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J B Kayes

Publications and source records attributed to J B Kayes.

11 recordsLinked to original sources

Studies of a potential in vitro test for estimation of toxicity of aminoglycoside antibiotics and polyamines.

The electrophoretic mobility of phosphatidyl inositol liposomes at pH 7.4, 25 degrees C, was reduced by aminoglycoside antibiotics, neamine and several polyamines in general accordance with the number of amino-groups on each molecule. There was good agreement between the relative position of the tested compounds on the mobility-concentration graph and available information about their relative mammalian toxicities in vivo. The slope of the graph for netilmicin was distinctively flat; a comparatively flat dose-response curve for netilmicin has been reported also from in vivo studies of nephrotoxicity. Investigation of a homologous series of alpha,omega straight chain diaminoalkanes revealed that hydrophobicity did not contribute significantly to the observed interaction in this system. L-Lysine showed the weakest effect amongst all compounds tested, supporting the view that the overall positive charge on the molecule was the major determinant of the observed effect. Further structure-activity work is required to confirm whether this 'in vitro' test is predictive of the toxicity of aminoglycoside antibiotics in man.

Aminoglycosides↗

Interaction of aminoglycoside antibiotics with phospholipid liposomes studies by microelectrophoresis.

Microelectrophoresis was found to be a rapid method for studying the interaction between aminoglycoside antibiotics and liposomes prepared from acid phospholipids. The ability to cause charge reversal of liposomes prepared from phosphatidyl inositol was ranked in the order neomycin greater than gentamicin greater than tobramycin greater than amikacin greater than kanamycin greater than ribostamycin greater than streptomycin greater than dihydrostreptomycin greater than Ca2+. Similar results were obtained with liposomes prepared from a mixture (8: 2) of phosphatidyl choline and phosphatidic acid, but no effect was detectable with neutral liposomes made from phosphatidyl choline only. The results support the view that the attraction between positively charged nitrogen groups on the antibiotics and the negatively charged groups of acidic phospholipids are predominantly responsible for the interaction. Extension of the studies to ionic strengths and calcium concentrations similar to those found in vivo showed a reduction, but not elimination, of the observed effects.

Aminoglycosides↗

Pharmaceutical suspensions: micro electrophoretic properties.

The microelectrophoretic properties of the drugs griseofulvin, betamethasone, nalidixic acid and thiabendazole in aqueous dispersion have been examined and the zeta potentials calculated from the measured mobilities. Variation in magnitude of particle charge with pH of dispersion is reported and related to the chemical structure and the surface characteristics. The effect of adding anionic (sodium dodecyl sulphate) cationic (dodecyl trimethyl bromide) and non-ionic (polyoxyethylene glycol monoethers of hexadecanol) surface-active agents, and mixtures of these ionic and non-ionic species, on the electrophoretic properties of the drug dispersions has been measured. The results reported agree with those found previously for a model polystyrene latex suspension system under the same conditions.

Betamethasone↗

Pharmaceutical suspensions: relation between zeta potential, sedimentation volume and suspension stability.

The effect of added surface-active agents of various ionic types on the sedimentation volume of drug suspensions of betamethasone, griseofulvin, nalidixic acid and thiabendazole has been investigated, and the results correlated with previously measured zeta potentials. Study of the zeta potential/sedimentation volumes versus concentration plots showed that apparently only coagulated, deflocculated or sterically stabilized systems were formed. In most cases the sterically stabilized systems were produced from mixtures of ionic/non-ionic surfactants. These are examples of controlled coagulation, although non-ionic surfactant alone conferred stability against caking. Secondary minimum flocculation was not apparent but this may have been due to the method of examination of suspensions. The work confirmed that the DLVO theory of colloid stability and its modification to include a steric term can be applied to coarse suspension systems.

Centrifugation↗