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对促成异位骨骼形成的祖细胞的鉴定。

Identification of progenitor cells that contribute to heterotopic skeletogenesis.

作者信息

Lounev Vitali Y, Ramachandran Rageshree, Wosczyna Michael N, Yamamoto Masakazu, Maidment Andrew D A, Shore Eileen M, Glaser David L, Goldhamer David J, Kaplan Frederick S

机构信息

Department of Orthopaedic Surgery, University of Pennsylvania School of Medicine, Hospital of the University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

J Bone Joint Surg Am. 2009 Mar 1;91(3):652-63. doi: 10.2106/JBJS.H.01177.

Abstract

BACKGROUND

Individuals who have fibrodysplasia ossificans progressiva develop an ectopic skeleton because of genetic dysregulation of bone morphogenetic protein (BMP) signaling in the presence of inflammatory triggers. The identity of progenitor cells that contribute to various stages of BMP-induced heterotopic ossification relevant to fibrodysplasia ossificans progressiva and related disorders is unknown. An understanding of the cellular basis of heterotopic ossification will aid in the development of targeted, cell-specific therapies for the treatment and prevention of heterotopic ossification.

METHODS

We used Cre/loxP lineage tracing methods in the mouse to identify cell lineages that contribute to all stages of heterotopic ossification. Specific cell populations were permanently labeled by crossing lineage-specific Cre mice with the Cre-dependent reporter mice R26R and R26R-EYFP. Two mouse models were used to induce heterotopic ossification: (1) intramuscular injection of BMP2/Matrigel and (2) cardiotoxin-induced skeletal muscle injury in transgenic mice that misexpress BMP4 at the neuromuscular junction. The contribution of labeled cells to fibroproliferative lesions, cartilage, and bone was evaluated histologically by light and fluorescence microscopy. The cell types evaluated as possible progenitors included skeletal muscle stem cells (MyoD-Cre), endothelium and endothelial precursors (Tie2-Cre), and vascular smooth muscle (Smooth Muscle Myosin Heavy Chain-Cre [SMMHC-Cre]).

RESULTS

Vascular smooth muscle cells did not contribute to any stage of heterotopic ossification in either mouse model. Despite the osteogenic response of cultured skeletal myoblasts to BMPs, skeletal muscle precursors in vivo contributed minimally to heterotopic ossification (<5%), and this contribution was not increased by cardiotoxin injection, which induces muscle regeneration and mobilizes muscle stem cells. In contrast, cells that expressed the vascular endothelial marker Tie2/Tek at some time in their developmental history contributed robustly to the fibroproliferative, chondrogenic, and osteogenic stages of the evolving heterotopic endochondral anlagen. Importantly, endothelial markers were expressed by cells at all stages of heterotopic ossification. Finally, muscle injury and associated inflammation were sufficient to trigger fibrodysplasia ossificans progressiva-like heterotopic ossification in a setting of chronically stimulated BMP activity.

CONCLUSIONS

Tie2-expressing progenitor cells, which are endothelial precursors, respond to an inflammatory trigger, differentiate through an endochondral pathway, contribute to every stage of the heterotopic endochondral anlagen, and form heterotopic bone in response to overactive BMP signaling in animal models of fibrodysplasia ossificans progressiva. Thus, the ectopic skeleton is not only supplied by a rich vasculature, but appears to be constructed in part by cells of vascular origin. Further, these data strongly suggest that dysregulation of the BMP signaling pathway and an inflammatory microenvironment are both required for the formation of fibrodysplasia ossificans progressiva-like lesions.

摘要

背景

进行性骨化性纤维发育不良患者由于在炎症触发因素存在的情况下骨形态发生蛋白(BMP)信号通路的基因失调而形成异位骨骼。在进行性骨化性纤维发育不良及相关疾病中,参与BMP诱导的异位骨化各个阶段的祖细胞身份尚不清楚。了解异位骨化的细胞基础将有助于开发针对性的、细胞特异性疗法来治疗和预防异位骨化。

方法

我们在小鼠中使用Cre/loxP谱系追踪方法来识别参与异位骨化各个阶段的细胞谱系。通过将谱系特异性Cre小鼠与Cre依赖性报告小鼠R26R和R26R-EYFP杂交,对特定细胞群体进行永久性标记。使用两种小鼠模型诱导异位骨化:(1)肌肉注射BMP2/基质胶;(2)在神经肌肉接头处错误表达BMP4的转基因小鼠中,用心脏毒素诱导骨骼肌损伤。通过光镜和荧光显微镜进行组织学评估标记细胞对纤维增生性病变、软骨和骨的贡献。被评估为可能祖细胞的细胞类型包括骨骼肌干细胞(MyoD-Cre)、内皮细胞和内皮前体细胞(Tie2-Cre)以及血管平滑肌(平滑肌肌球蛋白重链-Cre [SMMHC-Cre])。

结果

在两种小鼠模型中,血管平滑肌细胞均未参与异位骨化的任何阶段。尽管培养的骨骼肌成肌细胞对BMP有骨生成反应,但体内骨骼肌前体细胞对异位骨化的贡献极小(<5%),并且心脏毒素注射并未增加这种贡献,心脏毒素注射可诱导肌肉再生并动员肌肉干细胞。相反,在其发育过程中的某个时间表达血管内皮标志物Tie2/Tek的细胞对正在形成的异位软骨内骨原基的纤维增生、软骨形成和成骨阶段有显著贡献。重要的是,异位骨化各个阶段的细胞均表达内皮标志物。最后,在慢性刺激的BMP活性背景下,肌肉损伤和相关炎症足以触发进行性骨化性纤维发育不良样异位骨化。

结论

表达Tie2的祖细胞即内皮前体细胞,对炎症触发因素产生反应,通过软骨内途径分化,参与异位软骨内骨原基的各个阶段,并在进行性骨化性纤维发育不良动物模型中因BMP信号过度活跃而形成异位骨。因此,异位骨骼不仅由丰富的脉管系统提供营养,而且似乎部分由血管起源的细胞构建。此外,这些数据强烈表明BMP信号通路失调和炎症微环境对于进行性骨化性纤维发育不良样病变的形成均是必需的。

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