Sensitive immunoassays for the autoantibodies reacting against citrullinated carboxy-terminal telopeptides of type I and type II collagens in patients with rheumatoid arthritis

Author(s):  
Marja-Kaisa Koivula ◽  
Jarmo Ramberg ◽  
Sari Åman ◽  
Anna Karjalainen ◽  
Markku Hakala ◽  
...  

AbstractWe developed sensitive assay methods for autoantibodies recognizing the citrullinated synthetic peptides derived from type I and type II collagens in patients with rheumatoid arthritis (RA). These peptides were tested with the chemiluminescence method (Nichols Advantage

1995 ◽  
Vol 133 (5) ◽  
pp. 557-563 ◽  
Author(s):  
Jens Bollerslev ◽  
Sian Thomas ◽  
Ellen Grodum ◽  
Kim Brixen ◽  
Ole Djøseland

Bollerslev J, Thomas S, Grodum E, Brixen K, Djøseland 0. Collagen metabolism in two types of autosomal dominant osteopetrosis during stimulation with thyroid hormones. Eur J Endocrinol 1995;133:557–63. ISSN 0804–4643 In order to investigate collagen metabolism in two different types of autosomal dominant osteopetrosis (ADO), eight patients with type I (aged 23–61 years, mean 40.4 years) and nine patients with type II ADO (aged 20–49 years, mean 32.8 years) were compared with ten normal controls (aged 22–54 years, mean 35.4 years). The subjects were treated with 100 μg of triiodothyronine (T3) daily for 7 days and followed for a total of 4 weeks. Serum T3 increased in all subjects and a corresponding suppression of thyroid-stimulating hormone (TSH) was observed. Serum carboxy-terminal propeptide of type I collagen (S-PICP) in the control and type I groups showed no difference at baseline, whereas type II was lower than controls (p < 0.01). No significant alterations following stimulation were observed in any of the groups. Serum BGP (osteocalcin) values in the two patient groups were insignificantly lower than controls both at baseline and throughout the study. Following stimulation, a significant response was seen in the three groups (p < 0.001). The increases during the treatment period (delta values) for controls, type I and type II were 47.6% (p < 0.01), 51.7% (p = 0.05) and 34.8% (NS), respectively, with no difference between the groups. Serum bone-specific alkaline phosphatase (S-ALP) was not different between the groups and no alterations were observed in relation to treatment. The serum N-terminal propeptide of type III collagen (S-PIIINP) showed no difference at baseline between type I and controls but was significantly higher (p < 0.003) in type II than in the controls. After stimulation, significant responses were observed in all three groups (p < 0.001). Serum PIIINP increased following 1 week of treatment by 64% (p < 0.01), 41% (p < 0.02) and 18% (NS), respectively. Serum carboxy-terminal telopeptide of type I collagen (SICTP) did not differ between type I and controls at baseline but was increased in type II (p < 0.04), as it was throughout the observation period (p < 0.12 and p < 0.02). A significant response was observed in the three groups following stimulation. The delta values were 69% (p = 0.005), 56% (p < 0.02) and 34% (p < 0.02), respectively. The urinary hydroxyproline (OHP)/creatinine ratio did not differ between the groups either at baseline or following stimulation. A significant response (p < 0.001) was observed, with delta values of 44.2% (p < 0.06), 35.9% (p < 0.04) and 34.3% (p < 0.01), respectively. The two bone resorptive markers (S-ICTP and OHP/creatinine ratio) were correlated significantly at baseline for all three groups. It is concluded that collagen metabolism is disturbed in type II ADO, which might reflect an increased turnover of extra-osseous collagen. Because ICTP levels are increased in disorders with increased extra-osseous collagen turnover, we question the suitability of this parameter as a sensitive marker of bone resorption. Jens Bollerslev, Department of Medical Endocrinology, National University Hospital, N-0027 Oslo, Norway


2007 ◽  
Vol 56 (6) ◽  
pp. 715-721 ◽  
Author(s):  
Hsi Liu ◽  
Berta Rodes ◽  
Robert George ◽  
Bret Steiner

