Background: Localized aggressive periodontitis (LAgP) is associated with neutrophil dysfunction including defective chemotaxis and reduced calcium influx factor activity. Nitric oxide (NO) and its enzyme, nitric oxide synthase (NOS), have been suggested to be involved in chemotaxis. Some reports, however, were unable to detect either NO or NOS in human neutrophils. In this study, we focused on NOS activity in LAgP neutrophils and examined the involvement of NOS in chemotaxis of normal neutrophils and NOS activity in neutrophils from normal subjects and patients with LAgP.Methods: Neutrophils from 10 normal subjects and 10 LAgP patients were isolated from peripheral venous blood. Membrane associated-NOS (MA-NOS) and soluble NOS (S-NOS) were extracted from cells with or without FMLP stimulation. NOS activity was measured using the radiolabeled L-arginine to L-citrulline conversion assay.Results: N-omega-nitro-L-arginine methyl ester (L-NAME), an inhibitor of NOS, significantly inhibited FMLP-induced chemotaxis (P<0.01) and dibutyryl cGMP, an activator of cGMP-dependent protein kinase, significantly attenuated the inhibition by L-NAME (P<0.01). Unstimulated and FMLP-stimulated MA-NOS activity in LAgP neutrophils was statistically significantly higher than that in normal neutrophils (P <0.05). S-NOS activity in LAgP neutrophils was higher than that in normal neutrophils.Conclusions: This study suggests that NOS is present in human neutrophils and may be involved in FMLP-induced chemotaxis in normal neutrophils. NOS activity is increased in LAgP and is negatively correlated to chemotaxis response.
BACKGROUND:Localized juvenile periodontitis (LJP) is an early-onset periodontal disease associated with neutrophil dysfunction, including defective chemotaxis, reduced protein kinase C (PKC) activity, and reduced calcium entry. These observations are important because reduced availability of cytosolic-free calcium concentration in the cell will have detrimental consequences for the numerous cytosolic calcium concentration-dependent pathways. In particular, there is a direct relationship between Ca2+ flux and the cell activation enzyme PKC. In this report, we focused on the mechanism of calcium entry, investigating a newly described molecule, calcium influx factor (CIF). CIF is thought to be a second messenger for the opening of membrane calcium channels when intracellular calcium stores are depleted. We examined CIF activity in neutrophils from normal subjects and LJP patients.METHODS:Neutrophils from 11 LJP patients, 3 adult periodontitis (AP) patients, and 12 normal subjects were isolated from peripheral venous blood. CIF was extracted with thapsigargin, a Ca2+-ATPase inhibitor, from isolated neutrophils and CIF activity measured using a 45CaCl2 uptake assay.RESULTS:The CIF activity in neutrophils from LJP patients ranged from 98.9 to 281.5 units/mg protein (mean = 180.2 +/- 56.3) and from 291.9 to 755.5 units/mg protein (mean = 528.8 +/- 153.8) in non-periodontal disease controls. CIF activity in AP patients was also measured and found to be similar to controls. The CIF activity in LJP patients was statistically significantly reduced compared to that in normal subjects (P <0.001).CONCLUSIONS:This study suggests that CIF activity may be an important determinant in neutrophil abnormalities in LJP.
One way prokaryotes respond to environmental stresses is by modifying selected outer membrane components. Iron, in the form of hemin, has been shown to be a significant regulator of Porphyromonas gingivalis growth and virulence and of the expression of outer membrane proteins and lipopoly saccharide. Since lipopoly saccharide has profound effects on host immune cells, this study compared the effect of hemin-restricted and hemin-normal P. gingivalis growth conditions on lipopolysaccharide priming of N-formylmethionyl-leucyl-phenylalanine-induced superoxide generation by human neutrophils. P. gingivalis was grown in a chemostat under normal (5 micrograms hemin/ml) and hemin-restricted (0.08 microgram hemin/ml) conditions. Purified lipopolysaccharide from both P. gingivalis normal and hemin-limited environments increased N-formylmethionyl-leucyl-phenylalanine-induced superoxide release by neutrophils in a dose-dependent manner. Lipopolysaccharide isolated from the hemin-normal conditions was a significantly more potent neutrophil priming agent than the lipopolysaccharide isolated from hemin-restricted conditions. Addition of normal human serum enhanced the priming effect of both lipopolysaccharide preparations; this effect, however, was more evident with the hemin-normal lipopolysaccharide. Further, this enhancing effect of serum was partly reduced in the presence of antibodies raised against the serum lipopolysaccharide-binding protein. The differences in the biological activity of the two lipopolysaccharide preparations could be associated with structural differences detected by sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis. These results indicate that hemin availability affects regulation of an aspect of P. gingivalis virulence, lipopolysaccharide-human neutrophils priming. The reduced capacity for neutrophil priming by hemin-restricted lipopolysaccharide appears to be related to lipopolysaccharide-neutrophil interactions and not to serum factors Targeting bacterial cell-surface components involved in hemin transport might be effective therapy for P. gingivalis-associated periodontal diseases.