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Auranofin. A preliminary review of its pharmacological properties and therapeutic use in rheumatoid arthritis.

Auranofin is the first orally active gold compound for the treatment of rheumatoid arthritis. Like other chrysotherapeutic agents, its exact mechanism of action is unknown, but it probably acts via immunological mechanisms and alteration of lysosomal enzyme activity. Although long term clinical experience with auranofin is limited, its efficacy appears to approach that of sodium aurothiomalate. Further comparative studies with aurothioglucose, hydroxychloroquine and D-penicillamine are required before definitive statements can be made regarding the relative efficacy of auranofin and these agents. While patients have demonstrated clinical remission of rheumatoid arthritis in response to auranofin therapy, radiological studies have been inconclusive regarding its effect on the occurrence or progression of erosive lesions. Auranofin is relatively well tolerated in most patients, but diarrhoea, skin rash, and pruritus are sometimes troublesome, and thrombocytopenia and proteinuria are potentially serious side effects which may occur during therapy. Whereas mucocutaneous side effects are more frequent with injectable gold compounds, gastrointestinal reactions are the most common adverse effect seen with auranofin. The frequency of side effects has been similar with auranofin and sodium aurothiomalate, but they are generally less severe with auranofin. While some of the side effects are controlled by a reduction in dosage, temporary or permanent withdrawal of auranofin may be necessary. Auranofin is clearly a useful addition to the limited list of agents with disease-modifying potential presently available for the treatment of rheumatoid arthritis. It will doubtless generate much interest as its final place in therapy becomes better defined through additional well-designed studies and wider clinical experience.

Absorption↗

Effect of auranofin (SK&F 39162) on water and electrolyte flux in canine small bowel: a possible diarrheogenic mechanism.

Auranofin (AF) a new antiarthritic gold compound effective when administered orally, frequently causes diarrhea with abnormal stool electrolyte content. Studies were designed to determine the mechanism of the diarrhea caused by AF. In perfused canine Thiry-Vella loops, AF caused significant elevations in effluent volume, osmolarity, and sodium concentration and a significant decrease in potassium concentration. In mucosal homogenates of rat small bowel, AF inhibited sodium, potassium ATPase in a concentration dependent manner. AF did not alter canine colonic smooth muscle activity in vitro. We suggest that AF induced diarrhea results from interruption of normal water and electrolyte absorption by inhibition of enterocyte sodium, potassium ATPase activity.

Animals↗

In vitro and in vivo antitumor properties of tetrakis((trishydroxy- methyl)phosphine)gold(I) chloride.

A novel hydrophilic gold compound, tetrakis((trishydroxymethyl)phosphine)gold(I) chloride 1, has been investigated for its antitumor properties. In vitro studies demonstrate that 1 is active against HCT-15, AGS, PC-3, and LNCaP tumor cells. Cell cycle analysis of the HCT-15 cells by flow cytometry revealed elongation of the G1 phase of the cell cycle leading to growth inhibition. Administration of 1 to Balb/C mice inoculated with syngenic meth/A cells demonstrated statistically significant dose-dependent survival time.

Animals↗

A multicentre double-blind comparison of auranofin, intramuscular gold thiomalate and placebo in patients with psoriatic arthritis.

The efficacy and safety of the oral gold compound auranofin and intramuscular gold thiomalate have been compared in a placebo-controlled, double-blind, four-centre trial in 82 patients with psoriatic arthritis requiring remittive drug therapy. There were statistically significant falls in Ritchie articular index, visual analogue pain score and ESR at 12 and 24 weeks following i.m. gold but no significant changes in the auranofin group. Intramuscular gold was safe and more effective than auranofin as a second-line, suppressive antirheumatic agent for patients with psoriatic arthritis when followed for 6 months.

Adult↗

Current concepts in clinical therapeutics: disease-modifying drugs for rheumatoid arthritis.

