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用于临界尺寸β-磷酸三钙支架内干细胞增殖的三维流动灌注培养系统。

Three-dimensional flow perfusion culture system for stem cell proliferation inside the critical-size beta-tricalcium phosphate scaffold.

作者信息

Xie Youzhuan, Hardouin Pierre, Zhu Zhenan, Tang Tingting, Dai Kerong, Lu Jianxi

机构信息

Department of Orthopaedic Surgery, Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

出版信息

Tissue Eng. 2006 Dec;12(12):3535-43. doi: 10.1089/ten.2006.12.3535.

Abstract

A 3-dimensional flow perfusion system has been created in our laboratory to provide continuous and homogeneous nutrient supply inside the critical-size beta-tricalcium phosphate (beta-TCP) scaffold and permit cell proliferation during long-term incubation. The critical-size porous cylindrical scaffold (14 mm in diameter, 30 mm in length) with a central tunnel was impregnated with sheep mesenchymal stem cells. In the flow perfusion group, the hybrid scaffolds were continuously perfused with complete alpha-minimum essential medium via a peristaltic pump for 7, 14, and 28 days. In the static culture group, the hybrid composites were immersed in the medium without perfusion for 14 and 28 days. The daily glucose consumption was much higher in the flow perfusion group than in the static group (p < 0.001). In the flow perfusion group, glucose consumption increased dramatically in the first 14 days, and the increase slowed in the last 14 days. In the static group, the increase occurred only in the first 14 days. Cell viability via MTT colorimetry increased with time, which coincided with the results of glucose consumption. Histological study showed that the cells proliferated through the whole scaffolds under the flow perfusion culture. While under the static culture, the cells survived and proliferated only inside the first to third rows of the macropores under the scaffold surface. The cell quantity increased with time under flow perfusion culture. The results suggest that flow perfusion culture is superior to static culture for mesenchymal stem cell proliferation in the critical-size porous scaffold. This perfusion culture system permits a constant nutrition supply into the center of a large-scale scaffold for at least 4 weeks. Determination of D-glucose in the culture medium is a noninvasive way to survey cell proliferation in this system.

摘要

我们实验室构建了一种三维流动灌注系统,以在临界尺寸的β-磷酸三钙(β-TCP)支架内提供持续且均匀的营养供应,并在长期培养过程中促进细胞增殖。将带有中心通道的临界尺寸多孔圆柱形支架(直径14毫米,长度30毫米)接种羊间充质干细胞。在流动灌注组中,通过蠕动泵用完全α-最低必需培养基对混合支架连续灌注7天、14天和28天。在静态培养组中,将混合复合材料浸入培养基中,不进行灌注,培养14天和28天。流动灌注组的每日葡萄糖消耗量比静态组高得多(p < 0.001)。在流动灌注组中,葡萄糖消耗量在最初14天急剧增加,在最后14天增加减缓。在静态组中,增加仅发生在最初14天。通过MTT比色法测定的细胞活力随时间增加,这与葡萄糖消耗结果一致。组织学研究表明,在流动灌注培养下细胞在整个支架中增殖。而在静态培养下,细胞仅在支架表面下第一至第三排大孔内存活和增殖。在流动灌注培养下细胞数量随时间增加。结果表明,对于临界尺寸多孔支架中的间充质干细胞增殖,流动灌注培养优于静态培养。这种灌注培养系统可在至少4周内持续向大型支架中心供应营养。测定培养基中的D-葡萄糖是在该系统中监测细胞增殖的一种非侵入性方法。

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