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Specificity of T cells in synovial fluid: high frequencies of CD8(+) T cells that are specific for certain viral epitopes.

INTRODUCTION: Epstein-Barr virus (EBV) is transmitted orally, replicates in the oropharynx and establishes life-long latency in human B lymphocytes. T-cell responses to latent and lytic/replicative cycle proteins are readily detectable in peripheral blood from healthy EBV-seropositive individuals. EBV has also been detected within synovial tissue, and T-cell responses to EBV lytic proteins have been reported in synovial fluid from a patient with rheumatoid arthritis (RA). This raises the question regarding whether T cells specific for certain viruses might be present at high frequencies within synovial fluid and whether such T cells might be activated or able to secrete cytokines. If so, they might play a 'bystander' role in the pathogenesis of inflammatory joint disease. OBJECTIVES: To quantify and characterize T cells that are specific for epitopes from EBV, cytomegalovirus (CMV) and influenza in peripheral blood and synovial fluid from patients with arthritis. METHODS: Peripheral blood mononuclear cells (PBMCs) and synovial fluid mononuclear cells (SFMCs) were obtained from patients with inflammatory arthritis (including those with RA, osteoarthritis, psoriatic arthritis and reactive arthritis). Samples from human leucocyte antigen (HLA)-A2-positive donors were stained with fluorescent-labelled tetramers of HLA-A2 complexed with the GLCTLVAML peptide epitope from the EBV lytic cycle protein BMLF1, the GILGFVFTL peptide epitope from the influenza A matrix protein, or the NLVPMVATV epitope from the CMV pp65 protein. Samples from HLA-B8-positive donors were stained with fluorescent-labelled tetramers of HLA-B8 complexed with the RAKFKQLL peptide epitope from the EBV lytic protein BZLF1 or the FLRGRAYGL peptide epitope from the EBV latent protein EBNA3A. All samples were costained with an antibody specific for CD8. CD4+ T cells were not analyzed. Selected samples were costained with antibodies specific for cell-surface glycoproteins, in order to determine the phenotype of the T cells within the joint and the periphery. Functional assays to detect release of IFN- or tumour necrosis factor (TNF)- were also performed on some samples. RESULTS: The first group of 15 patients included 10 patients with RA, one patient with reactive arthritis, one patient with psoriatic arthritis and three patients with osteoarthritis. Of these, 11 were HLA-A2 positive and five were HLA-B8 positive. We used HLA-peptide tetrameric complexes to analyze the frequency of EBV-specific T cells in PBMCs and SFMCs (Figs 1 and 2). Clear enrichment of CD8+ T cells specific for epitopes from the EBV lytic cycle proteins was seen within synovial fluid from almost all donors studied, including patients with psoriatic arthritis and osteoarthritis and those with RA. In donor RhA6, 9.5% of CD8+ SFMCs were specific for the HLA-A2 restricted GLCTLVAML epitope, compared with 0.5% of CD8+ PBMCs. Likewise in a donor with osteoarthritis (NR4), 15.5% of CD8+ SFMCs were specific for the HLA-B8-restricted RAKFKQLL epitope, compared with 0.4% of CD8+ PBMCs. In contrast, we did not find enrichment of T cells specific for the HLA-B8-restricted FLRGRAYGL epitope (from the latent protein EBNA3A) within SFMCs compared with PBMCs in any donors. In selected individuals we performed ELISpot assays to detect IFN- secreted by SFMCs and PBMCs after a short incubation in vitro with peptide epitopes from EBV lytic proteins. These assays confirmed enrichment of T cells specific for epitopes from EBV lytic proteins within synovial fluid and showed that subpopulations of these cells were able to secrete proinflammatory cytokines after short-term stimulation. We used a HLA-A2/GILGFVFTL tetramer to stain PBMCs and SFMCs from six HLA-A2-positive patients. The proportion of T cells specific for this influenza epitope was low (<0.2%) in all donors studied, and we did not find any enrichment within SFMCs. We had access to SFMCs only from a second group of four HLA-A2-positive patients with RA. A tetramer of HLA-A2 complexed to the NLVPMVATV epitope from the CMV pp65 protein reacted with subpopulations of CD8+ SFMCs in all four donors, with frequencies of 0.2, 0.5, 2.3 and 13.9%. SFMCs from all four donors secreted TNF after short-term incubation with COS cells transfected with HLA-A2 and pp65 complementary DNA. We analyzed the phenotype of virus-specific cells within PBMCs and SFMCs in three donors. The SFMC virus-specific T cells were more highly activated than those in PBMCs, as evidenced by expression of high levels of CD69 and HLA-DR. A greater proportion of SFMCs were CD38+, CD62L low, CD45RO bright, CD45RA dim, CD57+ and CD28- when compared with PBMCs. DISCUSSION: This work shows that T cells specific for certain epitopes from viral proteins are present at very high frequencies (up to 15.5% of CD8+ T cells) within SFMCs taken from patients with inflammatory joint disease. This enrichment does not reflect a generalized enrichment for the 'memory pool' of T cells; we did not find enrichment of T cells specific for the GILGFVFTL epitope from influenza A or for the FLRGRAYGL epitope from the EBV latent protein EBNA3A, whereas we found clear enrichment of T cells specific for the GLCTLVAML epitope from the EBV lytic protein BMLF1 and for the RAKFKQLL epitope from the EBV lytic protein BZLF1. The enrichment might reflect preferential recruitment of subpopulations of virus-specific T cells, perhaps based on expression of selectins, chemokine receptors or integrins. Alternatively, T cells specific for certain viral epitopes may be stimulated to proliferate within the joint, by viral antigens themselves or by cross-reactive self-antigens. Finally, it is theoretically possible that subpopulations of T cells within the joint are preferentially protected from apoptotic cell death. Whatever the explanation, the virus-specific T cells are present at high frequency, are activated and are able to secrete proinflammatory cytokines. They could potentially interact with synoviocytes and contribute to the maintenance of inflammation within joints in many different forms of inflammatory arthritis.

