Correlation Engine 2.0
Clear Search sequence regions


  • acid (1)
  • ADSSL1 (1)
  • adult (1)
  • alizarin red (8)
  • anti- antibodies (1)
  • antibodies (2)
  • BMP (5)
  • BMP2 (3)
  • BMP4 (14)
  • bone (10)
  • bone grafts (1)
  • bone matrix (1)
  • cathepsin k (1)
  • CD105 (23)
  • CD146 (3)
  • CD166 (3)
  • CD34 (3)
  • CD45 (3)
  • CD73 (1)
  • cell clones (18)
  • cementoblast (3)
  • cementum (2)
  • collagen (1)
  • consent form (1)
  • contains (1)
  • data analysis (2)
  • dental follicles (1)
  • Dkk1 (1)
  • essential (3)
  • fiber (1)
  • function (1)
  • GAPDH (3)
  • gene (14)
  • help (1)
  • help protocols (1)
  • homeostasis (2)
  • homo sapiens (2)
  • iggs (1)
  • igm (1)
  • ligament (57)
  • linear model (1)
  • low (1)
  • LRP5 (1)
  • nodules (2)
  • organogenesis (1)
  • osteo (4)
  • osteoblast (5)
  • osteoprotegerin (1)
  • PCDH18 (14)
  • PCDHB2 (2)
  • PCDHB4 (1)
  • PCDHGA10 (8)
  • PCDHGA6 (2)
  • PCDHGB2 (2)
  • PCDHGB4 (1)
  • pcr (1)
  • penicillin (3)
  • period (1)
  • periodontium (5)
  • phenotypes (2)
  • phosphate (1)
  • platelet (1)
  • PRKCD (1)
  • PRKCZ (1)
  • process (17)
  • profiles (1)
  • protocols (1)
  • quality data (2)
  • regulates (1)
  • reports gene (1)
  • rhpdgf bb (1)
  • rna (19)
  • school (1)
  • serum (1)
  • SFRP2 (1)
  • Sfrp4 (1)
  • stain (6)
  • stem cell (14)
  • streptomycin (3)
  • sybr green i (1)
  • TGF β (1)
  • TGFβ (1)
  • therapies (2)
  • third molars (1)
  • tooth (2)
  • trypsin (1)
  • Wif1 (2)
  • Wnt (26)
  • wnt receptor (1)
  • WNT16 (14)
  • WNT2 (13)
  • WNT2B (8)
  • β catenin (2)
  • Sizes of these terms reflect their relevance to your search.

    Heterogeneous cell populations of osteo/cementoblastic (O/C) or fibroblastic phenotypes constitute the periodontal dental ligament (PDL). A better understanding of these PDL cell subpopulations is essential to propose regenerative approaches based on a sound biological rationale. Our study aimed to clarify the differential transcriptome profile of PDL cells poised to differentiate into the O/C cell lineage. To characterize periodontal-derived cells with distinct differentiation capacities, single-cell-derived clones were isolated from adult human PDL progenitor cells and their potential to differentiate into osteo/cementoblastic (O/C) phenotype (C-O clones) or fibroblastic phenotype (C-F clones) was assessed in vitro. The transcriptome profile of the clonal cell lines in standard medium cultivation was evaluated using next-generation sequencing technology (RNA-seq). Over 230 differentially expressed genes (DEG) were identified, in which C-O clones showed a higher number of upregulated genes (193) and 42 downregulated genes. The upregulated genes were associated with the Cadherin and Wnt signaling pathways as well as annotated biological processes, including "anatomical structure development" and "cell adhesion." Both transcriptome and RT-qPCR showed up-regulation of WNT2, WNT16, and WIF1 in C-O clones. This comprehensive transcriptomic assessment of human PDL progenitor cells revealed that expression of transcripts related to the biological process "anatomical structure development," Cadherin signaling, and Wnt signaling can identify PDL cells with a higher potential to commit to the O/C phenotype. A better understanding of these pathways and their function in O/C differentiation will help to improve protocols for periodontal regenerative therapies.

    Citation

    Miki Taketomi Saito, Luciana Souto Mofatto, Mayra Laino Albiero, Márcio Zafallon Casati, Enilson Antonio Sallum, Francisco Humberto Nociti Junior, Karina Gonzales SilvÉrio. Transcriptome profile of highly osteoblastic/cementoblastic periodontal ligament cell clones. Journal of applied oral science : revista FOB. 2020 Oct 19;28:e20200242

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 33111882

    View Full Text