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脂肪源干细胞种植于胶原海绵支架构建的大鼠气管内细胞纤毛功能的评价。

Evaluation of Cilia Function in Rat Trachea Reconstructed Using Collagen Sponge Scaffold Seeded with Adipose Tissue-Derived Stem Cells.

机构信息

Department of Otolaryngology, Head and Neck Surgery, Kyoto University Graduate School of Medicine, Kyoto 606-8507, Japan.

出版信息

Anat Rec (Hoboken). 2020 Mar;303(3):471-477. doi: 10.1002/ar.24104. Epub 2019 Apr 5.

Abstract

The tracheal lumen is essential for conducting air to the lung alveoli and for voice production. However, patients with severe tracheal stenosis and malignant tumors invading the trachea often require tracheal resection. Recently, various reported tissue engineering methods for tracheal reconstruction show that regeneration of ciliated epithelium in the reconstructed areas, as well as preservation of the luminal structure is possible. However, only few studies report on the mucociliary transport function in reconstructed tracheae. We investigated mucociliary transport function within rat tracheal epithelium, reorganized after autologous adipose tissue-derived stem cell (ASC) transplantation. Rat ASCs were expanded in culture, and then seeded in a collagen sponge, which was physically supported with a polypropylene framework. The ASC-seeded collagen sponge was transplanted into the rat tracheal defect. We then examined the motility and transport function of cilia generated in the transplanted area using ciliary beat frequency (CBF) and microsphere movement analyses. Our data suggested that autologous ASC transplantation promoted ciliogenesis, consistent with previous reports. The CBF analysis revealed that motility of the cilia generated in the ASC group was comparable to that observed in the normal rat tracheal epithelium. Transport function in the ASC group was higher than that in the control group. These data suggested that autologous ASC transplantation increased ciliated cells in the reconstructed area without significantly disrupting cilia motility, thereby promoting transport function regeneration. Autologous ASC transplantation is expected to be beneficial in morphological and functional regeneration of tracheal epithelium. Anat Rec, 303:471-477, 2020. © 2019 American Association for Anatomy.

摘要

气管腔对于将空气输送到肺肺泡和产生声音至关重要。然而,患有严重气管狭窄和恶性肿瘤侵犯气管的患者通常需要进行气管切除术。最近,各种报道的用于气管重建的组织工程方法表明,重建区域的纤毛上皮再生以及管腔结构的保留是可能的。然而,只有少数研究报告了重建气管中的黏液纤毛运输功能。我们研究了自体脂肪组织来源的干细胞(ASC)移植后重建的大鼠气管上皮的黏液纤毛运输功能。大鼠 ASC 在培养中扩增,然后接种在胶原海绵中,该海绵用聚丙烯框架物理支撑。将 ASC 接种的胶原海绵移植到大鼠气管缺损处。然后,我们使用纤毛摆动频率(CBF)和微球运动分析来检查移植区域中产生的纤毛的运动和运输功能。我们的数据表明,自体 ASC 移植促进了纤毛发生,这与之前的报道一致。CBF 分析表明,ASC 组中产生的纤毛的运动与正常大鼠气管上皮中观察到的纤毛运动相当。ASC 组的运输功能高于对照组。这些数据表明,自体 ASC 移植增加了重建区域中的纤毛细胞,而不会明显破坏纤毛的运动,从而促进了运输功能的再生。自体 ASC 移植有望促进气管上皮的形态和功能再生。解剖学记录,303:471-477,2020. 2019 年美国解剖学会版权所有。

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