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细胞因素对优化芯片上实验室中骨细胞培养和重塑的影响。

Cellular considerations for optimizing bone cell culture and remodeling in a lab-on-a-chip platform.

机构信息

Department of Biomedical Engineering, The University of Akron, Akron, OH 44325, USA.

出版信息

Biotechniques. 2020 May;68(5):263-269. doi: 10.2144/btn-2019-0115. Epub 2020 Mar 9.

Abstract

Our lab has developed a lab-on-a-chip platform for bone remodeling that enables long-term culturing of bone cells out to 7 weeks and serves as a foundation toward a multicellular organ-on-a-chip system. Here, we optimized culturing protocols for osteoblasts, osteoclasts and osteocytes within the lab-on-a-chip and performed functional activity assays for quantifying bone formation and resorption. We analyzed cell seeding densities, feeding schedules and time in culture as a basis for optimizing culturing protocols. Further, we addressed concerns of sterility, cytotoxicity and leakage during the extended culture period within the polydimethylsiloxane chip. This system provides a method for quantifying the soluble effects of mechanically stimulated osteocytes on bone remodeling (formation/resorption).

摘要

我们的实验室开发了一种用于骨重塑的芯片实验室平台,可实现骨细胞的长期培养,最长可达 7 周,并为开发多细胞器官芯片系统奠定了基础。在这里,我们对芯片内的成骨细胞、破骨细胞和成骨细胞进行了培养方案的优化,并进行了功能活性测定以定量测定骨形成和吸收。我们分析了细胞接种密度、饲养方案和培养时间,以此作为优化培养方案的基础。此外,我们还解决了在聚二甲基硅氧烷芯片中进行长时间培养时的无菌性、细胞毒性和泄漏问题。该系统提供了一种方法来定量评估机械刺激的成骨细胞对骨重塑(形成/吸收)的可溶性影响。

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