The epidemiology, pathophysiology, clinical features, diagnosis, and clinical course of rheumatoid arthritis (RA) and the role of disease-modifying antirheumatic drugs (DMARDs) in its treatment are reviewed. RA, a widespread disease affecting people of all races and sexes around the world, has an unknown and perhaps multifactorial etiology. Conflicting evidence supports an immune-complex, infectious, metabolic, or genetic basis for RA. The disease affects diarthrodial joints and begins as an immune response to unknown antigenic stimuli. A proliferative process ensues, leading to formation of a vascular lesion called a pannus, which then infiltrates into cartilage, subchrondral bone, and tendon. This destructive phase leads to classic RA symptoms of pain, limitation of motion, swelling, heat, and redness of the affected joint. Symptoms and laboratory tests form the basis for diagnosis. For most RA patients, conservative therapy provides substantial benefit. In those patients who suffer from unrelenting and progressively destructive disease, more aggressive intervention is necessary to prevent permanent disability. The DMARDs are reserved for treatment of this group of patients. DMARDs include such diverse agents as the gold compounds aurothioglucose, auranofin, and gold sodium thiomalate; the antimalarials hydroxychloroquine sulfate and chloroquine phosphate; penicillamine; and the cytotoxic agents azathioprine, methotrexate, and cyclophosphamide. DMARDs are effective but toxic therapeutic agents. Because of the toxicities of these agents, careful monitoring at regular intervals is necessary throughout the duration of therapy. For patients in whom these drugs demonstrate efficacy and are tolerated, the DMARDs may attenuate the disabling effects of long-term erosive disease.

Adrenal Cortex Hormones↗

The history of gold therapy for tuberculosis.

This is a historical study of the popularization of a medical therapy contrary to pertinent experimental findings. Presumably this circumstance reflects the desperation about tuberculosis: highly prevalent, highly fatal, and lacking any etiologically directed therapy. Gold compounds were introduced, based initially on the reputation of Robert Koch, who had found gold cyanide effective against M. tuberculosis in cultures, but not in experimentally infected animals. Treatment of pulmonary tuberculosis with these compounds was popularized, particularly by Danish physicians, in the mid-1920s, despite consistently negative experimental results, based on Paul Ehrlich's theories of antimicrobial drug effects. Difficulties in the design of interpretable clinical studies were soon recognized but also generally ignored, thus permitting data to be interpreted as favorable to antituberculous gold therapy. Eventually toxicity was considered to outweigh the alleged therapeutic benefit of all gold compounds. This resulted in their discard shortly before the introduction of streptomycin therapy.

Arthritis, Rheumatoid↗

Gold and modulation of the immune response.

The effects of gold on immune responses are reviewed. Gold salts used therapeutically can be followed by a decline in serum immunoglobulin levels, and rheumatoid factor titers in rheumatoid arthritis; in pemphigus there is similarly a drop in anti-epithelial antibody titers. Gold inhibits stimulation of immunoglobulin-secreting cells. Gold inhibits the activation of the classical and alternate complement pathways. Gold compounds inhibit numerous cell-mediated immune responses to various mitogens and antigens. Inhibition may be due to the effect of gold on macrophages acting as helper cell in these reactions. Auranofin is a new oral compound which seems to be particularly potent in its immuno-regulatory actions; it differs from other gold compounds in its pharmacokinetics, and in the nature of its ligand. Gold has also been reported to enhance certain immune reactions. The extent of the immuno-regulatory effects of gold in vivo is unknown, and the relation of these effects to its therapeutic actions remains to be clarified.

Animals↗

Triethylphosphine gold: cellular uptake and disposition after single and repeated oral doses in rats.

The tissue and subcellular pharmacokinetics of gold following single and repeated oral doses of triethylphosphine gold (auranofin) has been studied in rats. After a single dose, the tissue and subcellular gold levels were 5-10 times lower than those reached with injectable gold compounds. In the liver tissues, gold concentrations peaked within 24 h followed by a biphasic clearance, with an initial rapid phase (t1/2 32 h) and a slow terminal phase (t 1/2 11 days). Renal gold concentrations continued to increase for 3 to 5 days and then decreased exponentially with a first order t 1/2 of about 7 days. Intracellularly, between 60-80% of hepatic and 50-70% of renal gold was present in the cytosol. In rats given repeated doses of auranofin, the hepatic and renal gold concentrations were 3-5 times higher than those measured after a single dose. The proportion of cellular gold present in the cytosol was markedly lower, with 43% in the liver and 30% in kidney tissues. In both the liver and kidney, gold concentrations were dose-dependent, whereas in the gastrointestinal tissues the increases as a function of dose were minimal.

Administration, Oral↗

Synthesis and biological activity of gold and tin compounds in ovarian cancer cells.

