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Biological Effects of XyloCore, a Glucose Sparing PD Solution, on Mesothelial Cells: Focus on Mesothelial-Mesenchymal Transition, Inflammation and Angiogenesis

Valentina Masola, Mario Bonomini, Maurizio Onisto, Pietro Manuel Ferraro, Arduino Arduini, Giovanni Gambaro

2021Nutrients23 citationsDOIOpen Access PDF

Abstract

Glucose-based solutions remain the most used osmotic agents in peritoneal dialysis (PD), but unavoidably they contribute to the loss of peritoneal filtration capacity. Here, we evaluated at a molecular level the effects of XyloCore, a new PD solution with a low glucose content, in mesothelial and endothelial cells. Cell viability, integrity of mesothelial and endothelial cell membrane, activation of mesothelial and endothelial to mesenchymal transition programs, inflammation, and angiogenesis were evaluated by several techniques. Results showed that XyloCore preserves mesothelial and endothelial cell viability and membrane integrity. Moreover XyloCore, unlike glucose-based solutions, does not exert pro-fibrotic, -inflammatory, and -angiogenic effects. Overall, the in vitro evidence suggests that XyloCore could represent a potential biocompatible solution promising better outcomes in clinical practice.

Topics & Concepts

Mesothelial CellAngiogenesisMesotheliumInflammationMesenchymal stem cellCell biologyEndothelial stem cellChemistryEpithelial–mesenchymal transitionCancer researchIn vitroImmunologyBiologyMedicineBiochemistryPathologyTransition (genetics)GeneDialysis and Renal Disease ManagementVitamin C and Antioxidants ResearchMuscle and Compartmental Disorders
Biological Effects of XyloCore, a Glucose Sparing PD Solution, on Mesothelial Cells: Focus on Mesothelial-Mesenchymal Transition, Inflammation and Angiogenesis | Litcius