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Sulaiman, S.

Publications and source records attributed to Sulaiman, S..

2 recordsLinked to original sources

Efficacy of SGLT2 Inhibitors in Pulmonary Arterial Hypertension: A Systematic Review and Meta-Analysis of Preclinical Studies

BackgroundPulmonary arterial hypertension (PAH) is a progressive disease marked by vascular remodeling, elevated pulmonary pressures, and right ventricular failure. Current therapies are mainly vasodilatory, underscoring the need for treatments targeting additional pathways. Sodium-glucose cotransporter-2 (SGLT2) inhibitors, initially used for diabetes, have demonstrated cardiovascular benefits. AimsThis systematic review and meta-analysis evaluated the effects of SGLT2 inhibitors in animal models of PAH, focusing on pulmonary hemodynamics and right ventricular function. MethodsPubMed, Embase, Web of Science, and Scopus were searched for preclinical studies reporting mean pulmonary artery pressure (mPAP), right ventricular systolic pressure (RVSP), right ventricular hypertrophy index (RV/LV+S), tricuspid annular plane systolic excursion (TAPSE), or pulmonary artery acceleration time (PAAT). Random-effects meta-analyses were performed using R. ResultsNine studies were included. SGLT2 inhibitors were significantly associated with lower mPAP (WMD -9.79 mmHg), RVSP (WMD -14.81 mmHg), and RV/LV+S (WMD -0.10). They were also associated with higher indices of right ventricular function, including TAPSE (WMD 0.53 mm) and PAAT (WMD 6.39 ms). ConclusionIn preclinical models of PAH, SGLT2 inhibitor treatment was associated with favorable hemodynamic and structural parameters. Further research is needed to clarify their translational potential and long-term safety.

pharmacology and toxicology↗

Cis-regulatory analysis of Onecut1 expression in fate-restricted retinal progenitor cells

BackgroundThe vertebrate retina consists of six major classes of neuronal cells. During development, these cells are generated from a pool of multipotent retinal progenitor cells (RPCs) that express the gene Vsx2. Fate-restricted RPCs have recently been identified, with limited mitotic potential and cell fate possibilities compared to multipotent RPCs. One population of fate-restricted RPCs, marked by activity of the regulatory element ThrbCRM1, gives rise to both cone photoreceptors and horizontal cells. These cells do not express Vsx2, but co-express the transcription factors (TFs) Onecut1 and Otx2, which bind to ThrbCRM1. The components of the gene regulatory networks that control the transition from multipotent to fate-restricted gene expression are not known. This work aims to identify and evaluate cis-regulatory elements proximal to Onecut1 to identify the gene regulatory networks involved in RPC fate-restriction. MethodWe identified regulatory elements through ATAC-seq and conservation, followed by reporter assays to screen for activity based on temporal and spatial criteria. The regulatory elements of interest were subject to deletion and mutation analysis to identify functional sequences and evaluated by quantitative flow cytometry assays. Finally, we combined the enhancer::reporter assays with candidate TF overexpression to evaluate the relationship between the TFs, the enhancers, and early vertebrate retinal development. Statistical tests included ANOVA, Kruskal-Wallis, or unpaired t-tests. ResultsTwo regulatory elements, ECR9 and ECR65, were identified to be active in ThrbCRM1(+) restricted RPCs. Candidate bHLH binding sites were identified as critical sequences in both elements. Overexpression of candidate bHLH TFs revealed specific enhancer-bHLH interactions. Nhlh1 overexpression expanded ECR65 activity into the Vsx2(+) RPC population, and overexpression of NeuroD1/NeuroG2/NeuroD4 had a similar effect on ECR9. Furthermore, bHLHs that were able to activate ectopic ECR9 reporter were able to induce endogenous Otx2 expression. ConclusionsThis work reports a large-scale screen to identify spatiotemporally specific regulatory elements near the Onecut1 locus. These elements were used to identify distinct populations in the developing retina. In addition, fate-restricted regulatory elements responded differentially to bHLH factors, and suggest a role for retinal bHLHs upstream of the Otx2 and Onecut1 genes during the formation of restricted RPCs from multipotent RPCs.

developmental biology↗