Activin Receptor-Like Kinase 5 Inhibition Reverses Impairment of Endothelial Cell Viability by Endogenous Islet Mesenchymal Stromal Cells

Author:

Clarkin Claire E.1,King Aileen J.1,Dhadda Paramjeet1,Chagastelles Pedro2,Nardi Nance3,Wheeler-Jones Caroline P.4,Jones Peter M.1

Affiliation:

1. Diabetes Research Group, Division of Diabetes and Nutritional Sciences, School of Medicine, Kings College London, London, United Kingdom

2. Department of Genetics, Universidade Federal do Rio Grande do Sul, Brazil

3. Laboratory of Stem Cells and Tissue Engineering, Universidade Luterana do Brasil, Brazil

4. Comparative Biomedical Sciences, The Royal Veterinary College, London, United Kingdom

Abstract

Abstract Following islet transplantation, islet graft revascularization is compromised due to loss of endothelial cells (ECs) during islet culture. TGF-β signaling pathways are essential for vascular homeostasis but their importance for islet EC function is unclear. We have identified a population of multipotent mesenchymal stromal cells (MSCs) within islets and investigated how modulation of TGF-β signaling by these cells influences islet EC viability. Cultured islets exhibited reduced expression of EC markers (VEGFR2, VE-cadherin and CD31), which was associated with diminished but sustained expression of endoglin a marker of both ECs and MSCs. Double fluorescent labeling of islets in situ with the EC marker CD31 disclosed a population of CD31-negative cells which were positive for endoglin. In vitro coculture of microvascular ECs with endoglin-positive, CD31-negative islet MSCs reduced VEGFR2 protein expression, disrupted EC angiogenic behavior, and increased EC detachment. Medium conditioned by islet MSCs significantly decreased EC viability and increased EC caspase 3/7 activity. EC:MSC cocultures showed enhanced Smad2 phosphorylation consistent with altered ALK5 signaling. Pharmacological inhibition of ALK5 activity with SB431542 (SB) improved EC survival upon contact with MSCs, and SB-treated cultured islets retained EC marker expression and sensitivity to exogenous VEGF164. Thus, endoglin-expressing islet MSCs influence EC ALK5 signaling in vitro, which decreases EC viability, and changes in ALK5 activity in whole cultured islets contribute to islet EC loss. Modifying TGF-β signaling may enable maintenance of islet ECs during islet isolation and thus improve islet graft revascularization post-transplantation.

Funder

Diabetes UK and The Diabetes Foundation

Conselho Nacional de Desenvolvimento Científico e Tecnológico, Brazil for fundingm

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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