| Literature DB >> 29767474 |
Donatella Bardelli1, Erica Dander1, Cristina Bugarin1, Claudia Cappuzzello1, Alice Pievani2, Grazia Fazio1, Paolo Pierani3, Paola Corti4, Piero Farruggia5, Carlo Dufour6, Simone Cesaro7, Marco Cipolli8, Andrea Biondi1,4, Giovanna D'Amico1.
Abstract
Shwachman-Diamond syndrome (SDS) is a rare multi-organ recessive disease mainly characterised by pancreatic insufficiency, skeletal defects, short stature and bone marrow failure (BMF). As in many other BMF syndromes, SDS patients are predisposed to develop a number of haematopoietic malignancies, particularly myelodysplastic syndrome and acute myeloid leukaemia. However, the mechanism of cancer predisposition in SDS patients is only partially understood. In light of the emerging role of mesenchymal stromal cells (MSCs) in the regulation of bone marrow homeostasis, we assessed the ability of MSCs derived from SDS patients (SDS-MSCs) to recreate a functional bone marrow niche, taking advantage of a murine heterotopic MSC transplant model. We show that the ability of semi-cartilaginous pellets (SCPs) derived from SDS-MSCs to generate complete heterotopic ossicles in vivo is severely impaired in comparison with HD-MSC-derived SCPs. Specifically, after in vitro angiogenic stimuli, SDS-MSCs showed a defective ability to form correct networks, capillary tubes and vessels and displayed a marked decrease in VEGFA expression. Altogether, these findings unveil a novel mechanism of SDS-mediated haematopoietic dysfunction based on hampered ability of SDS-MSCs to support angiogenesis. Overall, MSCs could represent a new appealing therapeutic target to treat dysfunctional haematopoiesis in paediatric SDS patients.Entities:
Keywords: Shwachman-Diamond syndrome; angiogenesis; bone marrow niche; childhood; mesenchymal stromal cells
Mesh:
Year: 2018 PMID: 29767474 DOI: 10.1111/bjh.15388
Source DB: PubMed Journal: Br J Haematol ISSN: 0007-1048 Impact factor: 6.998