Abstract
Introduction : The efficacy of islet transplantation is well established. However, the procedure still needs improvements in the quality of grafted islets, often weakened by the loss of their surrounding tissue during the isolation process. In this respect, mesenchymal stromal cells (MSC) represent an interesting tool as they have immunomodulatory and anti-inflammatory properties and are known to secrete proteins involved in creating a favorable microenvironment. This work aims to investigate the effect of human pancreatic stromal cells on human β-cells.Methods : We characterized the mesenchymal profile of cells, previously immortalized in our lab from human islets of Langerhans adherent cells, hereafter named hISC (human islet-derived stromal cells). We seeded human β-cells (EndoC-βH1 cell line or primary β-cells) on hISC-conditioned medium (hISC-CM) used as coating of Petri dishes. We assessed spreading, survival, proliferation and glucose-induced insulin secretion of β-cells cultured on hISC-CM as compared to poly-L-lysine coating.Results : Phenotypic and transcriptomic profiles of hISC are close to bone-marrow MSC. The hISC have an immunomodulation capacity. They express and secrete extracellular matrix proteins known to be present around and within human islet such as types I, IV and VI collagens, laminin and fibronectin. EndoC-βH1 seeded on hISC-CM adhere and spread on cell culture surface. We show that hISC-CM has positive effects on EndocC-βH1 proliferation, survival and glucose-induced insulin secretion, as compared to poly-L-lysine. From mechanistic point of view, hISC-CM induces FAK (focal adhesion kinase) and ERK (extracellular signal-regulated kinases) phosphorylations. The β1-integrin subunit is involved in both adhesion and increased insulin secretion of β cells induced through hISC-CM.Conclusion : Our work demonstrates a promising interest of hISC as support cells for human β-cells by scaffolding factors secretion. It opens new perspectives for conditioning human β-cells in a more physiological microenvironment to preserve their functional quality before and after transplantation.