Chondrocytes Directly Transform into Bone Cells in Mandibular Condyle Growth

软骨内骨化 软骨 骨细胞 阿格里坎 软骨细胞 解剖 髁突 化学 病理 细胞生物学 生物 骨关节炎 医学 替代医学 关节软骨
作者
Yan Jing,Xin Zhou,Xianglong Han,Junjun Jing,Klaus von der Mark,J. Wang,Benoît De Crombrugghe,Robert J. Hinton,Jian Q. Feng
出处
期刊:Journal of Dental Research [SAGE Publishing]
卷期号:94 (12): 1668-1675 被引量:115
标识
DOI:10.1177/0022034515598135
摘要

For decades, it has been widely accepted that hypertrophic chondrocytes undergo apoptosis prior to endochondral bone formation. However, very recent studies in long bone suggest that chondrocytes can directly transform into bone cells. Our initial in vivo characterization of condylar hypertrophic chondrocytes revealed modest numbers of apoptotic cells but high levels of antiapoptotic Bcl-2 expression, some dividing cells, and clear alkaline phosphatase activity (early bone marker). Ex vivo culture of newborn condylar cartilage on a chick chorioallantoic membrane showed that after 5 d the cells on the periphery of the explants had begun to express Col1 (bone marker). The cartilage-specific cell lineage–tracing approach in triple mice containing Rosa 26 tdTomato (tracing marker), 2.3 Col1 GFP (bone cell marker), and aggrecan Cre ERT2 (onetime tamoxifen induced) or Col10-Cre (activated from E14.5 throughout adult stage) demonstrated the direct transformation of chondrocytes into bone cells in vivo. This transformation was initiated at the inferior portion of the condylar cartilage, in contrast to the initial ossification site in long bone, which is in the center. Quantitative data from the Col10-Cre compound mice showed that hypertrophic chondrocytes contributed to ~80% of bone cells in subchondral bone, ~70% in a somewhat more inferior region, and ~40% in the most inferior part of the condylar neck ( n = 4, P < 0.01 for differences among regions). This multipronged approach clearly demonstrates that a majority of chondrocytes in the fibrocartilaginous condylar cartilage, similar to hyaline cartilage in long bones, directly transform into bone cells during endochondral bone formation. Moreover, ossification is initiated from the inferior portion of mandibular condylar cartilage with expansion in one direction.
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