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使用基于壳聚糖的膜培养鼻上皮细胞。

Culture of nasal epithelial cells using chitosan-based membranes.

作者信息

Huang Tsung-Wei, Young Yi-Ho, Cheng Po-Wen, Chan Yen-Hui, Young Tai-Horng

机构信息

Institute of Biomedical Engineering, College of Medicine and College of Engineering, National Taiwan University, National Taiwan University Hospital and College of Medicine, Taipei, Taiwan.

出版信息

Laryngoscope. 2009 Oct;119(10):2066-70. doi: 10.1002/lary.20609.

Abstract

OBJECTIVES/HYPOTHESIS: The aim of this study was to evaluate whether chitosan-based membranes can be used as scaffolds for growth and differentiation of nasal epithelial cells (NECs). Our final goal was to establish a novel methodology for enhancing the regeneration of the respiratory system.

STUDY DESIGN

Prospective study.

METHODS

Human NECs were cultured on three various substrates, e.g., chitosan membranes, collagen, and chitosan-collagen membranes. Morphology of NECs was examined via light and electron microscopy, the area of ciliated cells was measured by confocal microscopy, and ciliary beat frequency was also evaluated. Expression of mucin genes was investigated with reverse-transcription polymerase chain reaction.

RESULTS

NECs were found to be successfully adhesive with collagen and chitosan-collagen membranes at day 3 after seeding, but not with chitosan membranes. The cilia area on collagen were 6.1% +/- 1.2%, 8.4% +/- 1.4%, and 12.5% +/- 1.9% at days 7, 14, and 21 after confluence, respectively, compared with 5.1% +/- 0.9%, 8.6% +/- 1.6%, and 12.3% +/- 2.1% in chitosan-collagen membranes, exhibited nonsignificant difference (P > .05). There were no significant differences in ciliary beat frequency between each group. The expression levels of mucin genes, namely, MUC5AC, MUC5B, and MUC2, in NECs on both collagen and chitosan-collagen membranes did not differ significantly (P > .05).

CONCLUSIONS

A small amount collagen mixed with chitosan substrate may improve the biocompatibility and promote the mucociliary differentiation in NECs. It appears that chitosan-collagen membrane is a promising scaffold for culture of the nasal epithelium, which sets the stage for studying tissue regeneration in the respiratory system.

摘要

目的/假设:本研究旨在评估基于壳聚糖的膜是否可作为鼻上皮细胞(NECs)生长和分化的支架。我们的最终目标是建立一种增强呼吸系统再生的新方法。

研究设计

前瞻性研究。

方法

将人NECs培养在三种不同的基质上,即壳聚糖膜、胶原蛋白和壳聚糖 - 胶原蛋白膜。通过光学和电子显微镜检查NECs的形态,用共聚焦显微镜测量纤毛细胞的面积,并评估纤毛摆动频率。用逆转录聚合酶链反应研究粘蛋白基因的表达。

结果

接种后第3天发现NECs与胶原蛋白和壳聚糖 - 胶原蛋白膜成功黏附,但与壳聚糖膜未成功黏附。汇合后第7天、14天和21天,胶原蛋白上的纤毛面积分别为6.1%±1.2%、8.4%±1.4%和12.5%±1.9%,壳聚糖 - 胶原蛋白膜上分别为5.1%±0.9%、8.6%±1.6%和12.3%±2.1%,差异无统计学意义(P>.05)。各组之间的纤毛摆动频率无显著差异。胶原蛋白和壳聚糖 - 胶原蛋白膜上NECs中粘蛋白基因MUC5AC、MUC5B和MUC2的表达水平差异无统计学意义(P>.05)。

结论

少量胶原蛋白与壳聚糖基质混合可改善生物相容性并促进NECs的黏液纤毛分化。壳聚糖 - 胶原蛋白膜似乎是用于鼻上皮细胞培养的有前景的支架,为研究呼吸系统的组织再生奠定了基础。

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