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Biomedical subjects

D Pratt

Publications and source records attributed to D Pratt.

At least 73 records · Page 4Linked to original sources

Antagonism by fenamates of prostaglandin action in guinea-pig and human alimentary muscle.

1 Low concentrations of meclofenamate, flufenamate or mefenamate had little effect on contractions in response to acetylcholine in any tissue studied. 2 Sodium meclofenamate potently antagonized contractions of guinea-pig ileum longitudinal muscle to prostaglandin E2 (PGE2), PGF2 alpha or PGD2. 3 In guinea-pig colonic longitudinal muscle, contractions to PGE2 were reduced by sodium meclofenamate, but contractions of the longitudinal or circular muscle to PGF2 alpha or PGD2 were less effectively inhibited. 4 In human gastrointestinal longitudinal muscle, sodium meclofenamate or flufenamate potently inhibited contractions to PGF2 alpha, but not to PGE2. 5 Sodium mefenamate or mefenamic acid, even in high concentrations, had little effect on contractions to PGF2 alpha, but tended to inhibit PGE2-induced contractions of human gastrointestinal longitudinal muscle. 6 The therapeutic advantages of prostaglandin synthesis inhibitors which also antagonize responses to certain prostaglandins are discussed.

Animals↗

The ultrasound diagnosis of rectus sheath haematoma.

Three cases of rectus sheath haematoma are presented in which the diagnosis was confirmed by the use of ultrasound. The aetiology and diagnosis of the disease are discussed and the use of ultrasonography in a disease with a previously low preoperative diagnostic rate is emphasized.

Abdominal Muscles↗

Biochemical and physiological properties of alkaline phosphatases in five isolates of marine bacteria.

The alkaline phosphatase activities of five unique isolates of marine bacteria were found to be associated with the periplasmic space; however, the enzymes from these isolates differed with respect to their repressibility, the apparent number of isoenzymes, the necessity for Mg2 for activity, and the conditions required for their release. With three of the isolates, the enzyme was released when cells that had been washed in 0.5 M NaCl were suspended in sucrose; however, with the other two isolates, one required the additional presence of tris(hydroxymethyl)aminomethane and the other required the presence of lysozyme and ethylenediaminetetraacetic acid. In two isolates the activity was constitutive, in two it was partially repressed, and in one it was completely repressed by inorganic phosphate. The repression of activity was associated with corresponding changes of activity bands as seen by acrylamide gel electrophoresis.

Alkaline Phosphatase↗

Antiserum inactivation of electrophoretically purified M13 diploid virions: model for the F-specific filamentous bacteriophages.

Antiserum inactivation experiments were carried out on electrophoretically purified diploid virions from a cross between two complementing amber mutants of phage M13. The total (homozygous plus heterozygous) diploid population, assayed on a permissive host where only one genome is needed for plaque formation, was inactivated at the same rate as haploids. Heterozygous diploids, assayed on a nonpermissive host, where both genomes are needed for plaque formation, were twice as sensitive as haploids and the total diploid population. These results have led us to propose a model for serum inactivation of the F-specific filamentous phages. According to this model, phage-neutralizing antibodies attach anywhere along the length of the phage and allow the phage to penetrate only up to the first bound antibody molecule.

Adsorption↗

The proteins of bacteriophage M13.

Particles of the small filamentous coliphage M13 contain not only the major coat protein, which is the product of phage gene 8, but also a minor coat protein, the A protein, which is the product of gene 3. The A protein has a molecular weight of approximately 70,000 daltons, is present in one copy per virion, and is responsible for phage attachment to host cells. Also associated with purified M13 particles is a minor quantity of very small proteinaceous material, but its origin as a phage-coded product has not been demonstrated. At least five phage-specific proteins, including the two coat proteins, are present in appreciable quantities in M13-infected cells. The principal phage protein synthesized is the product of gene 5, which is responsible for phage single-stranded DNA synthesis. This protein has a molecular weight of about 8,000 daltons. Its precise function in DNA synthesis is not yet known. Phage proteins are synthesized at nearly normal rates in cells in which replication of phage double-stranded DNA is blocked by gene 2 mutations. This result suggests that the initial double-stranded DNA molecule serves as the principal template, perhaps the only template, for phage messenger RNA synthesis.

Coliphages↗