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Real-Time Vital Mineralization Detection and Quantification during In Vitro Osteoblast Differentiation

机译:体外成骨细胞分化过程中的实时重要矿化检测和定量

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Background In vitro studies of osteoblasts traditionally use Alizarin Red as a golden standard for the detection and quantification of mineralization, which is a marker of osteoblast differentiation. However, this method presents a number of drawbacks, including the need to fix cells, which prevents additional measurements. Years ago, Calcein Green was proposed as an alternative to Alizarin Red, with the advantage to be directly detectable in live cells. However, the protocol was still time-consuming, and it never managed to replace Alizarin Red. Now, with more efficient imaging systems, we present a protocol using Calcein Green which provides significant advantages. Results The osteoblast mineralization was efficiently detected and accurately quantified in real time at any desired time point across the entire differentiation period, with a minimum time expenditure. Conclusions The combination of Calcein Green and the real-time imaging station IncuCyte ZOOM can efficiently replace the Alizarin Red method, and allows very accurate and time-saving assessment of the level and the dynamics of matrix mineralization.
机译:背景技术成骨细胞的体外研究传统上使用茜素红作为检测和定量矿化的金标准,矿化是成骨细胞分化的标志。然而,这种方法存在许多缺点,包括需要固定细胞,这会阻止额外的测量。多年前,人们建议将钙黄绿素(Calcein Green)替代茜素红(Alizarin Red),其优点是可以在活细胞中直接检测到。但是,该协议仍然很耗时,并且从未设法取代Alizarin Red。现在,借助更高效的成像系统,我们提出了使用Calcein Green的协议,该协议具有明显的优势。结果在整个分化期间的任何所需时间点,都可以有效地实时检测并实时准确地定量成骨细胞的矿化作用,而花费的时间最少。结论钙黄绿绿和实时成像站IncuCyte ZOOM的组合可以有效地替代茜素红方法,并且可以非常准确,省时地评估基质矿化的水平和动力学。

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