Suppr超能文献

用于旋转壁式生物反应器的原代关节软骨细胞的最佳三维培养。

Optimal 3D culture of primary articular chondrocytes for use in the rotating wall vessel bioreactor.

作者信息

Mellor Liliana F, Baker Travis L, Brown Raquel J, Catlin Lindsey W, Oxford Julia Thom

机构信息

Boise State University, Boise, ID, USA.

出版信息

Aviat Space Environ Med. 2014 Aug;85(8):798-804. doi: 10.3357/ASEM.3905.2014.

Abstract

INTRODUCTION

Reliable culturing methods for primary articular chondrocytes are essential to study the effects of loading and unloading on joint tissue at the cellular level. Due to the limited proliferation capacity of primary chondrocytes and their tendency to dedifferentiate in conventional culture conditions, long-term culturing conditions of primary chondrocytes can be challenging. The goal of this study was to develop a suspension culturing technique that not only would retain the cellular morphology, but also maintain the gene expression characteristics of primary articular chondrocytes.

METHODS

Three-dimensional culturing methods were compared and optimized for primary articular chondrocytes in the rotating wall vessel bioreactor, which changes the mechanical culture conditions to provide a form of suspension culture optimized for low shear and turbulence. We performed gene expression analysis and morphological characterization of cells cultured in alginate beads, Cytopore-2 microcarriers, primary monolayer culture, and passaged monolayer cultures using reverse transcription-PCR and laser scanning confocal microscopy.

RESULTS

Primary chondrocytes grown on Cytopore-2 microcarriers maintained the phenotypical morphology and gene expression pattern observed in primary bovine articular chondrocytes, and retained these characteristics for up to 9 d.

DISCUSSION

Our results provide a novel and alternative culturing technique for primary chondrocytes suitable for studies that require suspension such as those using the rotating wall vessel bioreactor. In addition, we provide an alternative culturing technique for primary chondrocytes that can impact future mechanistic studies of osteoarthritis progression, treatments for cartilage damage and repair, and cartilage tissue engineering.

摘要

引言

可靠的原代关节软骨细胞培养方法对于在细胞水平研究加载和卸载对关节组织的影响至关重要。由于原代软骨细胞的增殖能力有限,且在传统培养条件下有去分化的倾向,原代软骨细胞的长期培养条件可能具有挑战性。本研究的目的是开发一种悬浮培养技术,该技术不仅能保留细胞形态,还能维持原代关节软骨细胞的基因表达特征。

方法

对旋转壁式生物反应器中原代关节软骨细胞的三维培养方法进行了比较和优化,该反应器改变了机械培养条件,以提供一种针对低剪切力和湍流优化的悬浮培养形式。我们使用逆转录聚合酶链反应和激光扫描共聚焦显微镜对在藻酸盐珠、Cytopore-2微载体、原代单层培养和传代单层培养中培养的细胞进行了基因表达分析和形态学表征。

结果

在Cytopore-2微载体上生长的原代软骨细胞保持了在原代牛关节软骨细胞中观察到的表型形态和基因表达模式,并在长达9天的时间内保留了这些特征。

讨论

我们的结果为原代软骨细胞提供了一种新颖的替代培养技术,适用于需要悬浮培养的研究,如使用旋转壁式生物反应器的研究。此外,我们为原代软骨细胞提供了一种替代培养技术,这可能会影响骨关节炎进展、软骨损伤修复治疗和软骨组织工程的未来机制研究。

相似文献

引用本文的文献

5
Fabricating the cartilage: recent achievements.软骨制造:近期成果
Cytotechnology. 2023 Aug;75(4):269-292. doi: 10.1007/s10616-023-00582-2. Epub 2023 May 26.

本文引用的文献

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验