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T Pap

Publications and source records attributed to T Pap.

At least 37 records · Page 2Linked to original sources

Expression of osteoclast differentiation factor in rheumatoid arthritis.

OBJECTIVE: To analyze the expression pattern of osteoclast differentiation factor (ODF) and its contribution to osteoclastogenesis in rheumatoid arthritis (RA). METHODS: The expression of ODF was analyzed by reverse transcriptase-polymerase chain reaction (RT-PCR) in RA synovial fibroblasts (RASF) isolated from 7 RA patients and in normal skin fibroblasts. Using RNA probes specific for ODF, in situ hybridization was performed. Immunohistochemical double labeling for CD68 was applied to characterize the ODF-expressing cells. ODF protein and messenger RNA (mRNA) expression by RASF with or without 1,25(OH)2D3 was studied by Western blot analysis and quantitative real-time PCR. In addition, we performed coculture experiments with RASF and normal peripheral blood mononuclear cells with or without 1,25(OH)2D3. RESULTS: By RT-PCR, ODF mRNA expression was found in all RASF investigated, but not in normal skin fibroblasts. In situ hybridization revealed that in RA synovial tissues, ODF mRNA was expressed mainly in the lining layer and at sites where synovium was attached to bone. Immunohistochemical double labeling demonstrated ODF mRNA expression mainly in CD68-fibroblast-like synoviocytes and CD68+ multinucleated osteoclast-like cells. By Western blotting, all RASF expressed ODF protein. However, different levels of ODF expression were found in the RASF from different patients. Interestingly, RASF expressing higher levels of ODF induced a larger number of osteoclast-like cells than did RASF expressing only low levels of ODF. Although 1,25(OH)2D3 did not alter the levels of ODF expression in RASF on either Western blot or quantitative real-time PCR, osteoclastogenesis required the presence of 1,25(OH)2D3. CONCLUSION: The present results suggest that activated RASF, by expressing ODF, play an important role in rheumatoid bone destruction. Moreover, the data provide evidence that RASF not only activate osteoclasts, but also contribute directly to osteoclastogenesis.

Arthritis, Rheumatoid↗

Modulation of fibroblast-mediated cartilage degradation by articular chondrocytes in rheumatoid arthritis.

OBJECTIVE: To determine the role of chondrocytes and factors released from chondrocytes in cartilage destruction by fibroblast-like synoviocytes (FLS) derived from patients with rheumatoid arthritis (RA). METHODS: RA FLS from 2 patients were implanted into SCID mice, together with fresh articular cartilage or with cartilage that had been stored for 24 hours at 4 degrees C or at 37 degrees C. The invasion of the same RA FLS into the fresh and stored cartilage was compared histologically using a semiquantitative scoring system. In addition, we investigated whether protein synthesis in chondrocytes affects the invasion of RA FLS in vitro. A 3-dimensional cartilage-like matrix formed by cultured chondrocytes was labeled with 35S. After formation of the cartilage-like matrix, protein synthesis was blocked with cycloheximide. The invasion of RA FLS from 6 patients into cycloheximide-treated and untreated matrix was assessed by measuring the released radioactivity in coculture with and without interleukin-1beta (IL-1beta) and tumor necrosis factor alpha (TNFalpha). RESULTS: The SCID mouse experiments showed a significant invasion of RA FLS into the cartilage (overall mean score 3.2) but revealed significant differences when the invasion of the same RA FLS into fresh and stored cartilage was compared. RA FLS that were implanted with fresh articular cartilage showed a significantly higher invasiveness than those implanted with pieces of cartilage that had been stored for 24 hours (overall mean score 2.3). Storage at 37 degrees C and 4 degrees C resulted in the same reduction of invasion (35% and 37%, respectively). In the in vitro experiments, RA FLS rapidly destroyed the cartilage-like matrix. Blocking of chondrocyte protein biosynthesis significantly decreased the invasion of RA FLS, as shown by a decreased release of radioactivity. Addition of IL-1beta, but not TNFalpha, to the cocultures partially restored the invasiveness of RA FLS. CONCLUSION: These data underline the value of the SCID mouse in vivo model of rheumatoid cartilage destruction and demonstrate that chondrocytes contribute significantly to the degradation of cartilage by releasing factors that stimulate RA FLS. Among those, IL-1beta-mediated mechanisms might be of particular importance.

Animals↗

Gene transfer: from concept to therapy.

