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人集落形成单位-粒细胞巨噬细胞(CFU-GM)的破骨细胞潜能:粒细胞巨噬细胞集落刺激因子(GM-CSF)的双相效应

Osteoclastic potential of human CFU-GM: biphasic effect of GM-CSF.

作者信息

Hodge Jason M, Kirkland Mark A, Aitken Cathy J, Waugh Caryll M, Myers Damian E, Lopez Carolina M, Adams Brendan E, Nicholson Geoffrey C

机构信息

Department of Clinical and Biomedical Sciences, Barwon Health, The Geelong Hospital, University of Melbourne, Geelong, Victoria, Australia.

出版信息

J Bone Miner Res. 2004 Feb;19(2):190-9. doi: 10.1359/JBMR.0301232. Epub 2003 Dec 16.

Abstract

UNLABELLED

Human osteoclasts can be efficiently generated in vitro from cord blood mononuclear cells and derived CFU-GM colonies. However, CFU-M colonies are poorly osteoclastogenic. Short-term (2-48 h) treatment with GM-CSF stimulates osteoclast formation by proliferating precursors, whereas longer exposure favors dendritic cell formation.

INTRODUCTION

Osteoclasts (OC) differentiate from cells of the myelomonocytic lineage under the influence of macrophage-colony stimulating factor (M-CSF) and RANKL. However, cells of this lineage can also differentiate to macrophages and dendritic cells (DC) depending on the cytokine environment. The aims of this study were to develop an efficient human osteoclastogenesis model and to investigate the roles of granulocyte macrophage-colony stimulating factor (GM-CSF) and M-CSF in human OC differentiation.

MATERIALS AND METHODS

A human osteoclastogenesis model, using as precursors colony forming unit-granulocyte macrophage (CFU-GM) colonies generated from umbilical cord mononuclear cells cultured in methylcellulose with GM-CSF, interleukin (IL)-3 and stem cell factor (SCF), has been developed. CFU-GM, colony forming unit-macrophage (CFU-M), or mixed colonies were cultured on dentine with soluble RANKL (sRANKL) and human M-CSF with and without GM-CSF. Major endpoints were OC number, dentine resorption, and CD1a+ DC clusters.

RESULTS

Osteoclast generation from CFU-GM and mixed colonies treated with M-CSF and sRANKL for 7-14 days was highly efficient, but CFU-M colonies were poorly osteoclastogenic under these conditions. Pretreatment of precursors with M-CSF for 7 or 14 days maintained the precursor pool, but OCs were smaller and resorption was reduced. The effect of GM-CSF treatment was biphasic, depending on the timing and duration of exposure. Short-term treatment (2-48 h) at the beginning of the culture stimulated cell proliferation and enhanced OC formation up to 100%, independent of sRANKL. Longer-term GM-CSF treatment in the presence of sRANKL, however, inhibited OC generation with the formation of extensive CD1a+ DC clusters, accompanied by downregulation of c-Fos mRNA. Delaying the addition of GM-CSF resulted in progressively less inhibition of osteoclastogenesis.

CONCLUSIONS

Human CFU-GM, but not CFU-M, progenitors have high osteoclastogenic potential. GM-CSF plays an important role in osteoclastogenesis and has a biphasic effect: Short-term treatment potentiates OC differentiation by proliferating precursors, but persistent exposure favors DC formation.

摘要

未标记

人破骨细胞可从脐血单个核细胞和衍生的CFU - GM集落中在体外高效生成。然而,CFU - M集落的破骨细胞生成能力较差。用GM - CSF进行短期(2 - 48小时)处理可通过增殖前体细胞刺激破骨细胞形成,而较长时间的暴露则有利于树突状细胞形成。

引言

破骨细胞(OC)在巨噬细胞集落刺激因子(M - CSF)和RANKL的影响下从骨髓单核细胞系细胞分化而来。然而,该细胞系的细胞也可根据细胞因子环境分化为巨噬细胞和树突状细胞(DC)。本研究的目的是建立一个高效的人破骨细胞生成模型,并研究粒细胞巨噬细胞集落刺激因子(GM - CSF)和M - CSF在人OC分化中的作用。

材料与方法

已建立一种人破骨细胞生成模型,该模型以前体为在含有GM - CSF、白细胞介素(IL)- 3和干细胞因子(SCF)的甲基纤维素中培养的脐血单个核细胞产生的集落形成单位 - 粒细胞巨噬细胞(CFU - GM)集落。将CFU - GM、集落形成单位 - 巨噬细胞(CFU - M)或混合集落在含有可溶性RANKL(sRANKL)和人M - CSF的牙本质上培养,添加或不添加GM - CSF。主要终点指标为破骨细胞数量、牙本质吸收和CD1a + DC簇。

结果

用M - CSF和sRANKL处理7 - 14天的CFU - GM和混合集落产生破骨细胞的效率很高,但在这些条件下CFU - M集落的破骨细胞生成能力较差。用M - CSF对前体细胞进行7天或14天的预处理可维持前体细胞池,但破骨细胞较小且吸收减少。GM - CSF处理的效果是双相的,取决于暴露的时间和持续时间。培养开始时的短期处理(2 - 48小时)刺激细胞增殖并使破骨细胞形成增加达100%,与sRANKL无关。然而,在存在sRANKL的情况下进行长期GM - CSF处理会抑制破骨细胞生成,并形成大量CD1a + DC簇,同时伴有c - Fos mRNA的下调。延迟添加GM - CSF会导致对破骨细胞生成的抑制逐渐减少。

结论

人CFU - GM祖细胞而非CFU - M祖细胞具有高破骨细胞生成潜力。GM - CSF在破骨细胞生成中起重要作用,且具有双相效应:短期处理通过增殖前体细胞增强破骨细胞分化,但持续暴露有利于树突状细胞形成。

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