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

机译:用于优化骨细胞培养和重塑在芯片平台中的细胞考虑因素

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摘要

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).
机译:我们的实验室已开发出用于骨骼重塑的实验室平台,使骨细胞长期培养至7周,并作为朝上芯片系统的基础。 在此,我们优化了骨质细胞,骨细胞,骨细胞和骨细胞的培养方案,并对定量骨形成和吸收进行功能活性测定。 我们分析了细胞播种密度,喂养时间表和时间,作为优化培养方案的基础。 此外,我们解决了在聚二甲基硅氧烷芯片内的延长培养期间的无菌,细胞毒性和渗漏的担忧。 该系统提供了定量机械刺激的骨细胞对骨重塑的可溶作用的方法(形成/吸收)。

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