4.8 Article

Canonical Wnt signaling acts synergistically on BMP9-induced osteo/odontoblastic differentiation of stem cells of dental apical papilla (SCAPs)

期刊

BIOMATERIALS
卷 39, 期 -, 页码 145-154

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2014.11.007

关键词

Dental stem cells; Stem cells of apical papilla; BMP signaling; Wnt/beta-catenin signaling; Odontoblastic differentiation; Dontogenesis

资金

  1. National Institutes of Health [AT004418, AR50142, AR054381]
  2. Natural Science Foundation of China [81271183, 81301551]
  3. Chongqing Municipal Commissions on Education, and Science Technology [cstc2014jcyjA10010, KJ130303, cstc2013jcyjA0093]
  4. Chongqing Innovation Team Building at Higher Education Institutions Program
  5. Chongqing Yubei District Commission on Science Technology [15]
  6. University of Chicago Core Facility Subsidy grant from the National Center for Advancing Translational Sciences (NCATS) of the National Institutes of Health [UL1 TR000430]
  7. NATIONAL CENTER FOR ADVANCING TRANSLATIONAL SCIENCES [UL1TR000430] Funding Source: NIH RePORTER
  8. NATIONAL CENTER FOR COMPLEMENTARY & ALTERNATIVE MEDICINE [P01AT004418] Funding Source: NIH RePORTER
  9. NATIONAL INSTITUTE OF ARTHRITIS AND MUSCULOSKELETAL AND SKIN DISEASES [K08AR054381, K08AR050142] Funding Source: NIH RePORTER

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Dental pulp/dentin regeneration using dental stem cells combined with odontogenic factors may offer great promise to treat and/or prevent premature tooth loss. Here, we investigate if BMP9 and Wnt/beta-catenin act synergistically on odontogenic differentiation. Using the immortalized SCAPs (iSCAPs) isolated from mouse apical papilla tissue, we demonstrate that Wnt3A effectively induces early osteogenic marker alkaline phosphatase (ALP) in iSCAPs, which is reduced by beta-catenin knockdown. While Wnt3A and BMP9 enhance each other's ability to induce ALP activity in iSCAPs, silencing beta-catenin significantly diminishes BMP9-induced osteo/odontogenic differentiation. Furthermore, silencing beta-catenin reduces BMP9-induced expression of osteocalcin and osteopontin and in vitro matrix mineralization of iSCAPs. In vivo stem cell implantation assay reveals that while BMP9-transduced iSCAPs induce robust ectopic bone formation, iSCAPs stimulated with both BMP9 and Wnt3A exhibit more mature and highly mineralized trabecular bone formation. However, knockdown of beta-catenin in iSCAPs significantly diminishes BMP9 or BMP9/Wnt3A-induced ectopic bone formation in vivo. Thus, our results strongly suggest that beta-catenin may play an important role in BMP9-induced osteo/ondontogenic signaling and that BMP9 and Wnt3A may act synergistically to induce osteo/odontoblastic differentiation of iSCAPs. It's conceivable that BMP9 and/or Wnt3A may be explored as efficacious biofactors for odontogenic regeneration and tooth engineering. (C) 2014 The Authors. Published by Elsevier Ltd.

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