As zymosan-induced arthritis in rats combines dual activation of early prostaglandindependent processes (edema, fever, pain) and IL-1 related effects on cartilage metabolism, we compared the respective influences of indomethacin (IMT) and dexamethasone (DEX) on its course. Different parameters were assessed: knee swelling, febrile response, loss of activity, cartilage metabolism and histology. DEX improved all these parameters, while IMT exerted only light beneficial effects on fever and knee swelling without obvious beneficial influence on cartilage metabolism and histological lesions. These results suggest that anti-inflammatory activities of DEX and IMT are due to interferences with different pathways during zymosan-induced arthritis in rats.
A single intra-articular (ia) injection of 2 mg zymosan on D0 led to the production of acute periarticular edema followed by subacute erosive synovitis. The development of the zymosan-induced arthritis was associated with an initial loss of running activity and with an initial decrease of proteoglycan synthesis. Febrile response was present only on D1. In addition, on D20 synovial pannus led to a marked depletion of the proteoglycan content in the articular cartilage. When injected ia, IL1β (1 μg) provoked similar fever and similar changes in cartilage anabolism, but did not affect cartilage proteoglycan content (D20). These results suggest that zymosan-induced synovitis in the rat combines early prostaglandin-dependent processes (edema, pain, fever) with IL1-related effects on cartilage metabolism, thus allowing evaluation of chondroprotective drugs.
The systemic effects of human recombinant Interleukin-1 beta (HrIL-1 beta) on hindpaw edema were determined in arthritis induced by human native type II collagen (CII) with muramyl dipeptide (MDP) both injected on day 0. Daily treatment with HrIL-1 beta (0.2 microgram sc) pretreatment, from D-1 (the day before MDP and CII were injected) to D3 significantly delayed the secondary inflammation in the uninjected left hindpaw, whereas the same treatment from D6 to D10 at the end of the "primary" inflammation, enhanced the volume of the left hindpaw. Treatment from D13 to D17 did not affect the "secondary" edema in the left hindpaw. Thus, HrIL 1 beta administration produces pro- or anti-inflammatory effects on a developing polyarthritis depending on when treatment is started and is most effective as an anti-inflammatory molecule when started at the peak of the the inflammatory reaction, as previously described. In view of these early findings, we have compared the effect of adding HrIL-1 beta along with MDP in the sensitization procedure on the time-course of CII-induced arthritis. No adjuvant effect of HrIL-1 beta was observed. On the contrary, HrIL-1 beta significantly decreased the signs of inflammation in the injected hindpaw during the secondary inflammation. In addition, the immune response to type II collagen was less in the group receiving HrIL-1 beta, maybe because of nonspecific increase of antigen clearance. On the other hand, the MDP sensitization procedure enhanced the incidence of CII arthritis and significantly worsened the clinical parameters in both primary and secondary inflammations.
The effects of sulphasalazine and related drugs on various models of arthritis are reviewed. Dosage regimen and duration of the treatment are of importance, as is the animal species, in determining clinical, biological, or radiological responses. Considering these parameters together with differences in administration protocols, it is not surprising that various drug effects are reported in the published studies. There is some evidence that sulphasalazine displays beneficial activity in attenuating experimental synovitis, but its influence only becomes apparent after a few weeks of therapy, thus functioning as a slow-acting antirheumatic drug. In contrast, sulphasalazine does not seem to be effective on the cicatricial ossifying process. Nevertheless, the respective therapeutic and remission-inducing effects of the parent drug, sulphasalazine, and its main moieties, 5-aminosalicylic acid and sulphapyridine, remain controversial.
The effects of human recombinant interleukin-1 beta (HrIL-1 beta) were investigated in arthritic rats sensitized with type II collagen (CII) and muramyl dipeptide (MDP). When administered subcutaneously (sc) daily during established arthritis, low (0.02 micrograms) and medium (0.2 micrograms) HrIL-1 beta doses exerted paradoxical beneficial properties on paws with moderate and severe inflammation, respectively. In contrast, the highest dose (2 micrograms) had a pejorative effect on developing arthritis. In addition, HrIL-1 beta attenuated paw volume and deterioration of the joints as assessed radiologically. Hence, paw inflammation response to IL-1 exposure depended on the dosage and the severity of previous arthritis prior to the IL-1 challenge. Some of these paradoxical activities may be due to the capacity of IL-1 to induce its own inhibitors or feedback loops thus counterbalancing its phlogistic properties.
Serum hyaluronic acid (HA) may provide a good marker for the severity of joint disease in the rat since a positive correlation was observed in experimental models of arthritis. However, little is known about its physiological variation in rats. In the present work, we do not find any circadian rhythm of HA in healthy Sprague-Dawley rats in contrast to that observed in humans, whose serum levels vary during daytime. Furthermore, the influence of blood sampling conditions on HA concentrations was evaluated in conscious animals and by using different anesthetics. The greater reproducibility for the assay of HA is observed with the intracardiac puncture under ether inhalation. Blood sample collection in the absence of anesthesia leads to a significant increase in serum levels of HA, which could be attributed partly to enhanced joint movements generated by psychological stress.
Serum hyaluronic acid (HA) may provide a good marker for the severity of joint disease in the rat since a positive correlation was observed in experimental models of arthritis. However, little is known about its physiological variation in rats. In the present work, we do not find any circadian rhythm of HA in healthy Sprague-Dawley rats in contrast to that observed in humans, whose serum levels vary during daytime. Furthermore, the influence of blood sampling conditions on HA concentrations was evaluated in conscious animals and by using different anesthetics. The greater reproducibility for the assay of HA is observed with the intracardiac puncture under ether inhalation. Blood sample collection in the absence of anesthesia leads to a significant increase in serum levels of HA, which could be attributed partly to enhanced joint movements generated by psychological stress.