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Biomedical subjects

R M Hyde

Publications and source records attributed to R M Hyde.

At least 19 recordsLinked to original sources

Computer-aided design and synthesis of 5-substituted tryptamines and their pharmacology at the 5-HT1D receptor: discovery of compounds with potential anti-migraine properties.

The design and synthesis of a series of novel 5-substituted tryptamines with pharmacological activity at 5-HT1D and other monoamine receptors is described. Structural modifications of N- and C-linked (principally hydantoin) analogues at the 5-position were synthesized and their pharmacological activities were utilized to deduce significant steric and electrostatic requirements of the 5-HT1D and 5-HT2A receptor subtypes. Conformations of the active molecules were computed which, when overlaid, suggested a pharmacophore hypothesis which was consistent with the affinity and selectivity measured at 5-HT1D and 5-HT2A receptors. This pharmacophore is composed of a protonated amine site, an aromatic site, a hydrophobic pocket, and two hydrogen-bonding sites. A "selectivity site" was also identified which, if occupied, induced sensitivity for 5-HT1D over 5-HT2A in this series of molecules. The development and use of the pharmacophore models in compound design is described. In addition, the physicochemical constraints of molecular size and hydrophobicity required for efficient oral absorption are discussed. Utilizing the pharmacophore model in conjunction with the physicochemical constraints of molecular size and log DpH7.4 led to the discovery of 311C90 (6), a new selective 5-HT1D agonist with good oral absorption and potential use in the treatment of migraine.

Animals↗

Development of a novel series of trialkoxyaryl derivatives as specific and competitive antagonists of platelet activating factor.

The synthesis and structure-activity relationship (SAR) analysis of a novel series of trialkoxyaryl derivatives, as specific and competitive inhibitors of platelet activating factor (PAF), are described. Molecular modeling comparisons of PAF with the known antagonists Ginkgolide B and L-652731 led to the selection of N-[2-[(3,4,5-trimethoxybenzoyl)oxy]ethyl]-N,N,N-trimethylammonium iodide (1) from the Wellcome registry of compounds and to the synthesis of the lead compound N-[2-[[4-(hexyloxy)-3,5-dimethoxybenzoyl]oxy]ethyl]-N,N,N- trimethylammonium iodide (3, pKb 5.43). Further SAR considerations directed the design to 2-(hexyloxy)-1,3-dimethoxy-5-[4-(4-methylthiazol-5-yl)butyl] benzene (38) (pKb 7.14), a novel, specific, and competitive inhibitor of the PAF receptor in rabbit-washed platelets.

Animals↗

A quantitative structure-activity relationship approach to the minimization of albumin binding.

The binding of 2,6-disubstituted xanthones to human serum albumin (HSA) has been investigated using an ultrafiltration technique. A set of 26 compounds was chosen for study using a selection procedure aimed at minimizing the interparameter correlations, while ensuring that the physicochemical properties covered the maximum possible range of values. The magnitude of binding has been expressed as the compound concentration required to produce a specified bound concentration, in preference to equilibrium constants and number of albumin binding sites. Albumin binding was found to have a nonlinear dependence on the octanol-water partition coefficient (log P) and has been rationalized in terms of a simple binding model.

Binding Sites↗

Perspectives in QSAR: computer chemistry and pattern recognition.

Computer chemistry allows a detailed description of properties for a wide range of molecular environments. In these respects it offers substantial benefits to the QSAR (Quantitative Structure Activity Relationship) analyst. Problems associated with the resulting wide data matrices are, it is proposed, amenable to solution through multivariate 'pattern recognition' techniques.

Chemical Phenomena↗

2,4-Diamino-5-benzylpyrimidines as antibacterial agents. 7. Analysis of the effect of 3,5-dialkyl substituent size and shape on binding to four different dihydrofolate reductase enzymes.