Antigens, Surface↗

Penetration of a topically applied nonsteroidal anti-inflammatory drug into local tissues and synovial fluid of dogs.

OBJECTIVE: To investigate penetration of a topically applied nonsteroidal anti-inflammatory drug (NSAID) into tissues and synovial fluid. ANIMALS: 5 Greyhounds. PROCEDURE: Dogs were anesthetized and microdialysis probes placed in the dermis and gluteal muscle over each coxofemoral (hip) joint. Methylsalicylate (MeSA) was applied topically over the left hip joint. Dialysate and plasma (blood samples from the cephalic and femoral veins) were obtained during the subsequent 5 hours. Dogs were euthanatized, and tissue samples and synovial fluid were collected and analyzed for salicylic acid (SA) and MeSA by use of high-pressure liquid chromatography. RESULTS: SA and MeSA concentrations increased rapidly (< 30 minutes after application) in dialysate obtained from treated dermis. Salicylic acid also appeared in plasma within 30 minutes and reached a plateau concentration after 2 hours, although combined drug concentrations (SA plus MeSA) in plasma obtained from femoral vein samples were twice those measured in plasma obtained from the cephalic vein (SA only). Treated muscle had a progressive decrease in NSAID concentration with increasing depth (SA and MeSA), but it was significantly higher than the concentration in untreated muscle. Substantial amounts of SA and MeSA were also measured in synovial fluid of treated joints. CONCLUSIONS AND CLINICAL RELEVANCE: Topically applied NSAIDs can penetrate deeply into tissues and synovial fluid. Local concentrations higher than circulating systemic concentrations are suggestive that direct diffusion and local blood redistribution are contributing to this effect. Systemic blood concentrations may be inadequate to describe regional kinetics of topically applied drugs.

Administration, Cutaneous↗

Tumor necrosis factor in synovial fluid of patients with temporomandibular disorders.

PURPOSE: To assess tumor necrosis factor (TNF) activity in synovial fluid from patients with temporomandibular disorders. PATIENTS AND METHODS: Tumor necrosis factor (TNF) activity in synovial fluid from 27 patients with temporomandibular disorders (TMDs) was studied using the MTT tetrazolium WEHI 164 clone 13 cell cytotoxicity assay. RESULTS: No detectable TNF levels were found in five patients with a masticatory muscle disorder, but elevated TNF levels were found in 5 of 11 patients with TMJ disc displacement, and in 9 of 11 patients with degenerative joint disease. CONCLUSION: The findings of biologically active TNF in the synovial fluid of these patients suggests that it may play a role in the pathogenesis of certain temporomandibular disorders.

