PubMed HealthSearch

Biomedical subjects

I M Hunneyball

Publications and source records attributed to I M Hunneyball.

At least 19 recordsLinked to original sources

Disease-modifying anti-rheumatic drugs: strategies for screening.

Rheumatoid arthritis, a disease of unknown aetiology, has a multifactorial pathogenesis which may result in irreversible connective tissue destruction and loss of joint function. The search for drugs which offer more than symptomatic relief is a long term, largely unachieved aim of many pharmaceutical companies. This review briefly outlines those features of the aetiopathogenesis which appear to offer targets for therapeutic intervention and the structured strategy and test systems that can be used to detect drugs which may be capable of halting disease progression.

Animals

Differential inotropic effects of flosequinan in ventricular muscle from normal ferrets versus patients with end-stage heart failure.

1. In right ventricular papillary muscles from control ferrets, flosequinan (10(-7)-10(-4) M) produced a concentration-dependent positive inotropic effect (10(-5) M = 153 +/- 24, 10(-4) M = 198 +/- 44% increase in isometric tension; control tension = 100%; n = 11) associated with a corresponding increase in amplitude of the intracellular Ca2+ ([Ca2+]i) transient recorded with aequorin (10(-5) M = 133 +/- 11, 10(-4) M = 187 +/- 36% increase in [Ca2+]i transient; n = 11). 2. The positive inotropic effect of flosequinan in control ferret ventricular muscle was neither blocked by propranolol (6 x 10(-7) M), nor associated with the abbreviation of the [Ca2+]i transient and contraction that is typical of catecholamines. 3. Neither flosequinan (n = 12) nor BTS 53 554, its sulphone metabolite (n = 6) produced a positive inotropic effect or altered the time course of contraction in myocardium from the hearts of patients with end-stage failure. 4. In contrast to milrinone, which produces a positive inotropic effect via phosphodiesterase inhibition, the unresponsiveness of myopathic human myocardium to flosequinan was not restored after intracellular adenosine 3':5'-cyclic monophosphate (cyclic AMP) levels were increased by prior treatment with forskolin (n = 13). 5. Taken together, these data indicate that flosequinan has a direct positive inotropic effect that is Ca(2+)-dependent, but independent of changes in intracellular cyclic AMP concentrations. 6. The positive inotropic effect may be species-dependent or altered by the presence of hypertrophy and/or heart failure. However, when used therapeutically in patients with severe heart failure, our data suggest that flosequinan should not adversely affect myocardial oxygen consumption through direct or catecholamine-mediated actions on the heart.

Animals

Evaluation of reconstituted Sendai virus envelopes as intra-articular drug vectors: effects on normal and experimentally arthritic rabbit knee joints.

Fusogenic vesicles reconstituted from the envelopes of Sendai virus particles were injected into rabbit knee joints (both normal and experimentally arthritic) to evaluate the in-vivo biocompatibility of these putative drug carriers. The reconstituted Sendai virus envelopes (RSVE) were greater than 80% retained within the arthritic knee joints after 24 h and studies with 125I- and fluorescein-labelled RSVE both showed association of the vesicles with the synovia of arthritic and healthy joints. However, RSVE were found to cause inflammation after intra-articular injection, as judged by joint swelling and histological assessment, and these effects were exacerbated by successive administrations. RSVE-entrapped methotrexate, whether free or conjugated to human serum albumin, was ineffective in preventing the irritancy of RSVE or in reducing the chronic inflammation in joints affected by an experimentally induced arthritis.

Animals

Sendai-viral HN and F glycoproteins as probes of plasma-membrane protein catabolism in HTC cells. Studies with fusogenic reconstituted Sendai-viral envelopes.

