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Biology subjects

Piella, S. N.

Publications and source records attributed to Piella, S. N..

2 recordsLinked to original sources

LEF1-AS1 deregulation in the peripheral blood of patients with persistent post-COVID symptoms

Long COVID denotes the persistence of symptoms after acute SARS-CoV-2 infection lasting for at least two months without another identifiable cause. Affecting an estimated 15% of COVID-19 patients, long COVID manifests in a wide range of symptoms. Despite extensive research on its one-year effects, limited data exist beyond 12 months. Due to the different manifestations of long COVID, its diagnosis can be challenging. Identifying potential mechanistic contributors and biomarkers would be highly valuable. Recent studies have highlighted the potential of noncoding RNAs (ncRNAs) as biomarkers for disease stratification in COVID-19. Specifically, we have recently identified miR-144-3p and a subset of lncRNAs as candidates for assessing disease severity and outcomes in COVID-19. This study extends such investigations to 98 long COVID patients recruited 18 months after hospitalization, exploring the relationship between circulating ncRNA expression and persistent symptoms. While miR-144-3p, HCG18, and lncCEACAM21 expression did not differ between symptomatic and asymptomatic patients, LEF1-AS1 was downregulated in peripheral blood mononuclear cells (PBMCs) of symptomatic patients. Of note, multiple LEF1-AS1 isoforms and LEF1 sense transcript levels were reduced and negatively correlated with relevant clinical markers. While further studies are needed, our discoveries offer new perspectives for the diagnosis and management of persistent long COVID.

molecular biology↗

Interleukin 11-induced microRNAs as functional mediators and circulating biomarkers of cardiac fibrosis

BackgroundCardiac fibrosis can be triggered by several pathologies, including ischemic heart disease and aortic stenosis (AS). Cardiac fibrosis is brought about by uncontrolled extracellular matrix (ECM) deposition by myofibroblasts. Interleukin-11 (IL-11) has been firmly demonstrated to be a major trigger of multi-organ fibrosis. However, the molecular mechanisms underpinning IL-11-induced fibrosis requires further characterisation. Recent studies indicate that microRNA (miRNA) dysregulation contributes to the pathogenesis of cardiac fibrosis and can be targeted therapeutically. In this study, we explored the hypothesis that miRNAs act as downstream effectors of IL-11-induced cardiac fibrosis. Moreover, we investigated the translational potential of IL-11-regulated miRNAs as circulating biomarkers of cardiac fibrosis in AS patients. Methods and ResultsUsing computational approaches, we identified miRNA-497-5p and miRNA-27b-5p as potential new downstream profibrotic effectors of IL-11 in fibroblasts. We next confirmed that both miRNAs increased in healthy rat CF stimulated with IL-11 and in CF derived from post-infarction failing hearts. At the functional level, miRNA-497-5p and miRNA-27b-5p inhibition indirectly reduced the mRNA expression of collagen 1 (Col1a1). Conversely, transfection of CFs with mimics for each of the two miRNAs promoted fibroblast-to-myofibroblast transition and increased Col1a1 levels. We provided evidences that miRNA-27b-5p and miRNA-497-5p converge to promote hypoxia-inducible factor 1 signalling, by targeting its regulator EGLN (PHD) family members. The clinical relevance of our findings was confirmed using left ventricle (LV) specimens obtained from surgical patients with AS. The miRNA-27b-5p and miRNA-497-5p measured in the LV, peripheral plasma and plasma extracellular vesicles correlated with the severity of LV fibrosis, indicating these miRNAs potential as new circulating biomarkers of cardiac fibrosis. ConclusionsIn this study, we have newly identified the potential value of miRNA-27b-5p and miRNA-497-5p as actionable biomarkers of the profibrotic response to IL-11 in the heart. Future studies should validate the translational potential of the miRNAs as new clinical biomarkers and therapeutic targets.

molecular biology↗