We have investigated the patterns of in vitro cytotoxicity, induced by six newly synthesized gold and tin compounds, in three human ovarian cancer cell lines (SW 626, IGROV 1 and OVCAR-3). Four gold compounds, i.e. gold(I)lupinylsulfide hydrochloride [1] (containing a naked gold atom), triethylphosphinogold(I)lupinylsulfide hydrochloride [2], triphenyl-phosphinogold(I)lupinylsulfide hydrochloride [3] and 1 ,2-bis(diphenylphosphino)ethane bis[gold(I)lupinylsulfide] dihydrochloride [4] (all containing a gold atom coordinated with different phosphines), were prepared. Moreover, the triethylphosphinogold(I)(2-diethylamino)ethylsulfide hydrochloride [5] in which the simple diethylaminoethylthiol replaced the bulky lupinylthiol was synthesized. The tin compound, triethyltin(IV)lupinylsulfide hydrochlorlde [6], was also studied. Comparative tests with cisplatin, the most widely used antitumor agent in ovarian cancer, were carried out in biological Investigations. In vitro cytotoxicity, by MTT assay, showed that compound [4] and compound [6] exhibited interesting antiproliferative activity in all the three cell lines (mean IC50=1.3 and 0.7 microM, respectively) compared to cisplatin (mean IC50=4.8 microM). In addition, the PA-1 cell line, more sensitive to cisplatin (IC50=0.6 microM), was included as a comparison in the study. Cell count assays confirmed the cytotoxic properties of compounds [4] and [6] against the four cell lines, reporting higher growth Inhibition potency than cisplatin, with IC50 values in the sub-micromolar range.

Antineoplastic Agents↗

The activity of metal compounds against aerobic and anaerobic bacteria.

We evaluated the antimicrobial activity of two metal compounds, JM-1397 (OsO2[xylyl]2) and JM-2469 (AuCl[S2CPEt3]). Both inhibited methicillin-susceptible and methicillin-resistant Staphylococcus aureus at concentrations of 0.5-2 micrograms/ml, with a minimum inhibitory concentration (MIC90) of 1 microgram/ml for JM-1397 and 0.5 microgram/ml for JM-2469. Similar concentrations inhibited methicillin-susceptible and -resistant coagulase-negative staphylococci (S. epidermidis, S. haemolyticus, and S. saprophyticus). JM-2469 inhibited group A, B, C, F, and G beta-hemolytic streptococci and viridans group streptococci at 1-8 micrograms/ml (MIC90 4 micrograms/ml) but Enterococcus faecalis and E. faecium had MICs of 8-16 micrograms/ml. JM-1397 had MICs for these organisms of greater than 64 micrograms/ml. Bacteroides fragilis, other Bacteroides, and Clostridium species were inhibited by less than or equal to 0.12-4 micrograms/ml (MIC90, 0.5 microgram/ml). MICs of both compounds for Enterobacteriaceae and Pseudomonas spp. were greater than 64 micrograms/ml. These studies show that osmium and gold compounds have potential as topical agents against Gram-positive and anaerobic species.

Anti-Bacterial Agents↗

Preclinical tolerance and pharmacokinetic assessment of MU-Gold, a novel chemotherapeutic agent, in laboratory dogs.

MU-Gold, tetrakis (trishydroxymethyl) phosphine gold(I) chloride, a novel gold compound, has cytotoxic effects against human androgen-dependent and -independent prostatic, gastric, and colonic carcinoma in cell culture and against malignant lymphoma in rodent models. A pilot study was conducted to evaluate the tolerance and pharmacokinetic properties of MU-Gold in normal dogs in anticipation of clinical trials in cancer-bearing dogs. MU-Gold (10 mg/kg) was administered by i.v. injection to three purpose-bred dogs. Serum was collected from all dogs for measurement of gold levels via atomic absorption spectrometry. In addition, complete blood counts and biochemical profiles were monitored for Dogs 2 and 3 every 7 days for 30 days. A two-compartment i.v. bolus model with first-order kinetics, mean elimination half-life of approximately 40 hours, and mean volume of distribution of 0.6 L/kg was established. Serum gold concentrations ranging from 10 to 50 mcg/ml were sustained for 2 to 3 days with no clinically significant toxicities observed. Based on in vitro results in earlier studies and preliminary pharmacokinetic data collected in the present study, Phase I clinical trials should be conducted to define the optimal dosage, dose-limiting toxicities, and other characteristics of MU-Gold that will be used to design Phase II clinical trials.

