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A Novel Reliable and Efficient Procedure for Purification of Mature Osteoclasts Allowing Functional Assays in Mouse Cells

机译:纯化成熟破骨细胞的新方法可靠有效可在小鼠细胞中进行功能测定

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摘要

Osteoclasts (OCLs) are multinucleated phagocytes of monocytic origin responsible for physiological and pathological bone resorption including aging processes, chronic inflammation and cancer. Besides bone resorption, they are also involved in the modulation of immune responses and the regulation of hematopoietic niches. Accordingly, OCLs are the subject of an increasing number of studies. Due to their rarity and the difficulty to isolate them directly ex vivo, analyses on OCLs are usually performed on in vitro differentiated cells. In this state, however, OCLs represent a minority of differentiated cells. Since up to date a reliable purification procedure is still lacking for mature OCLs, all cells present in the culture are analyzed collectively to answer OCL-specific questions. With the development of in-depth transcriptomic and proteomic analyses, such global analyses on unsorted cells can induce severe bias effects in further results. In addition, for instance, analysis on OCL immune function requires working on purified OCLs to avoid contamination effects of monocytic precursors that may persist during the culture. This clearly highlights the need for a reliable OCL purification procedure. Here, we describe a novel and reliable method to sort OCLs based on cell multinucleation while preserving cell viability. Using this method, we successfully purified multinucleated murine cells. We showed that they expressed high levels of OCL markers and retained a high capacity of bone resorption, demonstrating that these are mature OCLs. The same approach was equally applied for the purification of human mature OCLs. Comparison of purified OCLs with mononucleated cells or unsorted cells revealed significant differences in the expression of OCL-specific markers at RNA and/or protein level. This exemplifies that substantially better outcomes for OCLs are achieved after the exclusion of mononucleated cells. Our results clearly demonstrate that the in here presented procedure for the analysis and sorting of pure OCLs represents a novel, robust and reliable method for the detailed examination of bona fide mature OCLs in a range that was previously impossible. Noteworthy, this procedure will open new perspectives into the biology of osteoclasts and osteoclast-related diseases.
机译:破骨细胞(OCL)是单核细胞来源的多核吞噬细胞,负责生理和病理性骨吸收,包括衰老过程,慢性炎症和癌症。除了骨骼吸收外,它们还参与免疫应答的调节和造血ni的调节。因此,OCL是越来越多的研究主题。由于它们的稀有性和难以直接离体分离的困难,因此通常在体外分化的细胞上进行OCL的分析。但是,在这种状态下,OCL代表了少数分化细胞。由于最新的成熟OCL仍缺乏可靠的纯化程序,因此对培养物中存在的所有细胞进行集中分析以回答OCL特有的问题。随着深入的转录组学和蛋白质组学分析的发展,对未分类细胞的这种整体分析可在进一步的结果中引起严重的偏倚效应。另外,例如,对OCL免疫功能的分析需要对纯化的OCL进行操作,以避免培养过程中可能持续存在的单核细胞前体的污染作用。这显然突出了对可靠的OCL纯化程序的需求。在这里,我们描述了一种新颖且可靠的方法,可以在保持细胞活力的同时,基于细胞多核化对OCL进行分类。使用这种方法,我们成功地纯化了多核鼠细胞。我们表明,它们表达高水平的OCL标记物并保留了高的骨吸收能力,表明它们是成熟的OCL。同样的方法同样适用于纯化人类成熟的OCL。将纯化的OCL与单核细胞或未分选的细胞进行比较,发现在RNA和/或蛋白质水平上OCL特异性标记的表达存在显着差异。这举例说明,排除单核细胞后,OCL的效果明显好于其他。我们的结果清楚地表明,此处介绍的用于分析和分选纯OCL的程序代表了一种新颖,强大且可靠的方法,可以在以前不可能的范围内详细检查善意的成熟OCL。值得注意的是,该程序将为破骨细胞和破骨细胞相关疾病的生物学开辟新的视野。

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