Adolescent↗

Tyrosine phosphorylation in neutrophils from synovial fluid of patients with rheumatoid arthritis.

The priming of neutrophils is associated with an increase in the level of tyrosine phosphorylation of cytosolic proteins, specifically of proteins with mol. wts of 42 and 74 kDa. We show here, using dot blots and Western blotting, that neutrophils isolated from rheumatoid synovial fluid have increased tyrosine phosphorylation of these target proteins. The level of tyrosine phosphorylation within neutrophils in the synovial fluid was increased when compared with neutrophils from the blood of the same patients, normal blood or neutrophils from the synovial fluid of patients without rheumatoid arthritis. Neutrophils from the rheumatoid synovial fluid were also more active and were unable to be further primed by exogenous primers. These data suggest that this elevation of tyrosine phosphorylation was the result of the action of local priming agents within the rheumatoid synovial fluid.

Adult↗

Complement activating properties of complexes containing rheumatoid factor in synovial fluids and sera from patients with rheumatoid arthritis.

The relationship between complexes containing rheumatoid factor and complexes activating complement was examined in synovial fluids and sera from patients with rheumatoid arthritis (RA). In each case this was performed by quantifying the amount of rheumatoid factor bound by solid phase Fab'2 anti-C3 and/or solid phase conglutinin. Both anti-C3 coated and conglutinin coated microtitre plates bound high levels of complexes containing rheumatoid factor from sera of RA patients with vasculitis. Unexpectedly, these complexes were detected in synovial fluids from only a minority of RA patients with synovitis. However, RA synovial fluids did contain other complexes as shown by the presence of complement consuming activity, C1q binding material and immunoglobulin attaching to conglutinin. It is considered that in RA synovial fluids the complexes containing RF and those activating complement are not necessarily the same whilst in vasculitic sera the complexes containing rheumatoid factor also activate complement.

Adult↗

[Clinical usefulness of the measurement of type-II procollagen carboxypeptide (C-II propeptide, pColl-II-C) in synovial fluid as a marker of collagen metabolism in cartilage].

Type-II procollagen-C-peptide (pColl-II-C) in synovial fluids was studied in 319 patients with osteoarthritis (OA; 151), rheumatoid arthritis (RA; 141), traumatic arthritis (TA; 27) and 15 healthy volunteers using the newly developed ELISA kit. The mean levels of pColl-II-C in synovial fluids of healthy controls, OA, TA, and RA were 0.3 +/- 0.1 ng/ml, 5.9 +/- 0.3 ng/ml, 6.8 +/- 1.4 ng/ml and 1.1 +/- 0.1 ng/ml, respectively. pColl-II-C levels in synovial fluids of OA and TA were significantly higher compared to those of healthy controls and RA. It was also demonstrated that pColl-II-C levels could reflect the quantitative and qualitative change of cartilage metabolism. Therefore, the quantification of this molecule in synovial fluid could be beneficial to know the synthetic activity of type II collagen of chondrocytes, since pColl-II-C is a part of the precursor molecule of type II collagen.

Adolescent↗

Nanobacteria-like particles in human arthritic synovial fluids.

We investigated the existence of nanosize particles in synovial fluids of rheumatoid arthritis and osteoarthritis patients. These specimens were cultured under mammalian cell culture conditions (37 degrees C; 5% CO2/95% air) for a long period. After about 2 months, many nanoparticles appeared and they gradually increased in number and in size. The nanobacteria-like particles exist in synovial fluids of arthritis patients. The possibility of their existence and pathogenesis in various diseases should be verified cautiously.

Aged↗

Stimulation of rheumatoid synovial and blood T cells and lines by synovial fluid and interleukin-2: characterization of clones and recognition of a co-stimulatory effect.

