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Rodriguez, A. B.

Publications and source records attributed to Rodriguez, A. B..

2 recordsLinked to original sources

Etrinabdione (VCE-004.8), a B55a activator, promotes angiogenesis and arteriogenesis in critical limb ischemia.

BackgroundVasculogenic therapies explored for the treatment of peripheral artery disease (PAD) have encountered minimal success in clinical trials. Addressing this, B55, an isoform of protein phosphatase 2A (PP2A), emerges as pivotal in vessel remodeling through activation of hypoxia-inducible factor 1 (HIF-1). This study delves into the pharmacological profile of VCE-004.8 (Etrinabdione) and evaluates its efficacy in a preclinical model of critical limb ischemia, with a focus on its potential as a PP2A/B55 activator to induce angiogenesis and arteriogenesis. MethodsVascular endothelial cells were used for in vitro experiments. Aorta ring assay was performed to explore sprouting activity. Matrigel plug-in assay was used to assess the angiogenic potential. Critical limb ischemia (CLI) in mice was induced by double ligation in the femoral arteria. Endothelial vascular and fibrotic biomarkers were studied by immunohistochemistry and qPCR. Arteriogenesis was investigated by microvascular casting and micro-CT. Proteomic analysis in vascular tissues was analyzed by LC-MS/MS. Ex-vivo expression of B55 and biomarkers were investigated in artery samples from PAD patients. ResultsVCE-004.8 exhibited the ability to induce B55 expression and activate the intersecting pathways B55/AMPK/Sirtuin 1/eNOS and B55/PHD2/HIF-1. VCE-004.8 prevented OxLDL and H2O2-induced cytotoxicity, senescence, and inflammation in endothelial cells. Oral VCE-004.8 increased aorta sprouting in vitro and angiogenesis in vivo. In CLI mice VCE-004.8 improved collateral vessel formation and induced endothelial cells proliferation, angiogenic gene expression and prevented fibrosis. The expression of B55, Caveolin 1 and Sirtuin-1 is reduced in arteries from CLI mice and PAD patient, and the expression of these markers was restored in mice treated with VCE-004.8. ConclusionsThe findings presented in this study indicate that Etrinabdione holds promise in mitigating endothelial cell damage and senescence, while concurrently fostering arteriogenesis and angiogenesis. These observations position Etrinabdione as a compelling candidate for the treatment of PAD, and potentially other cardiovascular disorders. Novelty and SignificanceO_ST_ABSWhat Is Known?C_ST_ABSO_LIThe phosphatase PPA2/B55 stabilizes endothelial cells (ECs) in response to cell stress conditions, thereby protecting ECs from apoptosis and promoting angiogenesis. C_LIO_LIEtrinabdione (VCE-004.8) functions as a potent activator of PPA2/B55 inducing PHD2 dephosphorylation at ser125 and fostering HIF activation. C_LIO_LIVCE-004.8 prevents vascular damage in preclinical models of systemic and cardiac fibrosis and alleviates blood-brain barrier disruption in neuroinflammatory conditions. C_LIO_LIVCE-004.8 is also a dual agonist of PPAR{psi} and CB2 receptors and shows antiinflammatory activity. C_LIO_LIOral VCE-004.8 has meet the primary endpoints of safety and tolerability in a Phase IIa clinical trial with systemic sclerosis patients (clinicaltrial.gov: NCT03745001). C_LI What New Information Does This Article Contribute?O_LIEtrinabdione induces HIF-1 expression in endothelial cells through a novel pathway that potentially involves two axes: B55/PHD2 and B55/AMPK/Sirt1 signaling that may converge on HIF stabilization. C_LIO_LIEtrinabdione prevented endothelial cell damage and senescence, while inducing arteriogenesis and angiogenesis in CLI mice. C_LIO_LIIn arteries of patients with PAD and in CLI mouse models, the expression levels of B55, Caveolin 1, and Sirtuin 1 are diminished. However, treatment with Etrinabdione specifically in CLI mice prompts an increase in the levels of these proteins. C_LIO_LIEtrinabdione triggers neovascularization and angiogenesis specifically within hypoxic tissue in a critical ischemia model, with no impact on healthy tissue. C_LI

pharmacology and toxicology↗

Bibliometric analysis on cannibalism/infanticide and maternal aggression towards pups in laboratory animals

Animal welfare has evolved during the past decades to improve not only the quality of life of laboratory animals but also the quality and reproducibility of scientific investigations. Bibliometric analysis has become an important tool to complete the current knowledge with academic databases. Our objective was to investigate whether scientific research on cannibalism/infanticide is connected with maternal aggression towards the offspring in laboratory animals. To carry out our research, we performed a specific search for published articles on each concept. Results were analyzed in the opensource environment RStudio with the package Bibliometrix. We obtained 228 and 134 articles for the first search (cannibalism/infanticide) and the second search (maternal aggression towards the pups) respectively. We observed that the interest in infanticide cannibalism started in the 1950s, while researchers started showing interest in maternal aggression towards the pups 30 years later. Our analyses indicated that maternal aggression had better citations in scientific literature. In addition, although our results showed some common features (e.g., oxytocin or medial preoptic area in the brain), we observed a gap between cannibalism/infanticide and maternal aggression towards the pups with only 18 published articles in common for both the searches. Therefore, we recommend researchers to combine both concepts in further investigations in the context of cannibalism for better dissemination and higher impact in laboratory animals welfare research. Highlights- Cannibalism/Infanticide and maternal aggression have been investigated separately. - Maternal aggression has a higher impact on scientific literature. - Combining both topics may increase cannibalism/infanticide impact.

animal behavior and cognition↗