首页> 外文期刊>Tissue engineering, Part A >Cigan, A.D., Nims, R.J., Albro, M.B., Esau, J.D., Dreyer, M.P., Vunjak-Novakovic, G., Hung, C.T., Ateshian, G.A.Insulin, ascorbate, and glucose have a much greater influence than transferrin and selenous acid on the in vitro growth of engineered cartilage in chondrogenic media
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Cigan, A.D., Nims, R.J., Albro, M.B., Esau, J.D., Dreyer, M.P., Vunjak-Novakovic, G., Hung, C.T., Ateshian, G.A.Insulin, ascorbate, and glucose have a much greater influence than transferrin and selenous acid on the in vitro growth of engineered cartilage in chondrogenic media

机译:Cigan,AD,Nims,RJ,Albro,MB,Esau,JD,Dreyer,MP,Vunjak-Novakovic,G.,Hung,CT,Ateshian,GA胰岛素,抗坏血酸和葡萄糖的影响远大于转铁蛋白和亚硒酸软骨培养基中工程软骨的体外生长

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摘要

The primary goal of this study was to characterize the response of chondrocyte-seeded agarose constructs to varying concentrations of several key nutrients in a chondrogenic medium, within the overall context of optimizing the key nutrients and the placement of nutrient channels for successful growth of cartilage tissue constructs large enough to be clinically relevant in the treatment of osteoarthritis (OA). To this end, chondrocyte-agarose constructs (?4×2.34 mm, 30×106 cells/mL) were subjected to varying supplementation levels of insulin (0× to 30× relative to standard supplementation), transferrin (0× to 30×), selenous acid (0× to 10×), ascorbate (0× to 30×), and glucose (0× to 3×). The quality of resulting engineered tissue constructs was evaluated by their compressive modulus (E-Y), tensile modulus (E+Y), hydraulic permeability (k), and content of sulfated glycosaminoglycans (sGAG) and collagen (COL); DNA content was also quantified. Three control groups from two separate castings of constructs (1× concentrations of all medium constituents) were used. After 42 days of culture, values in each of these controls were, respectively, E-Y= 518±78, 401±113, 236±67 kPa; E+Y= 1420±430, 1140±490, 1240±280 kPa; k=2.3±0. 8×10-3, 5.4±7.0×10-3, 3.3±1.3×10-3 mm4/N·s; sGAG=7.8±0.3, 6.3±0.4, 4.1±0.5%/ww; COL=1.3±0.2, 1.1±0.3, 1.4±0.4%/ww; and DNA=11.5±2.2, 12.1±0.6, 5.2±2.8 μg/disk. The presence of insulin and ascorbate was essential, but their concentrations may drop as low as 0.3× without detrimental effects on any of the measured properties; excessive supplementation of ascorbate (up to 30×) was detrimental to E-Y, and 30× insulin was detrimental to both E+Y and E-Y. The presence of glucose was similarly essential, and matrix elaboration was significantly dependent on its concentration (p10-6), with loss of functional properties, composition, and cellularity observed at ≤0.3×; excessive glucose supplementation (up to 3×) showed no detrimental effects. In contrast, transferrin and selenous acid had no influence on matrix elaboration. These findings suggest that adequate distributions of insulin, ascorbate, and glucose, but not necessarily of transferrin and selenous acid, must be ensured within large engineered cartilage constructs to produce a viable substitute for joint tissue lost due to OA.
机译:这项研究的主要目的是表征软骨细胞接种的琼脂糖构建体对软骨形成培养基中几种关键营养素浓度变化的响应,在优化关键营养素和营养素通道成功软骨组织生长的总体背景下足够大的结构可在骨关节炎(OA)的治疗中具有临床意义。为此,对软骨细胞-琼脂糖构建体(?4×2.34 mm,30×106细胞/ mL)进行不同剂量的胰岛素补充(相对于标准补充为0×至30×),转铁蛋白(0×至30×)。 ,亚硒酸(0×至10×),抗坏血酸(0×至30×)和葡萄糖(0×至3×)。通过其压缩模量(E-Y),拉伸模量(E + Y),水力渗透率(k)以及硫酸化糖胺聚糖(sGAG)和胶原蛋白(COL)的含量来评估所得工程化组织构建体的质量; DNA含量也被定量。使用来自两个独立的构建体铸件的三个对照组(所有培养基成分的浓度为1x)。培养42天后,这些对照中的每一个的值分别为E-Y = 518±78、401±113,236±67kPa。 E + Y = 1420±430、1140±490、1240±280kPa。 k = 2.3±0。 8×10-3、5.4±7.0×10-3、3.3±1.3×10-3mm4 / N·s; sGAG = 7.8±0.3,6.3±0.4,4.1±0.5%/ ww; COL = 1.3±0.2、1.1±0.3、1.4±0.4%/ ww;和DNA = 11.5±2.2、12.1±0.6、5.2±2.8μg/盘。胰岛素和抗坏血酸的存在是必不可少的,但它们的浓度可能会低至0.3倍,而不会对所测得的任何性质产生不利影响;过量补充抗坏血酸(最多30倍)对E-Y有害,而30倍胰岛素对E + Y和E-Y均有害。葡萄糖的存在同样是必不可少的,基质的精制很大程度上取决于其浓度(p <10-6),在≤0.3x时观察到功能特性,组成和细胞性的损失。过量补充葡萄糖(最多3倍)未显示有害作用。相反,转铁蛋白和亚硒酸对基质的加工没有影响。这些发现表明,必须在大型工程软骨构建体中确保胰岛素,抗坏血酸和葡萄糖的充分分布,但不一定必须是转铁蛋白和亚硒酸的分布,以产生可行的替代品,以替代因OA而丧失的关节组织。

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