首页> 美国卫生研究院文献>Tissue Engineering. Part C Methods >Effects of Hypertonic (NaCl) Two-Dimensional and Three-Dimensional Culture Conditions on the Properties of Cartilage Tissue Engineered from an Expanded Mature Bovine Chondrocyte Source
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Effects of Hypertonic (NaCl) Two-Dimensional and Three-Dimensional Culture Conditions on the Properties of Cartilage Tissue Engineered from an Expanded Mature Bovine Chondrocyte Source

机译:高渗(NaCl)二维和三维培养条件对扩增的成熟牛软骨细胞来源的软骨组织特性的影响

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摘要

Clinically relevant mature cartilage cells (chondrocytes) present challenges for use in cartilage tissue engineering applications, given their low capacity for cell division and tissue production. Since the in situ environment of chondrocytes is hypertonic relative to standard culture medium conditions, in this study we tested the hypothesis that using culture medium of a hypertonic, more physiologic osmolarity during both two-dimensional (2D) expansion of mature bovine chondrocytes (MBCs) and their subsequent encapsulation culture in three-dimensional (3D) agarose hydrogel constructs produces improved engineered tissue construct mechanical and biochemical properties. Results demonstrate that 2D expansion of MBCs in hypertonic (NaCl) medium before encapsulation yielded improved construct mechanical properties. However, 3D encapsulation culture of cells in hypertonic (NaCl) medium yielded poorer construct mechanical properties. Osmolarity-related differences in construct biochemical content and organization may have contributed to differences in mechanical properties, as construct glycosaminoglycan content correlated moderately with construct mechanical properties, and construct collagen distribution varied between 3D osmotic culture groups. Results of this study suggest that application of hypertonic (NaCl) medium during 2D mature chondrocyte expansion, but not 3D encapsulated chondrocyte culture, may serve as a convenient and inexpensive method for improving mechanical properties of expanded cell-seeded constructs.
机译:临床相关的成熟软骨细胞(软骨细胞)由于其细胞分裂和组织产生的能力低,在软骨组织工程应用中提出了挑战。由于软骨细胞的原位环境相对于标准培养基条件而言是高渗的,因此在这项研究中,我们测试了以下假设:在成熟的牛软骨细胞(MBC)的二维(2D)扩张过程中,使用高渗,更高的生理渗透压的培养基并且其随后在三维(3D)琼脂糖水凝胶构建物中的封装培养产生了改良的工程组织构建物机械和生化特性。结果表明,在包封之前,高渗(NaCl)介质中MBC的2D膨胀产生了改善的构建体机械性能。但是,高渗(NaCl)培养基中细胞的3D封装培养产生较差的构建体机械性能。与构造物生化含量和组织有关的渗透压相关差异可能是造成机械性能差异的原因,因为构造物糖胺聚糖含量与构造物机械性能适度相关,并且构造物胶原在3D渗透培养组之间分布不同。这项研究的结果表明,在2D成熟的软骨细胞扩增过程中应用高渗(NaCl)培养基,而不是3D封装的软骨细胞培养,可能是一种方便且廉价的方法,用于改善已扩增的细胞播种构建体的机械性能。

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