A group of trimethoprim (TMP) analogues containing 3,5-dialkyl(or halo)-4-alkoxy, -hydroxy, or -amino substitution were analyzed in terms of their inhibitory activities against four dihydrofolate reductase (DHFR) isozymes. Although selectivities were lower than with TMP, the activities against vertebrate DHFR were usually at least 2 orders of magnitude less than against enzymes from microbial sources. However, the profiles of activity were remarkably similar for rat, Neisseria gonorrhoeae, and Plasmodium berghei enzymes in all three series, although somewhat different for Escherichia coli DHFR, leading to the conclusion that the hydrophobic pockets are similar for the first three isozymes. Optimal substitution was reached with 3,5-di-n-propyl or 3-ethyl-5-n-propyl groups. Branching of chains at the alpha-carbon, which resulted in increased substituent thickness, was detrimental to E. coli DHFR inhibition in particular. MR is an inadequate parameter for use in correlating such substituent effects. Conformational changes of the more bulky inhibitors can be invoked to explain some differences in inhibitory pattern. Although log P explains simple substituent effects with the vertebrate DHFRs very well, it is insufficient in the more complex cases described here, where shape is clearly involved as well. Solvent-accessible surface areas were measured for TMP in E. coli and chicken DHFRs, where the coordinates are now known. The environment is more hydrophobic in the latter case; this can also be postulated for rat DHFR, which has a very similar activity profile. As with the mammalian isozymes, N. gonorrhoeae DHFR contains an active site phenylalanine replacing Leu-28 of E. coli DHFR, thus creating a more hydrophobic pocket. A similar replacement may also occur in the P.berghei isozyme. Selectivity for bacterial DHFR is dependent on the nature of the 4-substituent, being low for polar 4-hydroxy compounds but high for polar 4-amino analogues, possibly as a result of solvation differences. With complex substituents, the environment of each atom in the active site must be taken into account to adequately explain structure-activity relationships.

Animals↗

Lecture attendance.

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Education, Medical↗

Comparative analysis of Haemophilus influenzae type b and Escherichia coli J5 lipopolysaccharides.

Haemophilus influenzae type b (HIB) and Escherichia coli J5 (J5) lipopolysaccharides (LPS) were examined to explore the basis of previously observed cross-protection. HIB-LPS and J5-LPS contained ketodeoxyoctonate, glucose, glucoheptose and glucosamine as common carbohydrate moieties, and laurate, myristate, beta-hydroxymyristate and palmitate as common fatty acids, although in different ratios. J5-LPS was five times more lethal than HIB-LPS for chick embryos. Weak serological cross-reactivity was observed by haemagglutination and two-dimensional immunoelectrophoresis. No significant cross-reactivity was demonstrated by enzyme-linked immunosorbent or toxicity-neutralisation assays. The cross-reactivity observed between HIB-LPS and J5-LPS was probably due to common components in the core glycolipid.

Animals↗

Performance on NBME Part I examination in relation to policies regarding use of test.

From 1971 to 1983, a number of administrative decisions were made at the University of Oklahoma College of Medicine regarding the National Board of Medical Examiners (NBME) Part I examination. Students' performance on this examination was found to be associated with administrative decisions that required (a) a passing score for promotion, (b) the student to take the examination, and (c) the student to take an integrated basic sciences review course. A modest improvement in student performance was noted when passage of the examination was made mandatory. The introduction of a review course into the curriculum effected a major upward change in scores that has persisted despite the removal of all requirements to pass, or even take, the Part I NBME examination.

Achievement↗

[Immunostimulation in an animal model using intestinal bacteria preparations].

The treatment of mice with an injection preparation consisting of killed R-tribes of non-pathogenous E. coli caused an increase in microbicidic activities in the animal's blood and effects a significant protection against consecutive infections with Salmonella typhimurium. The enhancement of the animal' resistance capacity appears to be non-specific, and connected with the activity of leucocytes. Oral application of preparations of intestinal bacteria led to increased resistance against consecutive infections with Salmonella typhimurium and Haemophilus influenzae. Three different oral vaccines have been used: Streptococcus faecalis and E. coli, a viable vaccine of non-pathogenous Streptococcus faecalis and a viable vaccine of E. coli. The enhancement of the resistance can be attributed to an induction of the chemotactic efficiency of the animal neutrophilic cells. The chemotactic response of these cells seems to be enhanced. The mode of action of both the other oral vaccines remains obscure.

