4.5 Article

BMP9-initiated osteogenic/odontogenic differentiation of mouse tooth germ mesenchymal cells (TGMCS) requires Wnt/β-catenin signalling activity

期刊

JOURNAL OF CELLULAR AND MOLECULAR MEDICINE
卷 25, 期 5, 页码 2666-2678

出版社

WILEY
DOI: 10.1111/jcmm.16293

关键词

BMP9; canonical Wnt/beta-catenin signalling; osteo/odontogenesis; tooth germ mesenchyme cells; tooth regeneration

资金

  1. Mabel Green Myers Research Endowment Fund
  2. Chongqing Postdoctoral Science Foundation [cstc2019jcyj-bshX0018]
  3. University of Chicago Orthopaedics Alumni Fund
  4. National Natural Science Foundation of China [31301221, 31571510, 31871464, 81870758]
  5. University of Chicago Cancer Center Support Grant [P30CA014599]
  6. National Center for Advancing Translational Sciences of the National Institutes of Health [UL1 TR000430]
  7. Chongqing Municipal Commission on Science Technology [cstc2017jcyjAX0434]
  8. Chongqing Yuzhong District Commission on ScienceTechnology [20160118]

向作者/读者索取更多资源

The study showed that Wnt/beta-catenin signaling plays a crucial role in BMP9-induced osteogenic/odontogenic differentiation of TGMCs, contributing to the formation of teeth from tooth germ mesenchymal cells. The reversibly immortalized iTGMCs retained their osteogenic/odontogenic ability upon BMP9 stimulation, but this process required the involvement of canonical Wnt signaling both in vitro and in vivo.
Teeth arise from the tooth germ through sequential and reciprocal interactions between immature epithelium and mesenchyme during development. However, the detailed mechanism underlying tooth development from tooth germ mesenchymal cells (TGMCs) remains to be fully understood. Here, we investigate the role of Wnt/beta-catenin signalling in BMP9-induced osteogenic/odontogenic differentiation of TGMCs. We first established the reversibly immortalized TGMCs (iTGMCs) derived from young mouse mandibular molar tooth germs using a retroviral vector expressing SV40 T antigen flanked with the FRT sites. We demonstrated that BMP9 effectively induced expression of osteogenic markers alkaline phosphatase, collagen A1 and osteocalcin in iTGMCs, as well as in vitro matrix mineralization, which could be remarkably blunted by knocking down beta-catenin expression. In vivo implantation assay revealed that while BMP9-stimulated iTGMCs induced robust formation of ectopic bone, knocking down beta-catenin expression in iTGMCs remarkably diminished BMP9-initiated osteogenic/odontogenic differentiation potential of these cells. Taken together, these discoveries strongly demonstrate that reversibly immortalized iTGMCs retained osteogenic/odontogenic ability upon BMP9 stimulation, but this process required the participation of canonical Wnt signalling both in vitro and in vivo. Therefore, BMP9 has a potential to be applied as an efficacious bio-factor in osteo/odontogenic regeneration and tooth engineering. Furthermore, the iTGMCs may serve as an important resource for translational studies in tooth tissue engineering.

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