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Development of a Compact Microbubble Generator and Its Usefulness for Three-Dimensional Osteoblastic Cell Culture

机译:紧凑型微气泡发生器的开发及其在三维成骨细胞培养中的实用性

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References(32) Three-dimensional cell culture is widely used for challenging to biomedical tissue reconstruction. A mass of the reconstructed tissue has been limited because of difficulty in supplying sufficient amount of oxygen deep into the densely cultured cells. Although many methods are available for supplying oxygen, we focused on utilizing microbubbles. The aims of the present study were therefore to develop a microbubble generator suitable for cell culture, and to examine its effects on cellular activity. A new microbubble generator was designed so that it could be autoclaved and settled in a culture vessel with medium. Filtered clean air was introduced to the generator, mechanically sheared by a rotating disk, and then supplied into the culture vessel. This method significantly elevated the dissolved oxygen level by approximately 1.5mg/l. Microscopic measurement showed that 66.8% of the bubbles was distributed within 5-20μm in diameter, meaning that the generated bubbles had a good morphological feature of microbubbles. With and without microbubbles, gel-embedded MC3T3-E1 osteoblastic cells were three-dimensionally incubated for 3 days. Cell viability assay showed that the introduction of microbubbles increased necrotic cell death, which might be due to hyperoxia as well as fluid shearing force. However, relative alkaline phosphatase activity was significantly enhanced by microbubbles. Although further examination is needed, microbubbles would have a potential to enhance osteoblastic cell activity, and could be utilized for effective aeration in dense three-dimensional cell culture.
机译:参考文献(32)三维细胞培养被广泛用于挑战生物医学组织的重建。由于难以向致密培养的细胞深处供应足够量的氧气,因此限制了重建组织的质量。尽管提供氧气的方法很多,但我们专注于利用微气泡。因此,本研究的目的是开发一种适用于细胞培养的微泡发生器,并研究其对细胞活性的影响。设计了一种新的微气泡发生器,以便可以对其进行高压灭菌,并放置在带有培养基的培养容器中。将过滤后的清洁空气引入发生器,由转盘机械剪切,然后供应到培养容器中。该方法将溶解氧水平显着提高了约1.5mg / l。显微测量表明,有66.8%的气泡分布在5-20μm的直径范围内,这意味着产生的气泡具有良好的微气泡形态特征。有或没有微泡,将凝胶包埋的MC3T3-E1成骨细胞进行三维培养3天。细胞活力分析表明,微泡的引入增加了坏死细胞的死亡,这可能是由于高氧血症和液体剪切力所致。但是,微泡显着增强了相对碱性磷酸酶的活性。尽管需要进一步检查,但微泡具有增强成骨细胞活性的潜力,可用于在密集三维细胞培养中进行有效通气。

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