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Biomedical subjects

B J Meakin

Publications and source records attributed to B J Meakin.

At least 19 recordsLinked to original sources

The effect of drug concentration on the thermal (dark) degradation of promethazin hydrochloride in aqueous solution.

The thermal (dark) degradation of promethazine hydrochloride in aqueous solution presents a complex kinetic picture. The process is oxygen dependent and is modified by EDTA. In citrate buffer, pH 4.0, ionic strength 0.5M, containing 0.1% EDTA, the thermal degradation at 90 degrees can be fitted to first order rate plots at drug concentrations up to 1.56 x 10.27 (0.5%) and to zero order rate plots at drug concentrations greater than 9.35 x 10.2M (3.0%). At intermediate concentrations no simple equation can describe the data. These effects have been correlated with the formation of drug micelles and the rate date have been interpreted on the basis of a first order monomer process and a half order micellar process occurring simultaneously.

Chromatography, Gas

The interaction of preservatives with polyhydroxyethylmethacrylate (polyHEMA).

The interaction of the four most commonly used preservatives in contact lens solutions (chlorbutol, thiomersal, chlorhexidine gluconate and benzalkonium chloride) with polyhydroxyethylmethacrylate (polyHEMA), has been examined. Benzalkonium chloride and chlorhexidine gluconate show typical high affinity type isotherms. The interaction of benzalkonium chloride with polyHEMA from aqueous solution was reversible whereas that of chlorhexidine was only reversible in the presence of electrolyte or surfactant. Chlorbutol showed a typical reversible linear isotherm. Thiomersal does not interact with polyHEMA above pH 5.0. The extent of chlorhexidine--polyHEMA interactions in increased by the presence of formulatory adjuvants such as electrolyte and hydrophilic polymers. PolyHEMA lenses that apparently have been equilibrated with chlorhexidine gluconate will, on the addition of fresh preservative solution, bind further quantities of chlorhexidine above that which would be predicted from the sorption isotherm.

Acrylic Resins

The influence of temperature on the sorption of benzocaine by nylon 6 from aqueous cosolvents.

The influence of temperature on the sorption of benzocaine by nylon 6 powder from aqueous cosolvents has been assessed. At about 30 degrees discontinuities appear in the Van't Hoff plots for sorption from water and aqueous PEG 400, which may be attributed to transitional changes in the polymer structure. No such discontinuities are apparent for sorption from aqueous ethanol over the temperature range 15-60 degrees, which is indicative of plasticizaton by this cosolvent.

Adsorption

Loss of antibacterial preservatives from contact lens solutions during storage.

The preservative content of 34 commercially available contact lens solutions has been determined. Over half of the solutions contained less than 90% of the stated preservative content. Storage tests conducted at 40 degrees, using both simulated and commercially available contact lens solutions in plastics containers of the type used to present these products showed that thiomersal and chlorbutol appeared to be sorbed by these containers in contrast to benzalkonium chloride and chlorhexidine gluconate which interacted mainly by a surface adsorption process. The extent of any interactions was dependent upon the type of plastics material used to fabricate the container.

Anti-Infective Agents, Local

The influence of cosolvents and substrate substituents on the sorption of benzoic acid derivatives by polyamides.

The sorption of some substituted benzoic acid derivatives by polyamides (nylons) from aqueous solution has been examined and the influence of their nature together with those of the cosolvent and polymer have been assessed. In all cases the sorption isotherms were linear and could be expressed by a simple distribution law, enabling the influence of cosolvent concentration to be predicted. The sorption of a series of p-substituted benzoic acids and some of their esters is related to their solubility except where the p-substituent is capable of hydrogen-bonding with the polymer. The extent of the interaction is also dependent upon the amide frequency of the polymer.

Adsorption