In the last few years, several novel strategies have been proposed for the treatment of rheumatoid arthritis (RA). Among them, gene therapy is considered a promising concept bearing the potential of highly specific targeting of relevant pathomechanisms. Early studies using gene transfer focused mainly on studying disease mechanisms, whereas recent research has put potential clinical applications to the forefront of attention. This has provided new answers to the question of how to deliver genes into the rheumatoid synovium as well as which pathways to target. Thus, significant progress has been made in the continued development of viral systems, including retro- and adenoviruses, as well as in the exploration of novel tools such as herpes virus-based systems or liposomes in combination with viral fusion proteins. When potential targets for gene transfer in RA are considered, two strategies have emerged: the first focuses on the delivery of secreted proteins, mainly cytokines and cytokine receptors, to inhibit inflammation in arthritic joints. Based on our growing knowledge about the pathogenesis of RA, however, there has also been substantial progress in exploring approaches that aim at interfering specifically with signaling pathways involved in the activation and apoptosis of synovial cells. The data from recent studies indicate the ability to selectively target specific disease processes by the differential expression of therapeutic genes in varying cell types and at different stages of disease, thus demonstrating the potential of gene transfer as an arthritis therapy.

Animals↗

Activation of synovial fibroblasts in rheumatoid arthritis: lack of Expression of the tumour suppressor PTEN at sites of invasive growth and destruction.

AIMS: PTEN is a novel tumour suppressor which exhibits tyrosine phosphatase activity as well as homology to the cytoskeletal proteins tensin and auxilin. Mutations of PTEN have been described in several human cancers and associated their invasiveness and metastatic properties. Although not malignant, rheumatoid arthritis synovial fibroblasts (RA-SF) exhibit certain tumour-like features such as attachment to cartilage and invasive growth. In the present study, we analyzed whether mutant transcripts of PTEN were present in RA-SF. In addition, we used in situ hybridization to study the expression of PTEN messenger (m)RNA in tissue samples of RA and normal individuals as well as in cultured RA-SF and in the severe combined immunodeficiency (SCID) mouse model of RA. Synovial tissue specimens were obtained from seven patients with RA and from two nonarthritic individuals. Total RNA was isolated from synovial fibroblasts and after first strand complementary (c)DNA synthesis, polymerase chain reaction (PCR) was performed to amplify a 1063 base pair PTEN fragment that encompassed the coding sequence of PTEN including the phosphatase domain and all mutation sites described so far. The PCR products were subcloned in Escherichia coli, and up to four clones were picked from each plate for automated sequencing. For in situ hybridization, digoxigenin-labelled PTEN-specific RNA probes were generated by in vitro transcription. For control in situ hybridization, a matrix metalloproteinase (MMP)-2-specific probe was prepared. To investigate the expression of PTEN in the absence of human macrophage or lymphocyte derived factors, we implanted RA-SF from three patients together with normal human cartilage under the renal capsule of SCID mice. After 60 days, mice were sacrificed, the implants removed and embedded into paraffin. RESULTS: PCR revealed the presence of the expected 1063 base pair PTEN fragment in all (9/9) cell cultures (Fig.1). No additional bands that could account for mutant PTEN variants were detected. Sequence analysis revealed 100% homology of all RA-derived PTEN fragments to those from normal SF as well as to the published GenBank sequence (accession number U93051). However, in situ hybridization demonstrated considerable differences in the expression of PTEN mRNA within the lining and the sublining layers of RA synovial membranes. As shown in Figure 2a, no staining was observed within the lining layer which has been demonstrated to mediate degradation of cartilage and bone in RA. In contrast, abundant expression of PTEN mRNA was found in the sublining of all RA synovial tissues (Figs 2a and b). Normal synovial specimens showed homogeneous staining fo PTEN within the thin synovial membrane (Fig. 2c). In situ hybridization using the sense probe gave no specific staining (Fig. 2d). We also performed in situ hybridization on four of the seven cultured RA-SF and followed one cell line from the first to the sixth passage. Interestingly, only 40% of cultured RA-SF expressed PTEN mRNA (Fig. 3A), and the proportion of PTEN expressing cells did not change throughout the passages. In contrast, control experiments using a specific RNA probe fo MMP-2 revealed mRNA expression by nearly all cultured cells (Fig. 3B). As seen before, implantation of RA-SF into the SCID mice showed considerable cartilage degradation. Interestingly, only negligible PTEN expression was found in those RA-SF aggressively invading the cartilage (Fig. 3c). In situ hybridization for MMP-2 showed abundant staining in these cells (Fig. 3d). DISCUSSION: Although this study found no evidence for mutations of PTEN in RA synovium, the observation that PTEN expression is lacking in the lining layer of RA synovium as well as in more that half of cultured RA-SF is of interest. It suggests that loss of PTEN function may not exclusively be caused by genetic alterations, yet at the same time links the low expression of PTEN to a phenotype of cells that have been shown to invade cartilage aggressively. It has been proposed that the tyrosine phosphatase activity of counteracting th actions o protein tyrosine kinases. As some studies have demonstrated an upregulation of tyrosine kinase activity in RA synovial cells, it might be speculated that the lack of PTEN expression in aggressive RA-SF contributes to the imbalance of tyrosine kinases and phosphatases in this disease. However, the extensive amino-terminal homology of the predicted protein to the cytoskeletal proteins tensin and auxilin suggests a complex regulatory function involving cellular adhesion molecules and phosphatase-mediated signalling. The tyrosine phosphatase TEP1 has been shown to be identical to the protein encoded by PTEN, and gene transcription of TEP1 has been demonstrated to be downregulated by transforming growth factor (TGF)-beta. Therefore, it could be hypothesized that TGF-beta might be responsible for the downregulation of PTEN. Low expression of PTEN may belong to the features that distinguish between the activated phenotype of RA-SF and the sublining, proliferating but nondestructive cells.

