| Literature DB >> 28595634 |
Yancong Zhang1, Yongliang Li1, Ruirui Shi1, Siqi Zhang2, Hao Liu1, Yunfei Zheng1, Yan Li2, Jinglei Cai3, Duanqing Pei3, Shicheng Wei4,5.
Abstract
BACKGROUND: A number of studies have shown that tooth-like structures can be regenerated using induced pluripotent stem cells and mouse embryonic stem (mES) cells. However, few studies have reported the regeneration of tooth-periodontium complex structures, which are more suitable for clinical tooth transplantation. We established an optimized approach to induce high-odontogenic potential dental epithelium derived from mES cells by temporally controlling bone morphogenic protein 4 (BMP4) function and regenerated tooth-periodontium complex structures in vivo.Entities:
Keywords: BMP4; Dental epithelium; Mouse embryonic stem cells; Tooth regeneration
Mesh:
Year: 2017 PMID: 28595634 PMCID: PMC5465544 DOI: 10.1186/s13287-017-0583-5
Source DB: PubMed Journal: Stem Cell Res Ther ISSN: 1757-6512 Impact factor: 6.832
Fig. 2mES cell-derived AMBN-positive cells. a mES cell differentiation culture protocols. Protocol No. 1, MOL only; Protocol No. 2, 100 nM LDN193189 added to MOL at the end of day 2 for 2 days; Protocol No. 3, 30 pM BMP4 added to MOL at the end of day 4 for 2 days; and Protocol No. 4, 30 pM BMP4 added to MOL on day 4 for the remaining days. b Cell morphologies under different protocols. c Immunostaining of the day 14 cells cultured under all protocols. AMBN (red), DAPI (blue). Thirty-five points were selected randomly from each group for fluorescence intensity analysis (right). d Western blot for AMBN from mES cells derived epithelial cell. In Protocol No. 3 the AMBN stripe emerged. e Western blot images showed significant high expression of P-Smad1/5/8 and β-catenin in Protocol No. 3 as compared with other protocols on day 14 (Color figure online). AMBN ameloblastin, BMP4 bone morphogenic protein 4, D day, GAPDH glyceraldehyde-3-phosphate dehydrogenase
Fig. 1mES cell-derived epithelium. a Cell morphology. mES cells present a colony growth character, each clone with an obvious boundary. EBs are round balls. One day after attachment, cells began to climb out peripheral from the EBs (radial growth). A large number of epithelioid cells presented on day 3 and later. b qRT-PCR showed representative downregulation of mES cell-specific transcription factor (Oct4) and the expression of keratin epithelial marker k14 was upregulated on day 3. Expression of early ectoderm marker P63 and K18 was relative lower on day 3. FGF8 expression was up regulated on day 3 while BMP4 showed a high expression level. c Immunostaining of the day 3 cells for FGF8 and BMP4. BMP4 bone morphogenic protein 4, D day, EB embryoid body, FGF8 fibroblast growth factor 8, mESC mouse embryonic stem cell
Fig 3Tooth–periodontium complex structures formed from mES cells. a Experimental schematic diagram. b Tooth-like structures under the renal capsule. c Tooth-like structures under a stereoscopic microscope. d Tooth-like structures under micro-CT. Results showed it contained three different teeth types and periodontal tissue. e Intensity of the enamel and dentine were higher than normal mouse teeth. f HE staining showed tooth-like structures containing dental pulp (DP), dentin (D), enamel space (ES), alveolar bone (AB), periodontal membrane (PM), and dental cement (DC). E embryonic day