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冷冻保存后培养上皮的结构变化及细胞活力

Structural changes and cell viability of cultured epithelium after freezing storage.

作者信息

Hibino Y, Hata K, Horie K, Torii S, Ueda M

机构信息

Department of Oral Surgery, Nagoya University, School of Medicine, Japan.

出版信息

J Craniomaxillofac Surg. 1996 Dec;24(6):346-51. doi: 10.1016/s1010-5182(96)80035-7.

Abstract

Numerous clinical reports have shown the utility of cultured epithelial grafting in the field of plastic and reconstruction surgery. Recently, freezing storage of the cultured epithelium has been tried and has successfully grafted after thawing. It is clinically convenient if it is possible for cultured epithelium to keep its normal structure and viability. However, few papers have described the structural changes in cultured epithelium after freezing storage. In the present study, the morphological changes and cell viability of cultured mucosal epithelial sheets after freezing were studied in comparison with cultured epidermal sheets. Furthermore, we discuss the effect of storage temperature and cryoprotectants. As a result, there were some structural changes such as vacuolar degeneration in the cultured mucosal sheets using dimethyl sulphoxide (DMSO) as a cryoprotectant. Such changes were more clearly observed at -80 degrees C than at -196 degrees C with DMSO. However, little morphological change was observed in both epithelial sheets cultured with glycerin. The cell viability analysed by flow cytometry showed that more than 62% of the cells kept their viability after freezing storage. These results suggest that the optimum conditions of freezing for cultured epithelium were -196 degrees C storage by slow cooling methods with glycerin as a cryoprotectant.

摘要

众多临床报告显示了培养上皮移植在整形与重建外科领域的实用性。近来,已尝试对培养的上皮进行冷冻保存,并在解冻后成功移植。如果培养上皮能够保持其正常结构和活力,在临床上会很方便。然而,很少有论文描述冷冻保存后培养上皮的结构变化。在本研究中,与培养的表皮片相比,研究了冷冻后培养的黏膜上皮片的形态变化和细胞活力。此外,我们还讨论了储存温度和冷冻保护剂的影响。结果,在用二甲基亚砜(DMSO)作为冷冻保护剂的培养黏膜片中出现了一些结构变化,如空泡变性。使用DMSO时,在-80℃比在-196℃更明显地观察到这种变化。然而,在用甘油培养的两种上皮片中均未观察到明显的形态变化。通过流式细胞术分析的细胞活力表明,超过62%的细胞在冷冻保存后仍保持活力。这些结果表明,培养上皮的最佳冷冻条件是以甘油作为冷冻保护剂,通过缓慢冷却方法在-196℃储存。

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