Animals↗

[Joint loading as a possible etiology for arthrosis development. Results of animal experiment studies of the rat model].

We review our results with an animal model for investigations on the development of osteoarthritis (OA). This model is based on running exercises of wistar rats performed in a running wheel using intracranial self-stimulation to motivate rats to excessive running. In our studies a total of 49 rats was divided into groups with running exercises of 15 km, 20 km, and 30 km respectively. In order to investigate the influence of altered sensible joint innervation on the development of OA, in addition to a total running load of 20 km in another group of 8 rats we performed Capsaicin (8 Methyl-N-vanillyl-6-noneamide) mediated partial sensible knee joint denervation. Complete knee joint sections of all rats were evaluated histologically using Mankins grading system. In addition, we performed semiquantitative assessment of the immunoreactivity of the chondrocytes to MMP-3 by immunostaining with monoclonal MMP-3 IgG antibodies. Histological assessment and immunostaining for MMP-3 of the knee joint sections revealed a significant increase in osteoarthritic changes with higher running load. Moreover, osteoarthritic changes in the knee joints of the rats with sensible joint denervation and running exercises were significantly greater as compared to those with sole running load. In conclusion, our studies revealed a significant relationship between the development of knee osteoarthritis and the extent of joint load. Hereby, an alteration of the sensible joint innervation seems to have a promoting effect on the development of osteoarthritic changes. This model offers a wide range of further approaches to studying different processes of the development of OA.

Animals↗

Expression of the precursor of secretoneurin, secretogranin II, in the synovium of patients with rheumatoid arthritis and osteoarthritis.

OBJECTIVE: Secretoneurin (SN) is a neuropeptide that is chemotactic for mononuclear cells and it has been suggested to be involved in the mediation of pain; there is also evidence that SN is involved in the inflammation process. As secretogranin II (SGII) is the precursor of SN, we investigated expression of SGII mRNA and SN protein in the synovium of patients with rheumatoid arthritis (RA) and osteoarthritis (OA). METHODS: Snap frozen synovial tissue specimens from 12 patients with RA and 11 patients with OA were examined. RNA was isolated and cDNA copied by reverse transcription. The expression of SGII was determined by polymerase chain reaction and in situ hybridization (ISH). SGII expressing cells were compared with CD68 positive cells stained by immunohistochemistry. SN protein was also detected by immunohistochemistry. RESULTS: A 524 bp SGII-specific fragment could be amplified by PCR from the cDNA of all specimens. ISH showed scattered expression of SGII in both RA and OA synovial tissue; its expression pattern was characterized by positive staining for SGII in both the lining and the sublining layer. Immunohistochemical double labeling with anti-CD68 antibodies revealed expression of SGII in CD68 negative, fibroblast-like cells, whereas CD68 positive macrophages did not. In RA and OA, the SGII staining by ISH was positive with a diffuse staining throughout the entire synovial tissue. SN protein expression was scattered in RA but more intense in OA synovium. CONCLUSION: The expression of SGII mRNA in RA and OA synovial fibroblasts clearly supports the hypothesis that SN is involved in the synovial tissue inflammation in both diseases. The significant lower SN expression in RA could be due to an inhibitory mechanism with respect to the SN levels in synovial fluid. SN might be involved in the modulation of afferent nerve transmission and therefore might play a role in the sensation of pain, especially in patients with OA.