Rheumatoid arthritis (RA) is characterized by the presence of interleukin-2 (Il-2) receptor-positive T cells in the peripheral blood and synovial compartments. Utilizing the limiting dilution technique, the precursor frequencies of Il-2 responsive T cells were determined in peripheral blood and synovial sites from RA patients and in the blood of normal donors. The frequencies of Il-2 responsive T cells were significantly higher in RA patients (range from 1/180 to 1/7432) compared to normal donors (range from 1/400 to 1/8163). T-cell clones raised by the addition of Il-2 alone were predominantly of the CD4-positive phenotype. Peripheral blood T cells, synovial T-cell clones and lines derived from RA patients were co-stimulated with Il-2 and synovial fluid or supernatants from cultured synovial lining cells. This co-stimulation induced a strikingly enhanced proliferative T-cell response while synovial fluid alone was without effect. This stimulatory activity was found in the high molecular weight range (approximately 150 kDa) and could not be attributed to the action of immunoglobulins or known cytokines such as Il-2 or interleukin-1 (Il-1), suggesting the activity of a material that modulates the Il-2-dependent growth of T cells. The co-stimulatory capacity of synovial fluid with Il-2 may be relevant to the activated state, especially of synovial T cells.

Adult↗

High incidence of spontaneous Ig-producing lymphocytes in peripheral blood and synovial fluid of patients with active seropositive rheumatoid arthritis.

Numbers of in vitro spontaneous IgG, IgM and IgA plaque-forming cells (PFC) as assessed by a modification of the protein A haemolytic plaque assay were determined in the blood and synovial fluid of patients with seropositive rheumatoid arthritis (RA) and compared with those of control groups. The total numbers of PFC were significantly higher in the peripheral blood of patients with active seropositive RA than in that of normal controls. In addition, most B lymphocytes in the synovial fluid of patients with active seropositive RA were active immunoglobulin (Ig) producers, whereas synovial fluid lymphocytes from patients with inactive seropositive RA and seronegative arthritis were not. In general, IgA PFC were relatively high in blood, whereas IgG PFC dominated in the synovial fluid. IgM PFC appear to be relatively low in blood and synovial fluid. However, a relative increase of IgG PFC was noted in the peripheral blood of patients with active RA. To test for polyclonality of the increased Ig synthesis, we tested the sera of patients and controls for the presence of polyclonal antibodies against sheep erythrocytes (SRBC) and SRBC modified by fluorescein isothiocyanate (FITC) and trinitrophenyl (TNP). No differences were observed with SRBC and TNP-SRBC agglutinin titres between patients and controls, but patients with RA had higher titres of FITC-SRBC agglutinins than normal sera. This finding supports the concept of a polyclonal nature of antibody production in RA patients.

Adult↗

Extraction of calcium containing crystals from synovial fluids and articular cartilage.

A protocol for extracting minerals from biological tissues and fluids has been developed. Synovial fluid (SF) and articular cartilage samples were treated with papain and sodium hypochlorite to extract and concentrate calcium containing crystals. The method was validated by testing the ability to reextract synthetic calcium pyrophosphate dihydrate and calcium hydroxyapatite crystals added to SF in an unchanged form. The extracted crystals were analyzed by infrared spectroscopy and X-ray powder diffraction. The concentration of both calcium pyrophosphate dihydrate and hydroxyapatite crystals in SF was found to be higher than published figures.

Calcium↗

Correlation between arthroscopic diagnosis of osteoarthritis and synovitis of the human temporomandibular joint and keratan sulfate levels in the synovial fluid.

PURPOSE: The specific aims of this investigation were to determine if there is a relationship between an arthroscopic diagnosis of synovitis and osteoarthritis, and if the presence of synovitis influences the level of cartilage degradation, as evidenced by keratan sulfate levels in the synovial fluid. PATIENTS AND METHODS: Arthroscopic surgery was performed on 114 temporomandibular joints in 88 patients who had significant pain or dysfunction and whose condition had failed to improve with conservative treatment. Synovial fluid aspirates were obtained immediately before arthroscopy and used for the determination of keratan sulfate levels. Arthroscopic examination included assessment of the presence or absence of osteoarthritis and synovitis. RESULTS: Synovitis was present in 90% of joints, and osteoarthritis was present in 62% of joints examined arthroscopically. Both osteoarthritis and synovitis existed in 57% of the joints. Joints with an arthroscopic diagnosis of synovitis had significantly lower levels of keratan sulfate in the synovial fluid aspirates than joints with osteoarthritis. Synovial fluid aspirates from temporomandibular joints with osteoarthritis had significantly higher levels of keratan sulfate than synovial fluids from joints without osteoarthritis. CONCLUSIONS: Osteoarthritis and synovitis are common diagnoses and are often present concurrently in patients with symptomatic temporomandibular joints. Osteoarthritis is associated with elevated keratan sulfate levels; however, the elevation of keratan sulfate is less in patients with concomitant synovitis.

