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A G Alexander

Publications and source records attributed to A G Alexander.

At least 19 recordsLinked to original sources

Trial of cyclosporin in corticosteroid-dependent chronic severe asthma.

The treatment of chronic severe asthma is unsatisfactory for many patients. In a randomised, double-blind, placebo-controlled, crossover trial we have tested whether cyclosporin, which is thought to act primarily by inhibition of T lymphocyte activation, improves lung function in corticosteroid-dependent asthmatics. After a 4-week run-in period, 33 patients with longstanding asthma (mean duration 27 years), and who had required continuous oral corticosteroids for a mean of 9.3 years, were randomised to receive either cyclosporin (initial dose 5 mg/kg per day) or placebo for 12 weeks, crossing over after a 2-week washout period. Mean baseline forced expiratory volume in 1 s (FEV1) was 60.1% of the predicted value. 2 patients failed to complete the protocol and 1 withdrew because of hypertrichosis. Cyclosporin therapy resulted in a mean increase above placebo of 12.0% in morning peak expiratory flow rate (PEFR; p less than 0.004) and 17.6% in FEV1 (p less than 0.001). The frequency of disease exacerbations requiring an increased prednisolone dose was reduced by 48% in patients on cyclosporin compared with placebo (p less than 0.02). Diurnal variation in PEFR decreased by a mean of 27.6% (p = 0.04). Cyclosporin for 12 weeks was well tolerated by this group of chronic asthmatics, in whom the mean whole-blood trough concentration was 152 micrograms/l. These findings provide further evidence of a role for activated T lymphocytes in the pathogenesis of asthma. Specific pharmacological targeting of this cell could form the basis of a novel approach to the treatment of asthma.

Adult

Identification of a mycoplasmal protein which binds immunoglobulins nonimmunologically.

Immunoblotted protein samples from several strains of Mycoplasma hominis and from one strain of Mycoplasma arginini each contain a polypeptide of a molecular mass of 95,000 to 105,000 Da which binds immunoglobulin nonimmunologically. Immunoblots from these organisms were probed with alkaline phosphatase-conjugated goat anti-rabbit immunoglobulin, conjugated goat immunoglobulin G (IgG) Fab fragments, and conjugated goat IgG Fc fragments. The polypeptide bound the goat anti-rabbit molecules and the Fab fragments but not the Fc fragments. These reactions could be blocked with nonimmune unconjugated goat IgG and unconjugated human IgM. Controls probed with alkaline phosphatase alone did not stain. Binding of the conjugated preparations to whole mycoplasmal cells was dependent on concentrations of both conjugate and cells for the goat anti-rabbit preparation and for Fab. The mycoplasmal polypeptide may be a light-chain-specific reactant.

Animals

Analysis of protein antigens of Mycoplasma hominis: detection of polypeptides involved in the human immune response.

Immunoblotting of polypeptide antigens after polyacrylamide gel electrophoresis was used to analyze clinical strains of Mycoplasma hominis. There was increased antibody titer for polypeptides comprising a wide range of molecular sizes between paired sera obtained from patients with indication of invasive infection. Eight of these antigens were shown to be candidate surface antigens. Absorption of hyperimmune rabbit serum with intact cells resulted in elimination or reduction in intensity of bands for these molecules. The antigens p115 and p98 appeared to be present in each of six clinical strains that were compared by reaction with the reference rabbit antiserum. There was considerable diversity of migration position for the remaining antigens in the profiles of these six strains.

Antigens, Bacterial

Application of charge shift electrophoresis to antigenic analysis of mycoplasmic membranes by two-dimensional (crossed) immunoelectrophoresis.

Both the anodic migration and resolution of membrane antigens of Mycoplasma arginini were greatly improved in two-dimensional immunoelectrophoresis by incorporating both a neutral detergent, Triton X-100, and an anionic detergent, sodium deoxycholate, in the agarose support for first phase electrophoresis. The mobility of cytoplasmic antigens was unaffected at concentrations of 0.1% or less of sodium deoxycholate.

Antigens, Bacterial

Characterization of membrane and cytoplasmic antigens of Mycoplasma arginini by two-dimensional (crossed) immunoelectrophoresis.

Two-dimensional immunoelectrophoresis was employed to electrophoretically identify membrane and cytoplasmic antigens of Mycoplasma arginini G-230. Five distinct cytoplasmic antigens were observed in soluble fractions prepared by digitonin lysis with electrophoretic mobilities (relative to bovine albumin) ranging from 0.36 to 0.86; four of these were common to other M. arginini strains: leonis and 23243. Five membrane antigens were identified, two of which (0.4 and 0.2) were common to the other M. arginini strains. The most prominent antigenic component of the membrane fraction (the complex membrane antigen) was electrophoretically heterogeneous, showing four antigenically related components with electrophoretic mobilities of 1.2, 0.95 to 0.76 and 0.05. The complex membrane antigen was exposed on the outside of the mycoplasmic cell because absorption of antiserum with live organisms removed antibody to this component. Antibodies to two other membrane components (0.6 and 0.2) were removed by absorption with Triton-solubilized membranes, but not by untreated membranes, indicating that these components were, at best, little exposed on either membrane surface. Antiserum was prepared against the complex membrane antigen using precipitin lines from two dimensional electropherograms as the immunogen. This antiserum reacted only with the complex membrane antigen and did not react with the other M. arginini strains, indicating that the complex membrane antigen was unique to strain G-230.

Antigens, Bacterial

Gingival retraction.

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Dental Impression Technique