Are Cementoblasts a Subpopulation of Osteoblasts or a Unique Phenotype?

成牙骨质细胞 牙骨质 牙周纤维 胶结作用 细胞生物学 再生(生物学) 牙槽 牙骨质 鱼腥草素骨 比格里坎 祖细胞 化学 解剖 生物 细胞外基质 干细胞 病理 牙科 医学 多糖 蛋白多糖 骨钙素 牙本质 生物化学 碱性磷酸酶
作者
Dieter D. Bosshardt
出处
期刊:Journal of Dental Research [SAGE]
卷期号:84 (5): 390-406 被引量:310
标识
DOI:10.1177/154405910508400501
摘要

Experimental studies have shown a great potential for periodontal regeneration. The limitations of periodontal regeneration largely depend on the regenerative potential at the root surface. Cellular intrinsic fiber cementum (CIFC), so-called bone-like tissue, may form instead of the desired acellular extrinsic fiber cementum (AEFC), and the interfacial tissue bonding may be weak. The periodontal ligament harbors progenitor cells that can differentiate into periodontal ligament fibroblasts, osteoblasts, and cementoblasts, but their precise location is unknown. It is also not known whether osteoblasts and cementoblasts arise from a common precursor cell line, or whether distinct precursor cell lines exist. Thus, there is limited knowledge about how cell diversity evolves in the space between the developing root and the alveolar bone. This review supports the hypothesis that AEFC is a unique tissue, while CIFC and bone share some similarities. Morphologically, functionally, and biochemically, however, CIFC is distinctly different from any bone type. There are several lines of evidence to propose that cementoblasts that produce both AEFC and CIFC are unique phenotypes that are unrelated to osteoblasts. Cementum attachment protein appears to be cementum-specific, and the expression of two proteoglycans, fibromodulin and lumican, appears to be stronger in CIFC than in bone. A theory is presented that may help explain how cell diversity evolves in the periodontal ligament. It proposes that Hertwig's epithelial root sheath and cells derived from it play an essential role in the development and maintenance of the periodontium. The role of enamel matrix proteins in cementoblast and osteoblast differentiation and their potential use for tissue engineering are discussed.
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