The acidic repeat protein (arp) genes from three subspecies of the treponeme Treponema pallidum (T. pallidum subsp. pallidum, Nichols strain; T. pallidum subsp. pertenue, CDC-1 and CDC-2 strains; and T. pallidum subsp. endemicum, Bosnia A strain) were cloned and sequenced. The predicted protein sequence contained a high percentage of glutamic acid, hence the name acidic repeat protein, or Arp. The protein had a potential membrane-spanning domain and a signal peptidase I site. The gene from the Nichols strain of T. pallidum subsp. pallidum contained a set of 14 nearly identical repeats of a 60 bp sequence, which occupied ∼51 % of the length of the gene. Analyses of arp from laboratory strains showed that the 5′ and 3′ ends of the genes were conserved, but there was considerable heterogeneity in the number of repeats of this 60 bp sequence. Based on amino acid variations, the 14 sequence repeats could be classified into three types, which were named type I, type II and type III repeats. The type II repeat was the most common in the strains examined. The arp gene of the Nichols strain was subsequently cloned into the expression vector pBAD/TOPO ThioFusion. The expressed protein was detected in a Western blot assay using rabbit immune sera produced against T. pallidum, or synthetic peptides derived from the repeat sequences. Using an ELISA, rapid plasma reagin (RPR) test-positive sera reacted with synthetic peptides derived from the repeat region but not with peptides derived from N and C termini of the Arp protein. These results show that the Arp protein is immunogenic and could prove to be a useful target for serological diagnosis of T. pallidum infection.


1986 ◽  
Vol 71 (6) ◽  
pp. 685-691 ◽  
Author(s):  
B. Danneskiold-Samsøe ◽  
G. Grimby

1. Abnormal morphological and enzymatic patterns in the lateral vastus muscle have been found in women with corticosteroid treated rheumatoid arthritis. By means of biopsies from the lateral heads of right gastrocnemius muscles, the histology and enzyme activities were compared with those found in right vastus lateralis biopsies. The findings were correlated with isometric and isokinetic strength of the plantar flexors. 2. The relative occurrence of type I fibres in the gastrocnemius muscle was 46.4 ± 18.7 (sd) %, which is significantly higher than found in the vastus lateralis [35.7 ± 13.3 (sd) %] (P < 0.03). 3. The relatively lower percentage of type II fibres in the gastrocnemius muscle was due to a relatively low percentage of type II A fibres [mean 27.9 ± 16.4 (sd) %] (P < 0.05). 4. The area of type I fibres in the gastrocnemius muscle was 26.1 × 102 ± 10.0 (sd) μm2, which is 74% of the mean area for type I fibres found in the vastus lateralis (P < 0.01). 5. The area of type II fibres in the gastrocnemius was 14.9 × 102 ± 7.1 (sd) μm2, which is 77% of the mean area for type II fibres found in the vastus lateralis. 6. The isokinetic muscle strength of the plantar flexors in corticosteroid treated patients with rheumatoid arthritis was reduced to less than 50% at all angular velocities when compared with healthy women. The same difference was found in the knee extensors. 7. Both type I and type II fibre areas correlated positively with the activity of β-hydroxyacyl-CoA dehydrogenase (r = 0.72, P < 0.02; r = 0.77, P < 0.01). The activity of the oxidative enzyme citric acid synthase (but not β-hydroxyacyl-CoA dehydrogenase) correlated positively with the isokinetic muscle strength of the plantar flexors at all the angular velocities (r = 0.75, P < 0.01; r = 0.57, P < 0.05). 8. The isokinetic strength as well as the type I and II fibre areas in the vastus lateralis biopsies correlated well with the same parameters in the gastrocnemius muscle (r approx. 0.70, P < 0.001). The vastus lateralis and the gastrocnemius muscles had similar morphology in the same subjects. In the control subjects and in the patients a close correlation was found between the isokinetic strength of the knee extensors and the plantar flexors. 9. It is concluded that the corticosteroid effect on muscles seems to occur in both the proximal and distal skeletal muscles.


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