Animals↗

Rheumatoid arthritis: current concepts and management, Part 2.

Rheumatoid arthritis is a systemic disorder, but primarily involves chronic polyarticular inflammation. Conservative nondrug therapy and NSAIDs are indicated initially and are effective treatment for many RA patients. For those individuals with progressive unresponsive disease an SAARD should be used. All SAARDs exhibit severe and frequent adverse effects with the risk-to-benefit ratio being the determining factor in deciding which agent to use. The first to be used is usually a gold compound; antimalarials and penicillamine provide alternatives to gold therapy. Sulfasalazine may gain a role in the therapy of early progressive RA. Methotrexate has recently been given FDA approval for use in RA and can be used, if the first three agents fail. Azathioprine and cyclophosphamide are cytotoxic agents with an increased risk of producing malignancies, but their use is sometimes required to halt serious progressive RA. Chlorambucil or cyclosporin A are relatively toxic agents that may play a role in treating refractory RA. Corticosteroids should be used for short-term adjunctive therapy as intra-articular injections or oral therapy in individuals refractory to all other therapies. The use of SAARDs early in RA or in combination with one another is controversial.

Adult↗

Comparison of the kinetics of parenteral and oral gold.

The intramuscular (gold sodium thiomalate and aurothioglucose) and the orally (auranofin) administered gold compounds exhibit contrasting patterns of absorption, excretion and body tissue and fluid levels. The parenteral compounds are fully absorbed after injection but negligibly absorbed orally. Approximately 25% of the gold in auranofin is orally absorbed. Serum gold levels peak several hours after injection during conventional weekly treatment, attaining concentrations of 600-800 micrograms/dl, and then decline gradually, reaching 300-350 micrograms/dl before the next injection. Whole blood gold levels with auranofin vary from 10 to 90 micrograms/dl with doses of 1-9 mg/day. Blood gold levels plateau after 6-8 weeks with the injectable compounds and after 12 weeks with oral gold, reflecting the shorter blood half-life of gold sodium thiomalate (5.5 days) than of auranofin (17-26 days). A larger fraction of gold is within or attached to circulating blood cells, especially erythrocytes, with auranofin than with injectable gold. Fourty percent of the administered dose is excreted during injectable chrysotherapy, and 75-100% is recovered in excreta with auranofin. Parenteral gold is excreted primarily in urine (70%) while auranofin gold is recovered primarily in faeces (95%). Approximately 43% of intravenous radiolabelled gold sodium thiomalate is retained in the body at 60 days and 30% at 180 days; only 15% of radiolabelled auranofin remains at 10 days and less than 1% at 180 days. During injectable therapy, the total body burden of gold rises steadily; preliminary studies suggest minimal tissue accumulation with auranofin.

Administration, Oral↗

Auranofin affects early events in human polymorphonuclear neutrophil activation by receptor-mediated stimuli.

Auranofin, a new oral antirheumatic gold compound, in concentrations achieved therapeutically, inhibits neutrophil phagocytosis, chemotaxis, chemiluminescence, reduction of cytochrome c, and release of lysosomal enzymes. To further characterize the mechanism by which auranofin affects neutrophils, we studied the effects of auranofin on unstimulated properties and functions of neutrophils as well as on rapidly stimulated functions. When examined by electron microscopy, 4 micrograms/ml of auranofin significantly decreased the number of visualized centriole-associated microtubules in resting cells. Furthermore, auranofin inhibited neutrophil spreading on glass and caused a decrease in negative surface charge (electrophoretic mobility). In addition, auranofin inhibited several fmet-leu-phe-stimulated responses such as shape change, increases in centriole-associated microtubules, decreases in surface charge, and elicited membrane potential changes (di-O-C5(3) dye response). Auranofin (1 micrograms/ml) inhibited fmet-leu-phe-stimulated superoxide and hydrogen peroxide production by 80% (p less than 0.05), and also increased the affinity of receptors for fmet-leu-phe (from Ka 0.035 to Ka 0.48, p less than 0.001). Auranofin also affected neutrophil responses to phorbol myristic acetate (PMA). The total amount of PMA-stimulated superoxide production was suppressed by as little as 0.4 micrograms/ml of auranofin, but the lag time for activation was shortened by low concentrations of auranofin (0.5 to 1 microgram/ml). Four micrograms per milliliter of auranofin suppressed the decrease in surface charge induced by PMA. However, auranofin did not influence superoxide production elicited by the ionophore A23187. The results indicate that auranofin affects the earliest detected responses in neutrophil activation by certain receptor-mediated stimuli.

