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PubMed · 15201601

Chlamydia-induced arthritis.

Abstract

PURPOSE OF REVIEW: Chlamydia-induced arthritis is the most frequent form of reactive arthritis in Western countries. This article gives an overview of the recent findings with respect to diagnosis, pathogenesis, and therapy of the disease. RECENT FINDINGS: Recent advances in the modification and standardization of polymerase chain reaction techniques give promise to identify Chlamydia more frequently from joint samples. Based on the sequenced chlamydial genome, considerable progress has been achieved in the understanding of the Chlamydia-host cell interaction, indicating that persistence is an alternate state of the bacteria used by Chlamydia to escape the immune system of the host rather than a general stress response. Furthermore, Chlamydia has the ability to reprogram the host cell by chlamydial effector proteins, which are transported from the inclusion into the host cell cytoplasm. The role of HLA-B27 is discussed in view of the pathogenesis of the disease. HLA-B27 should be considered a risk factor for chronic and/or axial disease rather than a true susceptibility factor for the development of Chlamydia-induced arthritis. No progress has been made in terms of causative therapy aiming at eradication of the bacteria. Tumor necrosis factor-alpha blocking agents may represent a new option in cases that are refractory to therapy. SUMMARY: Molecular biology not only has improved the ability to detect Chlamydia in the joint for diagnostic purposes but also has extended the current understanding of the pathogenesis of the disease. In contrast to this progress, causative therapy of Chlamydia-induced arthritis is still an unfulfilled need.

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BibTeXRIS

Henning Zeidler, Jens Kuipers, Lars Köhler. 2004. Chlamydia-induced arthritis.. https://doi.org/10.1097/01.bor.0000126150.04251.f9

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Solute carrier family 11 member A1 gene polymorphisms in reactive arthritis.

To investigate the role of SLC 11A1 polymorphisms in the development of reactive arthritis, 91 patients with reactive arthritis and 163 healthy controls were enrolled in this study. The SLC 11A1 polymorphisms were determined by the method of polymerase chain reaction/restriction fragment length polymorphism. The genotype distributions of SLC 11A1 274, 823, 1703, and 1729+ 55 del 4 were significantly different between the patients with reactive arthritis and controls. The genotype frequency of SLC 11A1 274C/C was significantly decreased in the patients with reactive arthritis when compared with that of the controls. In contrast, the SLC 11A1 274C/T showed a significant association with reactive arthritis. The patients with reactive arthritis have a significantly higher frequency of SLC 11A1 823C/C than the controls. However, SLC 11A1 823T/T was resistant to the development of reactive arthritis. The allele frequencies of SLC 11A1 274T and 823C were significantly increased in the patients with reactive arthritis in comparison with those of the controls, independent of HLA-B27. On the contrary, the allele frequencies of SLC 11A1 274C and 823T were significantly decreased in the patients with reactive arthritis. The estimated haplotype frequency of SLC 11A1 274C 823T 1703G 1729+55del 4 TGTG+ was significantly decreased in the patients with reactive arthritis when compared with that of the controls. In contrast, the estimated haplotype frequency of SLC 11A1 274T 823C 1703G 1729+55 del 4 TGTG+ was significantly increased in the patients with reactive arthritis. This study shows that the SLC 11A1 274T and 823C alleles are associated with susceptibility to reactive arthritis independently of HLA-B27 in Taiwan. The SLC 11A1 274T 823C 1703G 1729+55 del 4 TGTG+ haplotype is associated with the development of reactive arthritis in Taiwan. In contrast, the SLC 11A1 274C 823T 1703G 1729+55 del 4 TGTG+ haplotype may be a protective factor.

Arthritis, Reactive↗