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      Allogeneic Serum and Macromolecular Crowding Maintain Native Equine Tenocyte Function in Culture.

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          Abstract

          The absence of a native extracellular matrix and the use of xenogeneic sera are often associated with rapid tenocyte function losses during in vitro culture. Herein, we assessed the influence of different sera (equine serum and foetal bovine serum) on equine tenocyte morphology, viability, metabolic activity, proliferation and protein synthesis as a function of tissue-specific extracellular matrix deposition (induced via macromolecular crowding), aging (passages 3, 6, 9) and time in culture (days 3, 5, 7). In comparison to cells at passage 3, at day 3, in foetal bovine serum and without macromolecular crowding (traditional equine tenocyte culture), the highest number of significantly decreased readouts were observed for cells in foetal bovine serum, at passage 3, at day 5 and day 7 and without macromolecular crowding. Again, in comparison to traditional equine tenocyte culture, the highest number of significantly increased readouts were observed for cells in equine serum, at passage 3 and passage 6, at day 7 and with macromolecular crowding. Our data advocate the use of an allogeneic serum and tissue-specific extracellular matrix for effective expansion of equine tenocytes.

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          Author and article information

          Journal
          Cells
          Cells
          MDPI AG
          2073-4409
          2073-4409
          May 05 2022
          : 11
          : 9
          Affiliations
          [1 ] Laboratory of Animal Science, Nutrition and Biotechnology, School of Agriculture, University of Ioannina, 47100 Arta, Greece.
          [2 ] School of Veterinary Medicine, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
          [3 ] Regenerative, Modular & Developmental Engineering Laboratory (REMODEL), Charles Institute of Dermatology, Conway Institute of Biomolecular & Biomedical Research, School of Mechanical & Materials Engineering, University College Dublin (UCD), D04 V1W8 Dublin, Ireland.
          [4 ] Center for Cell Biology and Tissue Engineering, Institute for Chemistry and Biotechnology, Zurich University of Applied Sciences, 8820 Wädenswil, Switzerland.
          Article
          cells11091562
          10.3390/cells11091562
          9103545
          35563866
          9b9c23fd-2dae-4202-b3bd-97bcdf5970dd
          History

          tenocyte aging,tenocyte function,serial passaging,foetal bovine serum,excluded volume effect,allogeneic serum

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