Adjuvants, Immunologic↗

Application of S. faecalis and E. coli oral vaccines in humans and animals.

Vaccines of non-pathogenic intestinal bacteria for oral administration have been used in the therapy of chronic and recurrent infections by the German Medical Association for Microbiological Therapy for over three decades. Three different oral bacterial vaccines were used in particular: 1. A sterile autolysate of non-pathogenic S. faecalis and E. coli; 2. a viable non-pathogenic S. faecalis vaccine, and; 3. a viable non-pathogenic E. coli vaccine. Clinical studies indicate the safety and efficacy of these bacterial products, and suggest the stimulation of immune activities and competitive capacities of S. faecalis and E. coli as mode of action. In animal experiments, orally administered intestinal bacterial vaccines enhance the resistance of mice against subsequent challenge with lethal doses of Salmonella typhimurium and Haemophilus influenzae. Mice were allowed access to a viable suspension of either S. faecalis or E. coli for at least 3 weeks. They were then challenged with either of the two unrelated pathogens. Both pre-treatment procedures conferred significant protection of the animals. The mechanism of this protective action appears to involve modification of white blood cell kinetics in the mice. The peritoneal resident cell population in mice is significantly increased by S. faecalis treatment.

Administration, Oral↗

Immunologic reactions of rabbit anti-Mycoplasma arthritidis serum with in vitro cultivated rat synovial cells.

The pathogenesis of the intra-articular, arthritic-inflammatory reaction caused by Mycoplasma arthritidis in susceptible rats and mice is poorly understood. To investigate this problem, synovial cells from normal Sprague-Dawley rats were cultured and studied in vitro. These cells continued to produce hyaluronic acid as measured by viscosity and chemical assays. Normal synovial cells were treated with rabbit serum specimens taken before and after immunization with M. arthritidis. Cytotoxicity assays indicated that the cells were killed in the presence of rabbit anti-M. arthritidis serum but not with preimmunization serum specimens. The anti-M. arthritidis serum was not cytotoxic to monolayer cultures of HEp-2, Vero, or L-cells. Antiserum produced in response to M. fermentans, M. hominis, and M. pulmonis did not produce a cytotoxic effect on the cultured synovial cells. From immunofluorescence studies it was demonstrated that the interactions occurred between the rabbit anti-M. arthritidis serum and synovial cell surface antigens. Extreme precautions were taken to prevent mycoplasmal contamination of rats and the synovial cells in culture. These observations would appear to support previous reports implicating mycoplasmas as biological triggering mechanisms of autoimmune reactions.

Animals↗

A rapid method to produce anti-gentamicin antibody.

The aminoglycoside antibiotic, gentamicin, was conjugated to erythrocytes or bovine serum albumin (BSA) by a simple procedure in which ECDI was employed as the coupling reagent. When rabbits were immunized by injecting gentamicin-goat erythrocyte conjugates, three kinds of antibody were produced: 1. anti-gentamicin antibody, 2. anti-ECDI antibody, 3. goat erythrocyte agglutinins. The interfering anti-ECDI antibody was easily neutralized by adding acidified ECDI solution to the immune serum. Goat agglutinins were avoided by employing rabbit erythrocytes as the carrier cell in the hemagglutination titration. Highly specific anti-gentamicin antiserum was produced in rabbits by first injecting an initial dose of gentamicin-BSA conjugate as an emulsion in incomplete Freund's adjuvant via the foot pad, followed by multiple intravenous injections of gentamicin-erythrocyte conjugates. The immunization took approximately 21 days. High titered anti-gentamicin antibody was also produced by foot pad inoculation of gentamicin-BSA conjugates; however, the time necessary to achieve comparable titers was considerably longer (55 days). The antibodies produced by both immunization procedures were mainly of the IgG class.

Animals↗