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      The Role of ORAI1 in the Odontogenic Differentiation of Human Dental Pulp Stem Cells

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          Abstract

          Pulp capping, or placing dental materials directly onto the vital pulp tissues of affected teeth, is a dental procedure that aims to regenerate reparative dentin. Several pulp capping materials are clinically being used, and calcium ion (Ca 2+) released from these materials is known to mediate reparative dentin formation. ORAI1 is an essential pore subunit of store-operated Ca 2+ entry (SOCE), which is a major Ca 2+ influx pathway in most nonexcitable cells. Here, we evaluated the role of ORAI1 in mediating the odontogenic differentiation and mineralization of dental pulp stem cells (DPSCs). During the odontogenic differentiation of DPSCs, the expression of ORAI1 increased in a time-dependent manner. DPSCs knocked down with ORAI1 shRNA (DPSC/ORAI1sh) or overexpressed with dominant negative mutant ORAI1 E106Q (DPSC/E106Q) exhibited the inhibition of Ca 2+ influx and suppression of odontogenic differentiation and mineralization as demonstrated by alkaline phosphatase (ALP) activity/staining as well as alizarin red S staining when compared with DPSCs of their respective control groups (DPSC/CTLsh and DPSC/CTL). The gene expression for odontogenic differentiation markers such as osteocalcin, bone sialoprotein, and dentin matrix protein 1 ( DMP1) was also suppressed. When DPSC/CTL or DPSC/E106Q cells were subcutaneously transplanted into nude mice, DPSC/CTL cells induced mineralized tissue formation with significant increases in ALP and DMP1 staining in vivo, whereas DPSC/E106Q cells did not. Collectively, our data showed that ORAI1 plays critical roles in the odontogenic differentiation and mineralization of DPSCs by regulating Ca 2+ influx and that ORAI1 may be a therapeutic target to enhance reparative dentin formation.

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          Author and article information

          Journal
          J Dent Res
          J. Dent. Res
          JDR
          spjdr
          Journal of Dental Research
          SAGE Publications (Sage CA: Los Angeles, CA )
          0022-0345
          1544-0591
          24 September 2015
          November 2015
          1 November 2016
          : 94
          : 11 , Special Issue on Craniofacial Stem Cells in Health and Disease
          : 1560-1567
          Affiliations
          [1 ]UCLA School of Dentistry, Los Angeles, CA, USA
          [2 ]Laboratory of Viral Oncology and Aging Research, UCLA School of Dentistry, Los Angeles, CA, USA
          [3 ]Department of Physiology, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
          [4 ]UCLA Jonsson Comprehensive Cancer Center, Los Angeles, CA, USA
          [5 ]David Geffen School of Medicine at UCLA, Los Angeles, CA, USA
          Author notes
          [*]R.H. Kim, UCLA School of Dentistry, Center for the Health Sciences, 10833 Le Conte Avenue, Room 43-091, Los Angeles, CA 90095, USA. Email: rkim@ 123456dentistry.ucla.edu
          Article
          PMC4622325 PMC4622325 4622325 10.1177_0022034515608128
          10.1177/0022034515608128
          4622325
          26403672
          0d8183c3-1745-4fd2-9f24-266b46aae705
          © International & American Associations for Dental Research 2015
          History
          Categories
          Research Reports
          Biological

          reparative dentin formation,calcium release-activated calcium (CRAC) channels,pulp capping,odontogenic mineralization,calcium,store-operated calcium entry (SOCE)

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