| Literature DB >> 21394295 |
Hee-Dong Choi1, Woo-Chang Noh, Jin-Woo Park, Jae-Mok Lee, Jo-Young Suh.
Abstract
PURPOSE: Under different culture conditions, periodontal ligament (PDL) stem cells are capable of differentiating into cementoblast-like cells, adipocytes, and collagen-forming cells. Several previous studies reported that because of the stem cells in the PDL, the PDL have a regenerative capacity which, when appropriately triggered, participates in restoring connective tissues and mineralized tissues. Therefore, this study analyzed the genes involved in mineralization during differentiation of human PDL (hPDL) cells, and searched for candidate genes possibly associated with the mineralization of hPDL cells.Entities:
Keywords: Cell differentiation; Gene expression profiling; Microarray analysis; Periodontal ligament
Year: 2011 PMID: 21394295 PMCID: PMC3051055 DOI: 10.5051/jpis.2011.41.1.30
Source DB: PubMed Journal: J Periodontal Implant Sci ISSN: 2093-2278 Impact factor: 2.614
Primer sequences used in reverse transcription-polymerase chain reaction.
Denaturing, annealing and elongation conditions were 94℃ 30 seconds, 56℃ 30 seconds and 72℃ 30 seconds, respectively. The total number of cycles was 27 to 30. F: forward, R: reverse.
Figure 1Alizarin red S staining of the mineralized nodules cultured for 7 days (A) and 14 days (B) with osteogenic medium and non-osteogenic medium. Circular photographs show human periodontal ligament cells in the culture plate (24 wells). On day 7, mineralized nodules were not observed at all, but on day 14, mineralized nodules were only observed in the osteogenic group.
Figure 2Expression on day 7 and 14 of selected genes by human periodontal ligament (hPDL) cells cultured in osteogenic or non-osteogeneic medium. The hPDL cells were cultured for 7 days in an osteogenic medium (+) or non-osteogenic medium (-). The 12 out of 14 genes were comparable with DNA microarray data. The expression patterns of tachykinin, precursor 1 were not significant, and nebulette were not expressed. Similar results were obtained in 2 separate experiments and representative data are shown. GAPDH: glyceraldehyde-3-phosphate dehydrogenase, PDE1A: phosphodiesterase 1A, calmodulin-dependent, APOL4: apolipoprotein L, 4, MTP18: mitochondrial protein 18 kDa, CYTL1: cytokine-like 1, PHGDH: phosphoglycerate dehydrogenase, PSAT1: phosphoserine aminotransferase 1, IGSF4: cell adhesion molecule 1, IL6: interleukin 6 (interferon, beta 2), NEBL: nebulette, FBN2: fibrillin 2, TAC1: tachykinin, precursor 1, CXCL12: chemokine (C-X-C motif ) ligand 12, SLC16A4: solute carrier family 16, member 4 (monocarboxylic acid transporter 5), ALDH1A3: aldehyde dehydrogenase 1 family, member A3.
Genes up-/down-regulated on day 7 in osteogenic medium (over a 3-fold change).
Genes more highly up-/down-regulated on day 14 than on day 7 in osteogenic medium.
Genes up-/down-regulated on day 14 in osteogenic medium (over a 3-fold change).
Genes more highly up-/down-regulated on day 7 than on day 14 in osteogenic medium.