Anti-Inflammatory Agents↗

[Multicenter double-blind comparison of auranofin and Tauredon].

A multicenter double-blind comparative study with auranofin (Ridaura) and Na-auro-thiomalate (Tauredon) was carried out in order to investigate under controlled conditions whether the new oral gold compound may be an alternative to injections of gold salts. 121 patients were included in the study, data of 86 patients treated for at least one year could be analysed. The following parameters were examined at regular intervals: number of painful and swollen joints, grip strength, morning stiffness, pain and general health on the visual analogue scale, ESR; from these data the articular index and activity index (according to Lansbury, with slight modifications) were calculated. Blood samples for routine safety monitoring and serum gold levels as well as urine tests were obtained regularly. Both treatment groups showed similar improvement in the values for efficacy measurements after one year, starting within 8 to 12 weeks. Patients in the auranofin group with a disease duration of less than 2 years showed greater improvement in the values for efficacy assessment with the exception of grip strength and the number of tender joints than patients with a disease duration of 2 years or more. No such trend was seen in the Tauredon-subgroups. Numerous side effects were recorded in both groups: 89.7% of the patients on Tauredon and 68.8% of the patients on auranofin had observed one symptom during the course of one year. There was a clear distinction concerning the nature of side effects: mucocutaneous symptoms, especially rash and pruritus, were approximately twice as common with Tauredon, whereas diarrhoea was much more frequent in patients treated with auranofin.(ABSTRACT TRUNCATED AT 250 WORDS)

Anti-Inflammatory Agents↗

Effect of auranofin, a new antiarthritic agent, on immune complex-induced release of lysosomal enzymes from human leukocytes.

Auranofin, an oral chrysotherapeutic agent effective in the treatment of rheumatoid arthritis (RA), was found to be a potent, noncytotoxic inhibitor of IgG-RF immune complex-induced lysosomal enzyme release (LER) from human leukocytes. At a concentration of 1 microg Au/ml (5 microM), auranofin produced a marked reduction in beta-glucuronidase (100%), acid phosphatase (88%), and lysozyme (72%) release. In contrast, gold sodium thiosulfate (GST, an injectable gold compound) had no inhibitory activity on LER at equivalent gold concentrations (i.e., 1 microg Au/ml) and only modest activity (less than 36% inhibition) at concentrations as high as 40 microg Au/ml. The 50% inhibitory dose (LD50) of auranofin on LER was calculated to be 3-4 microM (0.6-0.8 microg Au/ml). Blood gold levels in auranofin-treated RA patients were found to be within the range required for in vitro inhibition of LER, and correlated with decreases in IgG, RF titers, and IgG-RF immune-complex formation in vitro. These results suggest that the therapeutic action of auranofin may be caused, at least in part, by inhibition of LER and/or decreases in immune-complex formation.

Antigen-Antibody Complex↗

Prospective studies of thyroid function in patients receiving gold therapy.

Gold inhibits the Type I deiodinase that provides the bulk of circulating T3 in humans. We prospectively studied thyroid function in patients receiving increasing parenteral cumulative gold doses. Eight consecutive euthyroid patients with rheumatoid or psoriatic arthritis who were initiating intramuscular gold therapy were enrolled. Serum thyroid hormone levels (total T4, T3, and rT3) and TSH were measured for each subject at various levels during gold therapy. For analysis, the free T4 and free T3 indices, TSH concentrations, and T4/T3 ratios were correlated with cumulative gold dose. Neither individual nor pooled linear regressions showed a significant correlation between cumulative gold dose and any of the thyroid function parameters. Thyroid function is not affected in patients receiving up to 1500 mg of gold compounds. The most likely explanation for this is that gold principally accumulates in the Kupffer cells and renal cortex and these cells do not express Type I deiodinase.

Adult↗