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Publication : Chondrocyte-Specific Knockout of TSC-1 Leads to Congenital Spinal Deformity in Mice.

First Author  Yang C Year  2017
Journal  Biomed Res Int Volume  2017
Pages  8215805 PubMed ID  28523278
Mgi Jnum  J:273713 Mgi Id  MGI:6282792
Doi  10.1155/2017/8215805 Citation  Yang C, et al. (2017) Chondrocyte-Specific Knockout of TSC-1 Leads to Congenital Spinal Deformity in Mice. Biomed Res Int 2017:8215805
abstractText  Congenital spinal deformity is the most severe clinical orthopedic issue worldwide. Among all the pathological processes of congenital spinal deformity, the imbalance of endochondral ossification is considered to be the most important developmental cause of spinal dysplasia. We established chondrocyte-specific TSC-1 knockout (KO) mice to overactivate the energy metabolic component, mammalian target of rapamycin complex 1 (mTORC1), and measured the spinal development by general, imaging, histological, and Western-blot assessments. In addition to skeletal dysplasia, the KO mice displayed severe congenital spinal deformity and significant intervertebral disc changes. This study suggests that, in the process of endochondral ossification, excessive activation of mTORC1 signaling in chondrocytes induces obvious spinal deformity, and the chondrocytes may be the cell type responsible for congenital spinal deformity.
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