Reconstituted Sendai-viral envelopes (RSVE) were produced by the method of Vainstein, Hershkovitz, Israel & Loyter [(1984) Biochim. Biophys. Acta 773, 181-188]. RSVE are fusogenic unilamellar vesicles containing two transmembrane glycoproteins: the HN (haemagglutinin-neuraminidase) protein and the F (fusion) factor. The fate of the viral proteins after fusion-mediated transplantation of RSVE into hepatoma (HTC) cell plasma membranes was studied to probe plasma-membrane protein degradation. Both protein species are degraded at similar, relatively slow, rates (t1/2 = 67 h) in HTC cells fused with RSVE in suspension. Even slower degradation rates for HN and F proteins (t1/2 = 93 h) were measured when RSVE were fused with HTC cells in monolayer. Lysosomal degradation of the transplanted viral proteins is strongly implicated by the finding that degradation of HN and F proteins is sensitive to inhibition by 10 mM-NH4Cl (81%) and by 50 micrograms of leupeptin/ml (70%).

Ammonium Chloride

Albumin microspheres for intra-articular drug delivery: investigation of their retention in normal and arthritic knee joints of rabbits.

The retention of 131I-labelled albumin microspheres and microsphere-entrapped [131I]rose bengal was investigated in normal and experimentally arthritic knee joints of rabbits. Albumin microspheres were cleared slowly from the joint cavity and no significant difference was observed between normal and inflamed joints. Entrapment of rose bengal within albumin microspheres was found to delay the clearance of the drug from the joint when compared with a solution of rose bengal. In addition, the retention time for entrapped rose bengal was dependent on the degree of inflammation present.

Albumins

Studies on the effects of pharmacological agents on antigen-induced arthritis in BALB/c mice.

The model of antigen-induced monoarticular arthritis in BALB/c mice, originally described by Brackertz et al. (1), has been examined with regard to disease pathogenesis and the activities of established antirheumatic agents. The acute phase of the arthritis, up to 7 days after intra-articular (IA) challenge, was characterized by intense polymorphonuclear leukocyte infiltration into the challenged joint, synovial lining cell hypertrophy and hyperplasia, accumulation of mononuclear cells within the subsynovial tissue, and pannus formation. Erosions of articular cartilage and bone commenced 7-14 days after IA challenge and progressed with time. Chronic synovitis was still evident 56 days after IA challenge. Prednisolone at 1 and 5 mg/kg, when administered against an established arthritis (dosing days 14-42), suppressed the histopathological changes. A similar level of suppression was observed when prednisolone was administered from days 0-42, indicating that the drug had no additional effect on the development phase of the arthritis. The non-steroidal anti-inflammatory agents (NSAIAs) indomethacin, ibuprofen and flurbiprofen failed to suppress either the established or developing disease. Daily treatment with D-penicillamine, tiopronin or chloroquine on days 14-42 had no significant effect on the arthritis; treatment with either D-penicillamine or chloroquine on days 0-56 was also ineffective. When administered on days 14-42 or 0-42 neither gold thiomalate nor auranofin were able to suppress the erosive changes. Sulphasalazine (10-30 mg/kg) suppressed the arthritis whereas sulphapyridine was inactive. Azathioprine (20 mg/kg) suppressed the erosive changes when administered over days 14-42 or 0-42; this activity was associated with toxicity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Pharmacological studies of antigen-induced arthritis in BALB/c mice. I. Characterization of the arthritis and the effects of steroidal and non-steroidal anti-inflammatory agents.

Chronic monoarticular allergic arthritis was induced in BALB/c mice using methylated BSA as antigen and Freund's complete adjuvant, together with Bordetella pertussis as a secondary adjuvant. The optimum conditions for induction of chronic persistent arthritis and the histological characteristics of the arthritic lesion are described. Both the synovitis and erosive progression of the arthritis could be suppressed by daily treatment with prednisolone (1-10 mg/kg) or dexamethasone (0.5-2.5 mg/kg) for 4 weeks commencing 2 weeks after the induction of arthritis. In contrast, daily treatment with the non-steroidal anti-inflammatory agents ibuprofen (50-100 mg/kg), flurbiprofen (1-9 mg/kg) or indomethacin (0.1-3 mg/kg) had no significant effect on either the synovitis or erosions as judged histologically. Synovial fluid differential leukocyte counts were altered by treatment with ibuprofen and indomethacin but not by flurbiprofen or the corticosteroids. The suppressive effect of the corticosteroids was not due to either suppression of antibody synthesis or alteration of the number of leukocytes in the peripheral circulation.

