## Abstract Endochondral bone formation can take place in the embryo, during fracture healing, or in postnatal animals after induction by implanted demineralized bone matrix. This matrixβinduced bone formation recapitulates the embryonic sequence of bone formation morphologically and biochemically.
Phosphate regulates embryonic endochondral bone development
β Scribed by Alena A. Zalutskaya; Megan K. Cox; Marie B. Demay
- Book ID
- 102301588
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 288 KB
- Volume
- 108
- Category
- Article
- ISSN
- 0730-2312
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β¦ Synopsis
Abstract
Phosphate is required for terminal differentiation of hypertrophic chondrocytes during postnatal growth plate maturation. In vitro models of chondrocyte differentiation demonstrate that 7βmM phosphate, a concentration analogous to that of the late gestational fetus, activates the mitochondrial apoptotic pathway in hypertrophic chondrocytes. This raises the question as to whether extracellular phosphate modulates chondrocyte differentiation and apoptosis during embryonic endochondral bone formation. To address this question, we performed investigations in the mouse metatarsal culture model that recapitulates in vivo bone development. Metatarsals were cultured for 4, 8, and 12 days with 1.25 and 7βmM phosphate. Metatarsals cultured with 7βmM phosphate showed a decrease in proliferation compared to those cultured in 1.25βmM phosphate. This decrease in proliferation was accompanied by an early enhancement in hypertrophic chondrocyte differentiation, associated with an increase in FGF18 expression. By 8 days in culture, an increase caspaseβ9 activation and apoptosis of hypertrophic chondrocytes was observed in the metatarsals cultured in 7βmM phosphate. Immunohistochemical analyses of embryonic bones demonstrated activation of caspaseβ9 in hypertrophic chondrocytes, associated with vascular invasion. Thus, these investigations demonstrate that phosphate promotes chondrocyte differentiation during embryonic development and implicate a physiological role for phosphate activation of the mitochondrial apoptotic pathway during embryonic endochondral bone formation. J. Cell. Biochem. 108: 668β674, 2009. Β© 2009 WileyβLiss, Inc.
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