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1.
Autoimmun Rev ; 12(2): 114-20, 2012 Dec.
Article in English | MEDLINE | ID: mdl-22776784

ABSTRACT

Systemic sclerosis (SSc) is a heterogeneous autoimmune disorder characterized by microvascular injury, fibrosis of the skin and other organs, and presence of antinuclear autoantibodies (ANA) with a prevalence varying from 80 to 98%. The ANA classically detected in SSc include anti-centromere (ACA) and anti-topoisomerase I (ATA), which are positive in 50-60% of the patients. Even if other autoantibodies, such as anti-fibrillarin (AFA), anti-RNA polymerase III (RNAP III), anti-PMScl, anti-Th/To, and anti-hUF/NOR-90, are almost specific for SSc, until recently they were not routinely looked for, since the techniques for their identification were not suitable for routine use. In recent years, the advances in the knowledge of the biochemistry and of the immunoreactive sites of the autoantigens led to the development of new immunoassays using recombinant proteins as autoantigens. We evaluated a new multiplex line immunoblot assay (LIA) for the simultaneous detection of 13 different SSc-associated autoantibodies, in a cohort of 210 SSc Italian patients. The sensitivity and the specificity of this assay were as follows: 30.5% and 97.3% for ACA (anti-CENP-B), 29.5% and 96% for ACA (anti-CENP-A), 20% and 99.3% for ATA, 5.7% and 99.3% for anti-RNAP III (RP-155), 5.2% and 100% for anti-RNP III (RP-11), 6.7% and 98% for anti-PMScl (PMScl-100), 10.9% and 93.3% for anti-PMScl (PMscl-75), 3.3% and 98.7% for anti-Th/To, 0.48% and 100% for AFA, 4.8% and 96.7% for anti-hUF/NOR-90, 4.7% and 96% for anti-Ku, 0.95% and 100% for anti-Platelet-Derived Growth Factor Receptor, and 18.1% and 50% for anti-Ro-52, respectively. These results, which are similar to those obtained in other studies using traditional techniques, show that the LIA assay can be considered a more rapid and a more practical method than immunoprecipitation assays for studying SSc-related antibodies in the diagnostic work-up of SSc patients.


Subject(s)
Autoantibodies/immunology , Scleroderma, Systemic/diagnosis , Scleroderma, Systemic/immunology , Adult , Aged , Aged, 80 and over , Female , Humans , Immunoblotting/methods , Male , Middle Aged , Reproducibility of Results , Sensitivity and Specificity , Young Adult
2.
Free Radic Biol Med ; 49(5): 857-64, 2010 Sep 01.
Article in English | MEDLINE | ID: mdl-20541603

ABSTRACT

Thromboxane (TX) biosynthesis by platelets and other cells in response to inflammatory triggers may provide a link between chronic inflammatory disease and atherothrombosis in rheumatoid arthritis (RA). In this study, we investigated the determinants of TX biosynthesis in RA, with particular reference to enhanced oxidative stress, receptor for advanced glycation end-products (RAGE) hyperactivity, and anti-tumor necrosis factor (TNF) treatment. Fifty-four patients with RA and 20 healthy subjects were recruited and a cross-sectional comparison of urinary 11-dehydro-TXB(2), 8-iso-PGF(2alpha), and plasma endogenous secretory RAGE (esRAGE) levels was performed between patients and controls. Urinary 11-dehydro-TXB(2) was significantly higher in RA patients than in healthy controls [425 (309-592) vs 233 (158-327) pg/mg creatinine, P<0.0001]. Furthermore, urinary 8-iso-PGF(2alpha) [323 (221-515) vs 172 (91-292) pg/mg creatinine, P<0.0001] and plasma esRAGE [155 (100-240) vs 377 (195-486) pg/ml, P=0.001] were higher and lower, respectively, in patients than in controls. A direct correlation was found between urinary 11-dehydro-TXB(2) and 8-iso-PGF(2alpha) only in patients not on anti-TNF therapy (r=0.420, P=0.021). Conversely, patients on anti-TNF therapy showed significantly lower urinary 8-iso-PGF(2alpha) [284 (201-373) vs 404 (241-539) pg/mg creatinine, P=0.043] but not 11-dehydro-TXB(2) than anti-TNF-treated subjects, with esRAGE as the only independent predictor of 11-dehydro-TXB(2) in this group of patients (adjusted R(2)=0.496, beta=-0.725, SEM=0.025, P=0.001). In conclusion, we provide biochemical evidence of enhanced TX biosynthesis in patients with RA, driven, at least in part, by lipid peroxidation. Treatment with anti-TNF agents may blunt isoprostane generation in the absence of significant effects on TX biosynthesis. We suggest that RAGE hyperactivity may escape TNF blockade, thus contributing to persistent TX biosynthesis in this setting.


Subject(s)
Arthritis, Rheumatoid/metabolism , Oxidative Stress/physiology , Receptors, Immunologic/physiology , Thromboxanes/biosynthesis , Adult , Aged , Arthritis, Rheumatoid/urine , Biomarkers/analysis , Case-Control Studies , Dinoprost/analogs & derivatives , Dinoprost/urine , Female , Humans , Male , Middle Aged , Oxidants/pharmacology , Receptor for Advanced Glycation End Products , Thromboxane B2/analogs & derivatives , Thromboxane B2/urine
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