Top down proteomic analysis of gingival crevicular fluid in deciduous, exfoliating and permanent teeth in children
JOURNAL OF PROTEOMICS
Authors: Iavarone, Federica; Olianas, Alessandra; Patini, Romeo; Gallenzi, Patrizia; Di Tonno, Laura; Desiderio, Claudia; Cabras, Tiziana; Manconi, Barbara; Vincenzoni, Federica; Cordaro, Massimo; Messana, Irene; Urbani, Andrea; Castagnola, Massimo
Abstract
Gingival Crevicular Fluid (GCF), a plasma-derived exudate present in the gingival crevice was collected from deciduous, exfoliating and permanent teeth from 20 children (60 samples) with the aim to characterize and quantify by a mass spectrometry based top-down proteomic approach, the peptide/proteins in the fluid and verify possible variations occurring during the exfoliating process. The results obtained confirmed the presence in GCF of alpha-Defensins 1-4, Thymosin beta 4 and Thymosin beta 10, as described in previous works and revealed the presence of other interesting peptides never described before in GCF such as specific fragments of alpha-1-antitrypsin, alpha 1-antichymotrypsin; fragments of Thymosin beta 4 and Thymosin beta 10; Fibrinopeptide A and its fragments and Fibrinopeptide B; S100A8 and S100A9, LVV Hemorphin-7 (hemoglobin chain beta fragment), as well as some other peptides deriving from alpha and beta subunits of hemoglobin. Statistical analysis evidenced different levels in 5 proteins/peptides in the three groups. Our study demonstrate that an in-depth analysis of a biological fluid like GCF, present in small amount, can provide useful information for the understanding of different biological processes like teeth eruption. Data are available via ProteomeXchange with identifier PXD016010 and PXD016049. Significance: GCF due to his site-specific nature has a great potential in containing factors that are specific for action at a given site and might have diagnostic value to detect qualitative and quantitative variations of proteins/peptides composition linked to physiological or pathological conditions.
Short communication: Inflammation, migration, and cell-cell interaction-related gene network expression in leukocytes is enhanced in Simmental compared with Holstein dairy cows after calving
JOURNAL OF DAIRY SCIENCE
Authors: Lopreiato, V; Minuti, A.; Morittu, V. M.; Britti, D.; Piccioli-Cappelli, F.; Loor, J. J.; Trevisi, E.
Abstract
The aim of this study was to investigate changes in the abundance of genes involved in leukocyte function between cows highly specialized for milk production (Holstein, n = 12) and cows selected for meat and milk (Simmental, n = 13). Blood was collected on d 3 after calving in PAXgene tubes (Preanalytix, Hombrechtikon, Switzerland) to measure mRNA abundance of 33 gens. Normalized gene abundance data were subjected to MIXED model ANOVA using SAS (SAS Institute Inc. Cary, NC). Simmental cows had greater transcript abundance of proinflammatory cytokines and receptor genes (IL1B, TNF, IL1R, TNFRSF1A), cell migration- and adhesion-related genes (CX9CR1, ITGB2, CD44, LGALS8), and the antimicrobial IDO1 gene. In contrast, compared with Holstein cows, Simmental cows had lower abundance of the toll-like receptor (TLR) recognition-related gene TLR2, the antimicrobial-related gene LTF, and S100A8, which is involved in cell maturation, regulation of inflammatory processes, and immune response. These results revealed that breed plays an important role in the modulation of genes involved in immune adaptation and inflammatory response, and the immune system of Simmental cows could potentially have a more acute response in early lactation. In turn, this might be beneficial for mounting a more efficient response after calving and allow for a smoother homeorhetic adaptation to lactation.