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Could hypoxia influence basic biological properties and ultrastructural features of adult canine mesenchymal stem /stromal cells?

Abstract
The aim of the present study was to compare canine adipose tissue mesenchymal stem cells cultured under normoxic (20% O2) and not severe hypoxic (7% O2) conditions in terms of marker expression, proliferation rate, differentiation potential and cell morphology. Intra-abdominal fat tissue samples were recovered from 4 dogs and cells isolated from each sample were cultured under hypoxic and normoxic conditions. Proliferation rate and adhesion ability were determined, differentiation towards chondrogenic, osteogenic and adipogenic lineages was induced; the expression of CD44, CD34, DLA-DQA1, DLA-DRA1 was determined by PCR, while flow cytometry analysis for CD90, CD105, CD45 and CD14 was carried out. The morphological study was performed by transmission electron microscopy. Canine AT-MSCs, cultured under different oxygen tensions, maintained their basic biological features. However, under hypoxia, cells were not able to form spheroid aggregates revealing a reduction of their adhesivness. In both conditions, MSCs mainly displayed the same ultrastructural morphology and retained the ability to produce membrane vesicles. Noteworthy, MSCs cultivated under hypoxya revealed a huge shedding of large complex vesicles, containing smaller round-shaped vesicles. In our study, hypoxia partially influences the basic biological properties and the ultrastructural features of canine mesenchymal stem /stromal cells. Further studies are needed to clarify how hypoxia affects EVs production in term of amount and content in order to understand its contribution in tissue regenerative mechanisms and the possible employment in clinical applications. The findings of the present work could be noteworthy for canine as well as for other mammalian species.
AuthorsEleonora Iacono, Luisa Pascucci, Cinzia Bazzucchi, Marco Cunto, Francesca Ricci, Barbara Rossi, Barbara Merlo
JournalVeterinary research communications (Vet Res Commun) Vol. 42 Issue 4 Pg. 297-308 (Dec 2018) ISSN: 1573-7446 [Electronic] Switzerland
PMID30238341 (Publication Type: Journal Article)
Topics
  • Adipose Tissue (cytology, metabolism, ultrastructure)
  • Animals
  • Cells, Cultured
  • Dogs
  • Flow Cytometry
  • Hypoxia (metabolism, pathology, veterinary)
  • Mesenchymal Stem Cells (metabolism, ultrastructure)
  • Microscopy, Electron, Transmission
  • Polymerase Chain Reaction

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