Institute on Membrane Technology, National Research Council of Italy, ITM-CNR, c/o University of Calabria, via P. Bucci Cubo 17/C, I-87030 Rende (CS), Italy; Department of Environmental and Chemical Engineering, University of Calabria, (DIATIC-UNICAL), via P. Bucci Cubo 45A, 87036 Rende (CS), Italy.
Institute on Membrane Technology, National Research Council of Italy, ITM-CNR, c/o University of Calabria, via P. Bucci Cubo 17/C, I-87030 Rende (CS), Italy.
Biomaterials. 2014 Aug;35(25):6829-37. doi: 10.1016/j.biomaterials.2014.04.100. Epub 2014 May 27.
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.
自体细胞种植的合成聚合物支架具有临床转化的潜力。为了临床应用,合理的设计必须确保营养物质的有效质量传递,特别是对于体外生长或体内整合的血管化组织。在这项工作中,我们使用基于荧光寿命的传感器来提供人骨髓间充质干细胞(hMSCs)、气管上皮细胞(hTEpiCs)和人软骨细胞(hCCs)在 2-40%氧分压范围内的氧摄取率的准确、广泛和非侵入性测量。估计的米氏常数参数为:hMSCs 的 V(max) = 0.099 pmol/细胞·h 和 K(M) = 2.12×10(-7)mol/cm(3),hTEpiCs 的 V(max) = 1.23 pmol/细胞·h 和 K(M) = 2.14×10(-7)mol/cm(3),hCCs 的 V(max) = 0.515 pmol/细胞·h 和 K(M) = 1.65×10(-7)mol/cm(3)。动力学数据作为初步计算模拟的输入,在聚对苯二甲酸乙二醇酯(PET)气管支架上培养细胞,在 10(6)细胞/cm(3)的细胞密度下获得有效的质量传递。氧浓度影响细胞的葡萄糖摄取率和乳酸生成率,细胞根据缺氧和正常氧条件下的能量需求来调节其代谢。