Animals

Pharmacological studies of antigen-induced arthritis in BALB/c mice. II. The effects of second-line antirheumatic drugs and cytotoxic agents on the histopathological changes.

The effects of treatment with second-line antirheumatic drugs and cytotoxic agents on the severity of experimental monoarticular arthritis in BALB/c mice have been investigated. The arthritis was assessed histologically in terms of synovitis and erosions of cartilage and bone. Azathioprine (20 mg/kg) and sulphasalazine (10-30 mg/kg oral; 30-100 mg/kg i.p.) produced significant suppression of synovitis and erosions when administered daily for 4 weeks commencing 2 weeks after induction of the arthritis. Dapsone (1-10 mg/kg) and to a lesser extent methotrexate (2 mg/kg) produced some suppression of erosive disease when administered daily for 4 weeks commencing 2 weeks after induction of the arthritis but this failed to reach statistical significance. Chloroquine, D-penicillamine and sodium aurothiomalate all failed to have any effect on the disease with any of the treatment schedules used. Auranofin had no effect on the disease when treatment commenced 2 weeks after intra-articular injection but produced variable suppression at high doses when administered from the day of intra-articular injection.

Animals

Acute phase protein changes in antigen-induced mono-articular arthritis in rabbits and mice.

Acute phase protein levels have been measured during the induction and progression of antigen-induced mono-articular arthritis in rabbits and mice. In rabbits there was a short lived elevation in serum C-reactive protein (CRP) and erythrocyte sedimentation rate (ESR) immediately following intra-articular injection which returned to baseline levels 10-12 days after the injection. In BALB/c mice, serum amyloid P-component (SAP) and the third component of complement (C3) were elevated after intra-articular injection, returning towards baseline levels 6 weeks after the injection. The levels of CRP and SAP correlated with the inflammatory changes in the joints during the acute phase of the arthritic response (7 days after intra-articular injection). During the chronic phase the levels of these acute phase proteins bore no relationship to the degree of connective tissue destruction.

Acute-Phase Proteins

Lymphocytes bearing Fc gamma receptors in rheumatoid arthritis. II. Phenotypic characterisation of mononuclear cells forming Facb rosettes in RA.

We have previously reported an increased proportion of Facb-rosette forming cells in the peripheral blood of patients with rheumatoid arthritis in comparison with healthy controls. The present study investigates the surface phenotype of these cells by means of monoclonal antibodies and a variety of rosetting and lymphocyte fractionation techniques. Facb-R+ cells were found to lack surface markers characteristic of T and B lymphocytes. Studies with monoclonal reagents showed a positive reaction with OKIa1, OKM1, and another monocyte-specific antibody. Fac-R+ cells were recognised by anti-HLA-DR reagents but did not bind the monoclonal antibody 17.15 that recognises a determinant on HLA-DR antigens expressed by lymphocytes but not monocytes. These results show that Facb-R+ cells share certain surface characteristics with monocytes, though they are not phagocytic. These observations are consistent with an accessory role for Facb-R+ cells in the immune response.

Antibodies, Monoclonal

Lymphocytes bearing Fc gamma receptors in rheumatoid arthritis. III. Immunoregulatory function associated with Facb rosette-forming cells.

