Kinetics of Oxygen Uptake by Cells Potentially Used in a Tissue Engineered Trachea
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Synthetic polymer scaffold seeded with autologous cells have a clinical translational potential. A rational design oriented to clinical applications must ensure an efficient mass transfer of nutrients as a function of specific metabolic rates, especially for precariously vascularized tissues grown in vitro or integrated in vivo. In this work, luminescence lifetime-based sensors were used to provide accurate, extensive and non-invasive measurements of the oxygen uptake rate for human mesenchymal stem cells (hMSCs), tracheal epithelial cells (hTEpiCs) and human chondrocytes (hCCs) within a range of 2-40% O2 partial pressure. Estimated Michaelis-Menten parameters were: V(max) = 0.099 pmol/cell⋅h and K(M) = 2.12 × 10(-7) mol/cm(3) for hMSCs, V(max) = 1.23 pmol/cell⋅h and K(M) = 2.14 × 10(-7) mol/cm(3) for hTEpiCs, V(max) = 0.515 pmol/cell⋅h and K(M) = 1.65 × 10(-7) mol/cm(3) for hCCs. Kinetics data served as an input to a preliminary computational simulation of cell culture on a poly-ethylene terephthalate (PET) tracheal scaffold obtaining an efficient mass transfer at cell density of 10(6) cell/cm(3). Oxygen concentration affected the glucose uptake and lactate production rates of cells that adapted their metabolism according to energy demand in hypoxic and normoxic conditions.
Ranjbar N, Bakhshandeh B, Pennisi C Bioengineering (Basel). 2023; 10(12).
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Mazio C, Scognamiglio L, Passariello R, Panzetta V, Casale C, Urciuolo F ACS Biomater Sci Eng. 2023; 9(5):2780-2792.
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Vazquez-Vazquez F, Chavarria-Bolanos D, Ortiz-Magdaleno M, Guarino V, Alvarez-Perez M Bioengineering (Basel). 2022; 9(5).
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Allometric Scaling of physiologically-relevant organoids.
Magliaro C, Rinaldo A, Ahluwalia A Sci Rep. 2019; 9(1):11890.
PMID: 31417119 PMC: 6695443. DOI: 10.1038/s41598-019-48347-2.