Analysis of Variance↗

Oxidative modification of inflammatory synovial fluid immunoglobulin G.

The release of highly reactive oxygen-derived products by activated phagocytic cells in inflammatory foci plays a major role in defense mechanisms against infection and in the generation of tissue injury. Oxidative modification of proteins in inflammatory foci may give rise to products that contribute to the perpetuation of inflammation. The present studies analyze the oxidative alterations of inflammatory synovial fluid immunoglobulin G (IgG). IgG was purified from the synovial fluids of five patients with rheumatoid arthritis and two patients with acute gouty arthritis by three sequential steps: gel filtration chromatography, immunoaffinity chromatography, and a final gel filtration chromatography step under dissociative conditions (4 M guanidine). The resulting protein peaks of > 150 kDa (pool I-1), 150 kDa (pools I-2 and II-2), and < 150 kDa (pools I-3 and II-3) were tested for the presence of a fluorescence profile distinctive of oxidized proteins, the peak corresponding to monomer IgG (pool II-2) was subjected to quantitative amino acid analysis, and the results were compared with a standard preparation of normal IgG oxidized with HOCl. In addition, the protein pools were tested for the presence of lipid peroxide products. The results indicate that a portion of the affinity-purified IgG formed high-molecular-mass covalently cross-linked aggregates as evidenced by its presence in the > 150-kDa pool after dissociatve gel filtration chromatography. Moreover, this fraction and the pool corresponding to monomer IgG (pool II-2) exhibited the fluorescence profile characteristic of oxidized proteins. Amino acid analysis of the monomer IgG fraction revealed decreases in the content of histidine, methionine, tyrosine, and cysteine, which were similar to the alterations measured in normal IgG oxidized by HOCl. The synovial fluid and standard oxidized IgG showed the presence of oxidative by-products of tyrosine (monochlorotyrosine) and cysteine (cysteic acid). The synovial fluid IgG yielded a novel component that was not present in the standard control or oxidized IgG. This component was partially identified by mass spectrometry. Finally, the smaller peptide fraction isolated from affinity-purified synovial fluid IgG (pools I-3 and II-3) only after the gel filtration chromatography step under dissociative conditions exhibited evidence of oxidative damage and the presence of high concentrations of thiobarbituric acid-reactive material (TBAR). These observations suggest that oxidative processes in inflammatory foci generate products derived from protein and lipids that may contribute to the self-perpetuation of inflammation.

Amino Acids↗

Latent collagenase of rheumatoid synovial fluid is not of granulocytic origin.

The physicochemical properties of three latent collagenases derived from rheumatoid synovial fluid, polymorphonuclear leucocytes and culture medium of rheumatoid synovium were compared. It has been shown that synovial fluid enzyme is similar to that of synovium collagenase from tissue culture and differs significantly in molecular size and protein charge from granulocyte collagenase. The results indicate that the latent, trypsin-activable collagenase present in rheumatoid synovial fluid is not of granulocytic origin and seems to derive from the synovial membrane.

Arthritis, Rheumatoid↗

Identification of crystals in synovial fluids and joint tissues.

The identification of crystals in synovial fluids and joint tissues is the most rapid and accurate method of diagnosing the common forms of crystal-associated arthritis. Although there are numerous methods available for identifying and characterizing crystals in biologic specimens including x-ray crystallography and Fourier transform infrared spectroscopy, in practice, polarizing light microscopy is used almost exclusively for articular crystals. Unfortunately, problems with reliability and reproducibility undercut the usefulness of this simple procedure. This article highlights recent developments in the field and discusses the importance of identifying synovial fluid crystals, proper handling of specimens, and the appropriate use of available technologies for crystal identification.