A subpopulation of mononuclear cells (PBMNC) that expresses Fc receptors with specificity for the C gamma 2 region of IgG may be detected by rosette formation with calf erythrocytes coated with the Facb fragment of rabbit IgG. These Facb-R+ cells are found in increased numbers in the peripheral blood of patients with rheumatoid arthritis (RA). Studies have been carried out to identify the functional properties of these cells in healthy and rheumatoid subjects. Facb-R+ cells were shown to lack both natural killer and antibody-dependent cytotoxic activity. Depletion of Facb-R+ cells from both healthy and rheumatoid PBMNC resulted in a marked suppression of pokeweed mitogen (PWM) stimulated IgG synthesis but had no effect on T cell proliferation induced by phytohaemagglutinin, concanavalin A, or PWM. The addition of Facb fragments to PBMNC cultures also caused inhibition of PWM-driven IgG production. In this assay rheumatoid PBMNC were significantly less sensitive to Facb-mediated suppression than healthy control cells. Our results suggest that Facb-R+ cells are involved in the antibody-mediated feedback regulation of immunoglobulin synthesis and that this mechanism is impaired in patients with RA.

Antibody Formation

Recent advances in the use of microspheres for targeted therapy.

In recent years the concept of using small colloidal particles for the selective delivery of drugs has been explored experimentally using a variety of different physical systems (for example, phospholipid vesicles (liposomes), triglyceride emulsions, albumin microspheres) and routes of administration. In such studies the aim has been to target a potent pharmacological agent on an organ or tissue site, thereby reducing adverse reactions and side-effects, or to provide a means of controlled release. The design of appropriate delivery systems must take into account the nature of the target and physiological barriers to targeting as well as factors such as drug loading and drug release, stability of the carrier system and its biocompatibility and biodegradation. Targeting with microspheres can be divided into passive methods that rely upon physiological and physicochemical determinants such as entrapment in capillary beds (lungs - particle size) or uptake by phagocytic cells (liver-surface characteristics), an active method whereby the particle is directed to a specific site through the use of surface coatings (surfactants, glycolipids, monoclonal antibodies) or a material sensitive to an external influence. Candidate systems presently under study are described. These include lipid emulsions for intravenous administration and microspheres for intra-articular delivery.

Adrenal Cortex Hormones

Studies on the release of proteolytic enzymes during synovium-induced cartilage breakdown in vitro and the actions of anti-inflammatory drugs.

Pig articular cartilage, overlaid with a minced preparation of synovium from the same joint, underwent extensive matrix degradation during a two-week culture period. This degradation was associated with de novo synthesis by the synovium of specific neutral proteoglycan- and collagen-degrading enzymes. Both enzymes exhibited neutral pH optima, and were inhibited by serum and the metal ion chelators EGTA and 1,10-phenanthroline. The neutral proteoglycanase cleaved the core protein of isolated proteoglycan. The effects of some anti-inflammatory drugs on synovial enzyme production and cartilage metabolism were investigated. The steroids, dexamethasone and prednisolone, inhibited production of both enzymes whereas the non-steroidal anti-inflammatory drugs (NSAID's), flurbiprofen and indomethacin, slightly increased medium enzyme levels. Flurbiprofen and indomethacin had no effect on the extent of synovium-mediated cartilage degradation as assessed histologically. Inhibition by the steroids of synovial collagenase production correlated with inhibition of cartilage collagen breakdown, whereas inhibition of synovial proteoglycanase production did not prevent extensive proteoglycan breakdown. Experiments using radiotracer techniques indicated that dexamethasone, whilst partially inhibiting synovium-mediated proteoglycan degradation, severely inhibited cartilage proteoglycan synthesis thus resulting in net proteoglycan loss.

Animals

Preparation and evaluation of biodegradable polymeric systems for the intra-articular delivery of drugs.

Colloidal suspensions of four biodegradable polymers, polylactic acid (PLA), polybutylcyanoacrylate (PBCA), gelatin (PG) and albumin (PA) were prepared within the size range 1-10 micron. In-vivo biocompatibility tests with synovial tissues were carried out to assess the irritancy of the polymers following intra-articular injection into rabbit knee joints. PLA, PBCA and PG were found to cause joint inflammation whereas PA was well tolerated by the tissues. PA microspheres may provide a means of sustaining the release and reducing the rate of clearance of drugs from the knee joint.

Albumins