Antigens, CD↗

Characterization of collagenase 3 (matrix metalloproteinase 13) messenger RNA expression in the synovial membrane and synovial fibroblasts of patients with rheumatoid arthritis.

OBJECTIVE: To study the localization and cell type-specific expression of collagenase 3 messenger RNA (mRNA) in the synovial membrane, its regulation in primary synovial fibroblasts, and the correlation with systemic markers of inflammation and radiographic damage in rheumatoid arthritis (RA). METHODS: The expression of collagenase 3 mRNA was characterized by Northern blot analysis, reverse transcriptase-polymerase chain reaction, and in situ hybridization. Immunohistochemical detection of cell type-specific antigens was used in combination with in situ hybridization of collagenase 3 mRNA to characterize the cellular origin of collagenase 3 mRNA expression. RESULTS: Collagenase 3 mRNA was detected in synovial membrane specimens of 21 of 36 RA patients (58%) and correlated with an increase in erythrocyte sedimentation rate (P<0.05) and C-reactive protein levels (P<0.005). Collagenase 3 mRNA was localized in fibroblast-like cells of the lining and sublining layers, and at the synovial membrane-cartilage interface. Four of 10 primary synovial fibroblast cell cultures showed basal expression of collagenase 3 mRNA, which was stimulated 2-4-fold upon interleukin-1beta or tumor necrosis factor alpha treatment and, in contrast to interstitial collagenase mRNA, 5-10-fold by increasing the intracellular level of cAMP. The stimulation by cAMP analogs was completely abolished by protein kinase A inhibitors. CONCLUSION: Some RA patients show collagenase 3 mRNA expression in the synovial membrane, which correlates with elevated levels of systemic markers of inflammation in these patients. In synovial fibroblasts, the expression of collagenase 3 and interstitial collagenase mRNA is differentially regulated by distinct protein kinase signal transduction pathways.

1-Methyl-3-isobutylxanthine↗

Anticytokines.

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Animals↗

Membrane-type-1 matrix metalloproteinase is abundantly expressed in fibroblasts and osteoclasts at the bone-implant interface of aseptically loosened joint arthroplasties in situ.

OBJECTIVE: To investigate the distribution pattern of membrane-type-1 matrix metalloproteinase (MT1-MMP) within the synovial-like interface membranes of failed prosthetic joints. METHODS: Interface tissue around loose arthroplasties containing both fibrous membrane and attached bone was obtained from 6 patients at revision surgery. In situ hybridization with digoxigenin labeled RNA probes was applied to investigate MT1-MMP expression in paraffin sections of the samples. In addition, double labeling using immunohistochemistry was performed to characterize MT1-MMP producing cells. RESULTS: Apart from being present in fibroblasts, MT1-MMP was also found expressed in osteoclasts at sites of bone resorption. Our results revealed no expression of MT1-MMP at parts of the membrane that originally had been located next to the prosthesis. In contrast, abundant staining for MT1-MMP was observed at sites attached to bone. MT1-MMP mRNA expression was more intense at those sites of bone resorption covered by a thicker interface membrane. CONCLUSION: These results indicate a role for MT1-MMP not only in matrix degradation by fibroblasts but also in osteoclast mediated bone resorption. Given the ability of MT1-MMP to activate MMP2 and MMP13, they suggest also that osteoclasts might contribute to matrix degradation by activating these MMP. This could be of potential interest not only for other conditions in which bone resorption by fibroproliferative tissue plays a role, but also to design novel strategies to prevent loosening of prosthetic joints.

Arthroplasty, Replacement↗

Interleukin-16, produced by synovial fibroblasts, mediates chemoattraction for CD4+ T lymphocytes in rheumatoid arthritis.

