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Biomedical subjects

B Jaffee

Publications and source records attributed to B Jaffee.

8 recordsLinked to original sources

Side effects of brequinar and brequinar analogues, in combination with cyclosporine, in the rat.

Brequinar is an immunosuppressant with the potential to be combined with cyclosporine in synergistic combination therapy. The drug tends to accumulate when given daily per os, and pharmacokinetic interaction with cyclosporine appears to enhance toxicity. Analogues with similar immunosuppressive activity have been identified at Du Pont Merck Pharmaceutical Co., that do not accumulate upon daily oral dosing in rats, and hence could have an improved potential in combination treatment with cyclosporine. We performed a toxicity study with brequinar and two brequinar analogues, administered orally once daily for 4 weeks, either alone or in combination with cyclosporine (Neoral, Novartis Pharma AG). In a first study relatively high doses were evaluated with cyclosporine at non-toxic doses of 5 and 10 mg/kg/d. The maximum tolerated dose of brequinar alone was estimated between 5 and 10 mg/kg/d; that of the analogues was estimated between 10 and 20 mg/kg/d, and above 20 mg/kg/d, respectively. In combination with cyclosporine at 5 and 10 mg/kg/d, approximately a 2-fold reduction in the maximum tolerated dose was observed. In a second study lower doses were evaluated in combination with cyclosporine at 2.5 and 5 mg/kg/d. Also this study revealed increased toxicity of brequinar (analogues) when given in combination with cyclosporine. The side effects observed were typical for drugs in the brequinar class and included leukocytopenia and thrombocytopenia, reduced body weight gain or body weight loss, thymic atrophy, cellular depletion of bone marrow and splenic white pulp, and villous atrophy in jejunum. Concentrations of brequinar (analogues) were determined in blood sampled 4 h after administration at day 1, 14 and 21-28 of the experiment. There was a tendency for drug accumulation in some groups treated with brequinar and cyclosporine. For one of the analogues at a low dose, higher concentrations were measured in groups treated with combinations of this compound and cyclosporine. We conclude that a potential synergism in immunosuppression using combinations of brequinar (analogues) and cyclosporine can be complicated by enhanced toxicity of the compounds. This indicates the need for a careful evaluation of the therapeutic window in a combined treatment together with detailed pharmacokinetics.

Administration, Oral

Antiinflammatory 4,5-diarylpyrroles: synthesis and QSAR.

A series of 2-substituted- and 2,3-disubstituted-4-(4-fluorophenyl)-5-[4-(methylsulfonyl)phenyl]-1H- pyrroles was synthesized and found to be active in the rat adjuvant arthritis model of inflammation. The most active compounds were the 2-halo derivatives in the order of chloro > bromo > iodo. The same pattern of activity was observed for the 2,3-dihalopyrroles. Quantitative structure-activity relationship studies suggested that the activity could be correlated with the molar refractivity and the inductive field effect of the 2-substituent and the lipophilicity of the 3-substituent.

Animals

Brequinar sodium: monitoring immunosuppressive activity.

There has been remarkable consistency in our laboratory for the experimental results derived from a variety of allogeneic and xenogeneic models of organ transplantation using BQR, a primary immunosuppressive agent, to prevent graft rejection. Considerable knowledge exists in a number of species with respect to the dose-response immunosuppressive efficacy, organ specificity, peripheral drug measurements, toxic side-effects, species sensitivity, and synergistic drug interactions. Despite the complexity of transferring experimental results to the clinical setting, the cumulative experience with this new immunosuppressive compound suggests that it may be highly effective when used for clinical transplantation. The identification of a predictive monitoring technique(s) would provide clinicians with a highly sensitive marker to effectively regulate BQR posttransplantation immunosuppressive therapies. Although the maintenance of a "therapeutic window" of immunosuppressive efficacy did not necessarily prevent the rejection of allografts or xenografts in the rat models tested, there was an important correlation between elevated BQR levels and the onset of recipient toxicity. Increased morbidity and mortality was noted when BQR blood levels were elevated above 16 micrograms/mL. The measurement of pyrimidine biosynthetic pathway metabolites provided a direct correlation between graft viability, global depletion of nucleotides (UTP, CTP, ATP, GTP), and suppression of PHA-mitogenic lymphocyte proliferative responses when different doses of BQR were tested. The analysis of these parameters were less informative following combination therapy with CsA. As with other immunosuppressive agents, the difficulty in relying exclusively on plasma trough drug levels as an accurate means to project graft viability may be influenced by individual differences in absorption, metabolism, and excretion of the compound. Additional parameters that may provide valuable information for the posttransplant therapeutic course include drug bioavailability, peak levels, drug clearance, or inhibition of immune response. It is anticipated that these studies will provide important baseline information for further refinement of these monitoring techniques to aid in posttransplant patient management.

Animals

The physical environment and social welfare.

Besides providing shelter and space for organized work and play, the physical environment symbolically communicates important information about the attributes and tasks of social systems and about the dynamics of individuals operating within those systems. The environment also influences the behavior of system participants.

Facility Design and Construction

Inhibition of the pyrimidine biosynthetic pathway with S-8660, an analogue of brequinar sodium, prolongs cardiac allograft survival in rats.

The compound S-8660 is a member of a family of antiproliferative drugs that act on de novo pyrimidine synthesis through selective inhibition of the mitochondrial enzyme dihydroorotate dehydrogenase. S-8660 is highly effective in preventing the development of delayed-type hypersensitivity in mice and in suppressing human mixed-lymphocyte responses. We have tested its ability to prevent cardiac allograft rejection in the ACI (RT1a) to Lewis (RT1(1)) rat strain combination, based on the immunosuppressive activity of this compound and its similarity to another member of this group, brequinar sodium. Daily oral administration of the drug (5 to 20 mg/kg) was begun 2 days before transplantation and extended for periods of time up to 30 days after graft placement. Control grafts were promptly rejected (median survival time, 7.0 +/- 0.5 days). Administration of S-8660 was effective in extending graft survival in a dose-dependent fashion. The efficacy of S-8660 could be improved with a high initial concentration of the drug, followed by a reduction ("tapering") in the level of drug administration (median survival time, 32.0 +/- 4.6 days) or by use in combination with cyclosporine. The differences in the mode of action of S-8660, when compared to cyclosporine or FK 506, suggest that the disruption of de novo pyrimidine synthesis may be an effective and safe addition to a polytherapeutic approach for the prevention of allograft rejection in clinical transplantation.

Animals