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Baldi, A.

Publications and source records attributed to Baldi, A..

3 recordsLinked to original sources

Adipocyte differentiation of 3T3-L1 cells under TAF, TDF and INSTIs selective challenge: an in vitro model.

Integrase strand transfer inhibitors (INSTI) are a recently available class of antiretroviral therapy (ART) medications with a good tolerability profile and a high genetic barrier to HIV drug resistance. However, several studies report more significant weight gain among persons receiving INSTI-based ART regimens for initial therapy compared to protease inhibitors (PIs) and nucleoside reverse transcriptase inhibitors (NNRTI)-based regimens. In our experimental setting, we used the in vitro model of adipogenesis of 3T3-L1 cells to investigate the effects of the NRTIs tenofovir disoproxil fumarate (TDF) and tenofovir alafenamide (TAF), alone or in combination with four integrase strand transfer inhibitors: raltegravir (RAL), elvitegravir (ELV), dolutegravir (DTG) and bictegravir (BIC) on adipose differentiation. In addition, protein expression levels of PPAR{gamma} and C/EBP, and the intracellular lipid accumulation by Red Oil staining, were used to monitor adipocyte differentiation. Compared to control, RAL, ELV, DTG, and BIC were all able to increase adipogenesis, being in this, RAL and ELV more efficient. On the other hand, TAF and TDF inhibited adipogenesis. Moreover, when used in combination with the other INSTI molecules, TAF and TDF were able to reduce the adipogenic effects of all four drugs. This ability was more evident when TAF was used in combination with DTG and BIC. All these data suggest that TAF and TDF have an inhibitory effect on adipogenesis in vitro and that they could also effectively counteract the increased adipogenesis caused by the treatment with INSTIs. Finally, to evaluate if the 3T3-L1 cell could express fibroblast-like features following INSTIs treatment, we evaluated the immunohistochemical expression of ER-TR7, a well-known fibroblastic marker. This last assay showed that treatment with INSTIs increased the expression of ER-TR7 compared to control and to cells treated with TAF o TDF. In conclusion, our experimental data support the evidence that in vitro challenge of 3T3-L1 cells with INSTIs is able to increase adipocytic differentiation and to drive a number of these cells toward the expression of fibroblastic features, with a different degree according to the various drugs used, while TAF and TDF have an antagonistic role on this phenomenon.

pharmacology and toxicology↗

Iron homeostasis governs erythroid phenotype in Polycythemia Vera

Polycythemia Vera (PV) is a myeloproliferative neoplasm driven by activating mutations in JAK2 that result in unrestrained erythrocyte production, increasing patients hematocrit and hemoglobin concentration, placing them at risk of life-threatening thrombotic events. Our GWAS of 440 PV cases and 403,351 controls utilising UK Biobank data found that SNPs in HFE known to cause hemochromatosis are highly associated with PV diagnosis, linking iron regulation to PV. Analysis of the FinnGen dataset independently confirmed over-representation of homozygous HFE mutations in PV patients. HFE influences expression of hepcidin, the master regulator of systemic iron homeostasis. Through genetic dissection of PV mouse models, we show that the PV erythroid phenotype is directly linked to hepcidin expression: endogenous hepcidin upregulation alleviates erythroid disease whereas hepcidin ablation worsens it. Further, we demonstrate that in PV, hepcidin is not regulated by expanded erythropoiesis but is likely governed by inflammatory cytokines signalling via GP130 coupled receptors. These findings have important implications for understanding the pathophysiology of PV and offer new therapeutic strategies for this disease.

cancer biology↗

Tapping into non-English-language science for the conservation of global biodiversity

The widely held assumption that any important scientific information would be available in English underlies the underuse of non-English-language science across disciplines. However, non-English-language science is expected to bring unique and valuable scientific information, especially in disciplines where the evidence is patchy, and for emergent issues where synthesising available evidence is an urgent challenge. Yet such contribution of non-English-language science to scientific communities and the application of science is rarely quantified. Here we show that non-English-language studies provide crucial evidence for informing global biodiversity conservation. By screening 419,680 peer-reviewed papers in 16 languages, we identified 1,234 non-English-language studies providing evidence on the effectiveness of biodiversity conservation interventions, compared to 4,412 English-language studies identified with the same criteria. Relevant non-English-language studies are being published at an increasing rate, and can expand the geographical (by 12-25%) and taxonomic (by 5-32%) coverage of English-language evidence, especially in biodiverse regions, albeit often based on less robust study designs. Our results show that synthesising non-English-language studies is key to overcoming the widespread lack of local, context-dependent evidence and facilitating evidence-based conservation globally. We urge wider disciplines to rigorously reassess the untapped potential of non-English-language science in informing decisions to address other global challenges.

scientific communication and education↗