poorly understood. To address this, we characterize for the first time the uEV miRNome in AUD, revealing its sexually dimorphic profile. We employed uEVs from actively drinking AUD patients of both sexes who did not have advanced liver disease, alongside matched controls. Deep sequencing revealed 14 differentially expressed miRNAs in females (e.g., hsa-miR-197-3p, hsa-miR-19b-3p, hsa-miR-505-3p, hsa-miR-625-5p, and hsa-miR-27a-5p) and 6 in males (e.g., hsa-miR-1290, hsa-miR-1246, hsa-miR-450a-5p, and miR-590-5p). Notably, whereas hsa-miR-4787-5p was consistently overexpressed in uEVs from both sexes, it was absent in plasma-derived EVs, highlighting the specificity of the urinary compartment. Remarkably, the miRNA signatures we uncovered reflect the multiorgan impact of AUD. For instance, hsa-miR-1290 and hsa-miR-197-3p point to alcohol-related liver injury and systemic inflammation, whereas hsa-miR-19b-3p and hsa-miR-1246 signal neuroinflammation and neuronal stress. A subset--including hsa-miR-1290, hsa-miR-1246, and hsa-miR-27a-5p--has been implicated in cancer contexts. Collectively, these findings support the uEV miRNome as a promising sex-informed molecular signature of AUD with biomarker and mechanistic relevance.

cell biology↗

Deciphering lipidomics landscape of urine extracellular vesicles in alcohol use disorder patients

Urine extracellular vesicles (EVs) have garnered increasing interest in recent years as, in combination with their lipid content, they represent a potential source of non-invasive biomarkers. Alcohol use disorder (AUD) is one of the most common psychiatric disorders and a significant contributor to morbimortality. Thus, there is growing interest in assessing previous alcohol consumption and evaluating the severity of liver or brain injury, particularly via non-invasive methods. Here, we employed a novel approach based on urine EVs and a highly sensitive lipidomics strategy to characterize lipid species in male AUD patients, as well as to evaluate the differential functional roles and enzymatic activity networks of urine EV lipids. Our results show, for the first time, that the lipidomic profiling of urine EVs in AUD males is characterized by an enrichment of fatty acyls and glycerophospholipids, with FA 22:0 emerging as a potential biomarker. Notably, increased acyl chain saturation and elevated long-chain fatty acids (22-24 carbons) suggest links to AUD-associated inflammation, cancer, and metabolic dysfunction. These findings support an improved understanding of the urine EV lipidome, which could contribute to the identification of novel lipid targets and the discovery of non-invasive biomarkers in AUD.

pathology↗