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使用胶原-玻璃质凝胶海绵支架进行气管上皮的再生过程。

Regenerative process of tracheal epithelium using a collagen vitrigel sponge scaffold.

机构信息

Department of Otolaryngology, Fukushima Medical University, Fukushima, Japan.

出版信息

Laryngoscope. 2013 Jun;123(6):1469-73. doi: 10.1002/lary.23742. Epub 2013 Apr 26.

DOI:10.1002/lary.23742
PMID:23625522
Abstract

OBJECTIVES/HYPOTHESIS: Our group has developed a collagen vitrigel sponge scaffold containing basic fibroblast growth factor (b-FGF) for tracheal reconstruction. In this study, we have investigated the regenerative process of tracheal epithelium histologically and morphologically.

STUDY DESIGN

A preliminary animal experiment.

METHODS

A collagen vitrigel sponge scaffold was fabricated with simultaneous addition of 100 ng b-FGF. Tracheotomies were performed, and collagen vitrigel sponge scaffolds were implanted on tracheal defects in rats. At 5, 7, and 14 days after implantation, the intraluminal surface of the regenerated tracheae was observed using endoscope. Histological examination of the intraluminal regenerated trachea was performed using light microscope and scanning electron microscope.

RESULTS

Endoscopic images showed epithelial regeneration at 7 days after implantation. Light microscopic examination detected stratified epithelium at 5 days, columnar cells at 7 days, and ciliated cells at 14 days after implantation. Scanning electron microscopy images showed regenerated epithelial cells at 5 and 7 days, and ciliated cells at 14 days after implantation.

CONCLUSIONS

The horizontal section and luminal area of the regenerated epithelium were investigated. The epithelium was formed at 5 days, and mature cilia were found at 14 days after implantation. Epithelium of equality equivalent to normal trachea was regenerated in a rat model with collagen vitrigel-scaffold containing b-FGF at 14 days.

摘要

目的/假设:我们小组开发了一种含有碱性成纤维细胞生长因子(b-FGF)的胶原蛋白 Vitrigel 海绵支架,用于气管重建。在这项研究中,我们从组织学和形态学方面研究了气管上皮的再生过程。

研究设计

初步动物实验。

方法

用 100ng b-FGF 同时添加的方法制备胶原蛋白 Vitrigel 海绵支架。在大鼠的气管切开部位植入胶原蛋白 Vitrigel 海绵支架。在植入后 5、7 和 14 天,使用内窥镜观察再生气管的管腔内表面。使用光学显微镜和扫描电子显微镜对管腔内再生气管进行组织学检查。

结果

植入后 7 天,内窥镜图像显示上皮再生。光镜检查在植入后 5 天检测到复层上皮,在植入后 7 天检测到柱状细胞,在植入后 14 天检测到纤毛细胞。扫描电子显微镜图像显示在植入后 5 和 7 天再生的上皮细胞和植入后 14 天的纤毛细胞。

结论

研究了再生上皮的水平切片和管腔面积。上皮在植入后 5 天形成,在植入后 14 天发现成熟的纤毛。在含有 b-FGF 的胶原蛋白 Vitrigel 支架的大鼠模型中,在植入后 14 天可形成与正常气管相等的上皮。

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Regenerative process of tracheal epithelium using a collagen vitrigel sponge scaffold.使用胶原-玻璃质凝胶海绵支架进行气管上皮的再生过程。
Laryngoscope. 2013 Jun;123(6):1469-73. doi: 10.1002/lary.23742. Epub 2013 Apr 26.
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Collagen vitrigel scaffold for regenerative medicine of the trachea: experimental study and quantitative evaluation.用于气管再生医学的胶原蛋白玻璃凝胶支架:实验研究与定量评估
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