4.5 Article

Evaluation of odonto/osteogenic differentiation potential from different regions derived dental tissue stem cells and effect of 17β-estradiol on efficiency

期刊

BMC ORAL HEALTH
卷 21, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12903-020-01366-2

关键词

Odonto; osteoblast; Mesenchymal stem cells; Dental tissue; Dental pulp stem cells; 17 ss-estradiol

资金

  1. Ministry of Science of Korea (ICT & Future Planning) - Korean Government [2017M3A9E4047]
  2. Stem Centric Co. Ltd.
  3. Republic of Korea

向作者/读者索取更多资源

The study focused on inducing odontoblast differentiation using various dental MSCs, highlighting that DPSCs exhibited higher differentiation potential compared to SCAPs, DFSCs, and PDLSCs, and this potential could be further enhanced with 17 ss -estradiol supplementation.
BackgroundThe dentin is a tissue, which is formed by odontoblasts at the pulp interface of the teeth that supports the enamel. Odontoblasts, the cranial neural crest cells are derived from ectodermal mesenchymal stem cells (MSCs) and are long and polarized cells. They are present at the outer surface of dentin and play a prominent role about dentin formation. Recently, attention has been focused on induction of odontoblast using various type of MSCs and effects of the 17 ss -estradiol supplementation. In this study, we establish an efficient odonto/osteoblast differentiation protocol using 17 ss -estradiol supplementation while comparing the odonto/osteoblast ability of various dental MSCs.MethodsSame donor derived four types of dental MSCs namely dental pulp stem cells (DPSCs), stem cells from apical papilla (SCAP), dental follicle stem cells (DFSCs), and periodontal ligament stem cells (PDLSCs) were evaluated for their stemness characteristics and potency towards odonto/osteoblast (Induced odonto/osteoblast) differentiation. Then 17 ss -estradiol supplementation of 0 and 10 mu M was applied to the odonto/osteoblast differentiation media for 14 days respectively. Furthermore, mRNA and protein levels of odonto/osteoblast markers were evaluated.ResultsAll of the experimental groups displayed stemness characteristics by showing adipocyte and chondrocyte differentiation abilities, expression for cell surface markers and cell proliferation capacity without any significant differences. Moreover, all dental derived MSCs were shown to have odonto/osteoblast differentiation ability when cultured under specific conditions and also showed positive expression for odontoblast markers at both mRNA and protein level. Among all, DPSCs revealed the higher differentiation potential than other dental MSCs. Furthermore, odonto/osteoblast differentiation potential was enhanced by supplementing the differentiation media with 17 ss -estradiol (E2).ConclusionsThus, DPSCs possess higher odonto/osteogenic potential than the SCAPs, DFSCs, PDLSCs and their differentiation capacity can by further enhanced under E2 supplementation.

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