Aged↗

Temporomandibular joint synovial fluid analysis.

A method for the estimation of the synovial fluid volume of the temporomandibular joint (TMJ) is described. Patients are administered 1.2 g of aspirin and the concentration of salicylate in plasma and in saline aspirates of the TMJ is measured by a sensitive high performance liquid chromatography assay. The ratio of the concentration of salicylate in the saline aspirate to that in the plasma allows the volume of the synovial fluid to be calculated. The method would also allow the determination of the concentration and the absolute amount of putative mediators of pathology in the upper joint.

Adolescent↗

Impaired blastogenic response of lymphocytes from synovial fluid and peripheral blood of patients with rheumatoid arthritis.

Synovial fluid lymphocytes from patients with rheumatoid arthritis demonstrated a markedly diminished blastogenic response to both phytohemagglutinin and pokeweed mitogens, when compared to normal peripheral blood lymphocytes. The blastogenic response to rheumatoid peripheral blood lymphocytes to both mitogens was also depressed, when compared to the response of normal lymphocytes, but the difference was less marked and was within limits which could be accounted for by recent salicylate therapy. Lymphocytes of both peripheral blood and synovial fluid of rheumatoid patients showed a delayed response to PHA (five days to achieve maximum thymidine incorporation vs four days for normals).

Arthritis, Rheumatoid↗

Evidence of reactive oxygen species generation in synovial fluid from patients with temporomandibular disease by electron spin resonance spectroscopy.

Reactive oxygen species (ROS) have been implicated in the pathogenesis of temporomandibular disorders. In the present study, we provide the first evidence of ROS generation in the synovial fluid from human temporomandibular disorder patients, as shown by electron spin resonance (ESR) and spin trapping. Three distinct ESR spectra of DMPO spin adducts were observed in the synovial fluid. They corresponded to three free radical species: hydroxyl radical (HO(*)), hydrogen radical (H(*)), and carbon-center radical (R(*)). Among them, the 5,5-dimethyl-1-pyrroline-N-oxide (DMPO)-OH spectrum was the most prominent, suggesting that HO(*) was dominantly generated in the synovial fluid from temporomandibular disorder patients. Desferrioxamine (DFO), an iron chelator, strongly depressed the DMPO-OH signal intensity in the synovial fluid from patients with temporomandibular disorders. We successfully demonstrated ROS-induced oxidative stress in the synovial fluid from temporomandibular disorder patients. ROS generation in the temporomandibular joint could lead to exacerbation of inflammation and activation of cartilage matrix degrading enzymes that proceed to degenerative change of the temporomandibular joint. Thus, iron-dependent generation of HO( *) might have a crucial role in the pathogenesis of temporomandibular disorders.

Adolescent↗

Bovine plasma and synovial fluid kinetics of methylprednisolone and methylprednisolone acetate after intra-articular administration of methylprednisolone acetate.

After an intra-articular administration of methylprednisolone acetate (MPA) in the cow, methylprednisolone (MP) was detected in the synovial fluid, at pharmacologically significant concentrations, during more than 3 months. From in vitro assay, it was shown that hydrolysis of MPA to MP was rapid both in blood (half-times from 11.8 to 21.7 min) and in synovial fluid (half-times from 45.6 to 130.3 min). After intra-articular administration of MPA as a suspension (200 mg in toto), both MP and MPA decline very rapidly and, 24 hr after injection, less than 1% of the dose was present in the synovial fluid, but systemic availability of MP during the first 24 hr was only 30% of the dose. Twenty-four hours postadministration, post-mortem examinations showed a significant quantity of MPA precipitated at the bottom of the synovial cavity. It was assumed that the relatively slow decline of MP synovial fluid concentration from 24 hr to 5 days postadministration was due mainly to a process of MP absorption. After this delay, the synovial fluid concentration decreased very slowly with an apparent half-time of 18 days. This has been tentatively explained in terms of a slow release of MP from MPA embedded in a fibrin-like deposit. Despite the fact that the quantity of MP absorbed each day was small, long-term systemic effects were observed. During 6 weeks, plasma hydrocortisone levels remained low or undetectable and the return to normal adrenal responsiveness to an adrenocorticotropic hormone test took 12 weeks.

Adrenal Glands↗