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首页> 外文期刊>Cell transplantation >A novel bioreactor microcarrier cell culture system for high yields of proliferating autologous human keratinocytes.
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A novel bioreactor microcarrier cell culture system for high yields of proliferating autologous human keratinocytes.

机译:一种新颖的生物反应器微载体细胞培养系统,可高产率增殖自体人类角质形成细胞。

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Rapid and efficient resurfacing of various skin defects by autologous keratinocyte transplantation is significant in skin wound healing. We developed a novel bioreactor microcarrier cell culture system (Bio-MCCS) to produce autologous human keratinocytes on a large scale. In this Bio-MCCS we used porcine gelatin microbeads as microcarriers for autolgous keratinocytes and spinning bottles as fermentation tanks. First, the microbeads were modified by culturing them with autologous dermal fibroblasts that were subsequently killed when they proliferated to confluence on the microbeads. We then performed the Bio-MCCS by expanding ketatinocytes on the microbeads in spinning bottles at 37 degrees C, 5% CO2. Our results showed that keratinocytes rapidly attached to and actively proliferated on the modified microbeads in the Bio-MCCS, achieving high cell densities on the modified microbeads (MTT assay and PI staining). Keratinocytes cultured on the modified microbeads in the Bio-MCCS remained proliferating potentials as shown by positive PCNA staining and BrdU labeling. In contrast, keratinocytes cultured on nonmodified microbeads in the Bio-MCCS proliferated slowly, rapidly ceased to proliferate, and finally dislodged from the microbeads. When removed from the Bio-MCCS and cultured under static conditions, keratinocytes were able to leave the modified microbeads and formed a multilayered epidermal equivalent on the culture surfaces. While stored at room temperature, keratinocytes remained at higher viabilities on the modified microbeads when compared to those on nonmodified microbeads. The achievement of high yields of proliferating autologous keratinocytes by this Bio-MCCS offers a practical potential of resurfacing various skin defects by direct administration of autologous keratinocyte microbeads on various skin defects.
机译:自体角质形成细胞移植对各种皮肤缺损的快速有效修复在皮肤伤口愈合中具有重要意义。我们开发了一种新型的生物反应器微载体细胞培养系统(Bio-MCCS),可大规模生产自体人类角质形成细胞。在此Bio-MCCS中,我们使用猪明胶微珠作为自体角质形成细胞的微载体,并使用纺丝瓶作为发酵罐。首先,通过将微珠与自体真皮成纤维细胞一起培养来对其进行修饰,然后当它们增殖并汇聚到微珠上时被杀死。然后,我们通过在37°C,5%CO2的旋转瓶中的微珠上扩增角质形成细胞来进行Bio-MCCS。我们的结果表明,角质形成细胞在Bio-MCCS中快速附着于修饰的微珠并在其上增殖,从而在修饰的微珠上实现了高细胞密度(MTT分析和PI染色)。如PCNA阳性染色和BrdU标记所示,在Bio-MCCS中修饰的微珠上培养的角质形成细胞仍具有增殖潜力。相反,在Bio-MCCS中未修饰的微珠上培养的角质形成细胞增殖缓慢,迅速停止增殖,最后从微珠上脱落。当从Bio-MCCS中取出并在静态条件下培养时,角质形成细胞能够离开修饰的微珠,并在培养表面上形成多层表皮等效物。当在室温下储存时,与未修饰的微珠上的角化细胞相比,修饰的微珠上的角质形成细胞保持较高的活力。通过这种Bio-MCCS实现高产量的增殖自体角质形成细胞,通过对各种皮肤缺损直接施用自体角质形成细胞微珠,具有重现各种皮肤缺损的实际潜力。

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