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人口腔黏膜上皮细胞对不同储存温度的反应:一项结构和转录研究。

Response of human oral mucosal epithelial cells to different storage temperatures: A structural and transcriptional study.

机构信息

Department of Medical Biochemistry, Oslo University Hospital, Ullevål, Oslo, Norway.

Center for Eye Research, Department of Ophthalmology, Oslo University Hospital, Ullevål, Oslo, Norway.

出版信息

PLoS One. 2020 Dec 16;15(12):e0243914. doi: 10.1371/journal.pone.0243914. eCollection 2020.

Abstract

PURPOSE

Seeking to improve the access to regenerative medicine, this study investigated the structural and transcriptional effects of storage temperature on human oral mucosal epithelial cells (OMECs).

METHODS

Cells were stored at four different temperatures (4°C, 12°C, 24°C and 37°C) for two weeks. Then, the morphology, cell viability and differential gene expression were examined using light and scanning electron microscopy, trypan blue exclusion test and TaqMan gene expression array cards, respectively.

RESULTS

Cells stored at 4°C had the most similar morphology to non-stored controls with the highest viability rate (58%), whereas the 37°C group was most dissimilar with no living cells. The genes involved in stress-induced growth arrest (GADD45B) and cell proliferation inhibition (TGFB2) were upregulated at 12°C and 24°C. Upregulation was also observed in multifunctional genes responsible for morphology, growth, adhesion and motility such as EFEMP1 (12°C) and EPHA4 (4°C-24°C). Among genes used as differentiation markers, PPARA and TP53 (along with its associated gene CDKN1A) were downregulated in all temperature conditions, whereas KRT1 and KRT10 were either unchanged (4°C) or downregulated (24°C and 12°C; and 24°C, respectively), except for upregulation at 12°C for KRT1.

CONCLUSIONS

Cells stored at 12°C and 24°C were stressed, although the expression levels of some adhesion-, growth- and apoptosis-related genes were favourable. Collectively, this study suggests that 4°C is the optimal storage temperature for maintenance of structure, viability and function of OMECs after two weeks.

摘要

目的

为了改善再生医学的可及性,本研究调查了储存温度对人口腔黏膜上皮细胞(OMECs)的结构和转录的影响。

方法

将细胞分别储存在 4°C、12°C、24°C 和 37°C 下两周,然后使用光镜和扫描电子显微镜、台盼蓝排斥试验和 TaqMan 基因表达谱芯片分别检测细胞形态、细胞活力和差异基因表达。

结果

4°C 储存组的细胞形态与未储存对照组最相似,活力率最高(58%),而 37°C 组最不相似,没有活细胞。12°C 和 24°C 组中与应激诱导生长抑制(GADD45B)和细胞增殖抑制(TGFB2)相关的基因上调。多功能基因 EFEMP1(12°C)和 EPHA4(4°C-24°C)也参与了形态、生长、黏附和运动等功能的上调。在分化标志物基因中,PPARA 和 TP53(及其相关基因 CDKN1A)在所有温度条件下均下调,而 KRT1 和 KRT10 要么不变(4°C),要么下调(24°C 和 12°C;24°C 下调),除了 12°C 时 KRT1 上调。

结论

12°C 和 24°C 储存的细胞受到压力,但某些黏附、生长和凋亡相关基因的表达水平有利。总的来说,本研究表明,在两周后,4°C 是维持 OMECs 结构、活力和功能的最佳储存温度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca4c/7744058/a5e02ecf268a/pone.0243914.g001.jpg

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