Artículos de revistas
Secretome Profiling Of Periodontal Ligament From Deciduous And Permanent Teeth Reveals A Distinct Expression Pattern Of Laminin Chains
Registro en:
Plos One. PUBLIC LIBRARY SCIENCE, n. 11, n. 5, p. .
1932-6203
WOS:000375676800098
10.1371/journal.pone.0154957
Autor
Giovani
PA; Salmon
CR; Martins
L; Leme
AFP; Reboucas
P; Rontani
RMP; Mofatto
LS; Sallum
EA; Nociti
FH; Kantovitz
KR
Institución
Resumen
It has been suggested that there are histological and functional distinctions between the periodontal ligament (PDL) of deciduous (DecPDL) and permanent (PermPDL) teeth. Thus, we hypothesized that DecPDL and PermPDL display differences in the constitutive expression of genes/proteins involved with PDL homeostasis. Primary PDL cell cultures were obtained for DecPDL (n = 3) and PermPDL (n = 3) to allow us to perform label-free quantitative secretome analysis. Although a highly similar profile was found between DecPDL and PermPDL cells, comparative secretome analysis evidenced that one of the most stickling differences involved cell adhesion molecules, including laminin subunit gamma 1 (LAMC1) and beta 2 (LAMB2). Next, total RNA and protein extracts were obtained from fresh PDL tissues of deciduous (n = 6) and permanent (n = 6) teeth, and Western blotting and qPCR analysis were used to validate our in vitro findings. Western blot analysis confirmed that LAMC1 was increased in DecPDL fresh tissues (p< 0.05). Furthermore, qPCR data analysis revealed that mRNA levels for laminin subunit beta 1 (LAMB1), beta 3 (LAMB3), LAMC1, and gamma 2 (LAMC2) were higher in DecPDL fresh tissues, whereas transcripts for LAMB2 were increased in PermPDL (p< 0.05). In conclusion, the differential expression of laminin chains in DecPDL and PermPDL suggests an involvement of laminin-dependent pathways in the control of physiological differences between them. 11