The massive infiltration of synovium with CD4+ T cells during the course of rheumatoid arthritis (RA) implies the expression of chemoattractant factors by resident synovial cells. Therefore, we analyzed the expression of IL-16, a potent chemoattractant for CD4+ T cells, to account for the accumulation of CD4+ T cells in RA. Indeed, IL-16 was found to be significantly elevated in synovial fluid (SF) from patients with RA as compared to non-RA arthritis (p < 0.001), osteoarthritis (p < 0.001) and controls (p < 0.001). Chemotaxis studies showed IL-16 to contribute to the strong chemotactic activities of RA-SF. In situ hybridization (ISH) revealed IL-16 mRNA-expressing cells located within the lining layer of rheumatoid synovial tissue. In the sublining area, only scattered IL-16 transcript-positive cells could be detected, mainly adjacent to blood vessels. By a double-labeling technique, combining ISH for IL-16 mRNA and immunohistochemistry for CD68, synovial fibroblast-like, CD68-negative cells were identified as a major source of IL-16 mRNA within RA synovium. This study demonstrates that synovial fibroblasts produce IL-16 in RA and thus mediate chemoattraction of CD4+ cells into synovial tissue.

Adult↗

Do antivirals have any utility in the treatment of arthritis?

Viruses have been linked to arthritides by several pathways. Apart from the ability of different viral pathogens to cause arthritic symptoms directly, only some circumstantial evidence for the involvement of (retro)viruses in the pathogenesis of rheumatoid arthritis has been presented in recent years. Therefore, the question of whether antiviral agents can be used to treat arthritis has become of interest. However, the mechanisms by which exogenous retroviral infection as well as activation of endogenous retroviral sequences may potentially lead to the induction of rheumatoid arthritis is just beginning to emerge. Moreover, the hypothesis that persistent viral infection may account for some hitherto unclassified, chronic arthritides, still needs to be confirmed. Therefore, the use of antiviral agents in the treatment of arthritides has been limited to viral complications of anti-arthritic therapy and to some experimental approaches. In this review, we will focus on current concepts of viral involvement in arthritis and point to future directions in the use of antiviral agents for arthritis.

Journal Article↗

[Serotonin concentration in serum of patients with generalized tendomyopathy (fibromyalgia) and chronic polyarthritis].

The serum concentration of serotonin (S-5-HT) was measured in 31 patients with primary fibromyalgia, 21 patients with rheumatoid arthritis (RA) (15 of them with secondary fibromyalgia) and 20 healthy volunteers. Both patients with primary fibromyalgia and rheumatoid arthritis had significantly lower S-5-HT levels when compared to healthy controls, and S-5-HT concentrations in patients with secondary fibromyalgia were even significantly lower than those of RA-patients. Unlike the patients with rheumatoid arthritis, a significant correlation between S-5-HT level and the number of "tender points" as well as mean pressure tenderness at 24 different points was found in patients with primary fibromyalgia. Conversely, in patients with rheumatoid arthritis the S-5-HT level correlated significantly with erythrocyte sedimentation rate. These results suggest different pathological mechanisms of S-5-HT decrease in patients with primary fibromyalgia and rheumatoid arthritis. On the other hand, they raise the question whether secondary fibromyalgia may be a pathogenetically different syndrome mimicking symptomatically primary fibromyalgia.

Adult↗

[Basic therapy of rheumatoid arthritis. Comparison of methotrexate and sulfasalazine].

In a retrospective analysis a total of 167 patients with rheumatoid arthritis (RA) who had been treated with the basic therapy formulas of methotrexate (MTX) or sulfasalazine (SUL) were evaluated with respect to therapeutical result and side effects after a period of 12 months. There was no randomization as to either MTX (n = 87) or SUL therapy (n = 80), but deliberate use of therapy according to prior treatment and activity of the illness. Apart from a significantly higher number of inflammatory joint conditions in the MTX group there was no difference in the two patient groups at the beginning of the study. MTX treatment led clearly to a more conspicuous activity decrease of the illness (ESR, joint index) and a more favourable effect on the locomotor function. Furthermore, the sphygmomanometer readings (for grip strength determination), the dose reduction of the concomitant prednisolone medication as well as the doctor's opinion were in favour of MTX. The portion of patients who had to discontinue the therapy because of side effects (= 11%) and lack of effect (= 9%) was exactly identical in both groups of patients. Both substances have shown to be effective basic therapy formulas for rheumatoid arthritis, while methotrexate has a few advantages.

Arthritis, Rheumatoid↗