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使用三维基质诱导禽胚干细胞为纤毛细胞。

Induction of ciliated cells from avian embryonic stem cells using three-dimensional matrix.

机构信息

BioTechPlex Corporation, San Marcos, California 92078, USA.

出版信息

Tissue Eng Part C Methods. 2010 Oct;16(5):929-36. doi: 10.1089/ten.TEC.2009.0327.

Abstract

We have devised a simple three-dimensional (3D) tissue-culturing method to induce ciliogenesis from avian embryonic stem (ES) cells by using avian fertilized eggs. Unlike the previous reported techniques, this method does not require trypsinization, which would reduce the viability of the cells; it also does not require an air-liquid interface to induce ciliogenesis and to maintain the growth of the induced ciliated cells. ES cells seeded and attached on this collagen-coated chitosan 3D gel grew spontaneously and robustly. Following 2 weeks in culture with inhibition of embryoid body formation, cells with noticeable and vigorous beating cilia were observed. We measured the ciliary beat frequencies of these ES-differentiated ciliated cells for 40 days. These results were consistent with all reported measurements made for other species of ciliated cells, including human, from our previous study. These data imply that the cilia of these ES-derived ciliated cells, beating at their intrinsic basal autorhythmic rate, preserve the integrity of the regulatory mechanisms of ciliary beat frequency. In conclusion, we have shown that ES cells cultured in a 3D tissue-engineered scaffold is a promising approach for developing an in vitro cell model that closely mimics the in vivo ciliated cell natural milieu. This cell model can potentially be the source of ciliated cells for cell-based high-throughput screening and discovery of pulmonary drugs.

摘要

我们设计了一种简单的三维(3D)组织培养方法,通过使用禽胚卵从禽胚胎干细胞(ES 细胞)中诱导纤毛发生。与之前报道的技术不同,该方法不需要胰蛋白酶消化,这会降低细胞的活力;也不需要气液界面来诱导纤毛发生和维持诱导的纤毛细胞的生长。接种并附着在这种胶原蛋白涂层壳聚糖 3D 凝胶上的 ES 细胞自发而旺盛地生长。在抑制胚状体形成的培养 2 周后,观察到具有明显和有力搏动纤毛的细胞。我们测量了这些 ES 分化的纤毛细胞的纤毛摆动频率达 40 天。这些结果与我们之前的研究中从其他物种(包括人类)的纤毛细胞报告的所有测量结果一致。这些数据表明,这些 ES 来源的纤毛细胞的纤毛以其内在的基础自主节律性摆动,保留了纤毛摆动频率的调节机制的完整性。总之,我们已经表明,在 3D 组织工程支架中培养的 ES 细胞是开发体外细胞模型的一种很有前途的方法,该模型可模拟体内纤毛细胞的自然环境。这种细胞模型可能成为基于细胞的高通量筛选和发现肺部药物的纤毛细胞的来源。

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本文引用的文献

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Ciliated cells differentiated from mouse embryonic stem cells.
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