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T R Kurup

Publications and source records attributed to T R Kurup.

6 recordsLinked to original sources

Interaction of p-hydroxybenzoic esters with beta-cyclodextrin.

In the present investigation, the complex formation of beta-cyclodextrin (betaCD) with p-hydroxybenzoic esters (parabens) was studied by mixing betaCD with methyl, ethyl, propyl and butyl parabens, respectively, in aqueous solutions and subjecting the resultant mixtures individually to the following processes: occasional shaking for 24 h at 25 degrees C, continuous shaking using shaker bath for 24 h at 25 degrees C, intermittent ultrasonification for 90 min at 25 degrees C, autoclaving at 115 degrees C for 30 min and freeze-drying followed by reconstitution with distilled water. The degrees of interaction between betaCD and the parabens subjected to the various processes were evaluated, using the membrane dialysis method. The difference in the method of processing did not affect the degree of interaction significantly. However, the degree of interaction was found to increase proportionally with the concentration of betaCD. The alkyl group of the parabens was also found to affect the extent of interaction. Compared to methyl paraben, the degree of interaction of ethyl paraben was observed to be lower. Interestingly, further increase in the size of the alkyl group significantly enhanced the extent of interaction. Studies using 1H-NMR showed that the extent of interaction depended on how well the parabens could fit into the betaCD cavity.

Analysis of Variance↗

Interaction of preservatives with macromolecules: Part I--Natural hydrocolloids.

Antibacterial activity of methyl-p-hydroxybenzoate against Ps. aeruginosa was evaluated in the presence of varying concentrations of acacia, tragacanth, sodium alginate, guar gum and carrageenin. All these hydrocolloids reduced the antibacterial activity to varying degrees. Tragacanth and guar gum inhibited the activity to a greater extent than acacia, sodium alginate and carrageenin. Hydrocolloids reduce the antibacterial activity of preservatives in two ways. Interaction of the preservative with hydrophilic macromolecules and subsequent reduction in the availability of preservative appears to be the predominant mechanism by which tragacanth and guar gum reduce the activity of methyl-p-hydroxybenzoate. Acacia, sodium alginate and carrageenin apparently act by offering physical protection to microbial cells from the action of the preservative. It is also probable that these hydrocolloids provide more favourable media for microbial growth thereby increasing the preservative requirement for adequate preservation.

Colloids↗

Effect of surfactants on the antibacterial activity of preservatives.

Antibacterial activities of methyl-p-hydroxybenzoate, phenoxyethanol and chlorocresol against Pseudomonas aeruginosa were evaluated in the presence of varying concentrations of Tween 80. Below cmc level, the bactericidal activities increased with decrease in the surface tension values of Tween 80 solutions and with interfacial tension values of Tween 80 solution/liquid paraffin systems. Linear relationships were found to exist between the concentrations of each preservative required to reduce the microbial population by a factor 10(3) within 48 hours and the values of surface tension and interfacial tension respectively. Reduction in surface tension and interfacial tension would have increased the adsorption and uptake of preservatives by bacterial cells thereby killing the cells at a faster rate. Concentrations of Tween 80 above cmc also enhanced the antibacterial activities of these preservatives. This was attributed to the increase in the permeability of bacterial membranes to preservatives.

Microbial Sensitivity Tests↗

Availability and activity of preservatives in emulsified systems.

Availability and activity of methyl-p-hydroxybenzoate, phenoxyethanol and chlorocresol in emulsions were studied by equilibrium dialysis and microbiological methods. Equation proposed by Bean and coworkers for calculating the availability of free preservatives in the aqueous phase of simple emulsion was also found to be applicable to modern emulsions composed of more than one oil and surfactant. The antimicrobial activity varied with the type of preservative and microorganism. Among the four test organisms, Pseudomonas aeruginosa and Staphylococcus aureus were more resistant to the various preservatives than Candida albicans and Aspergillus niger. The concentration of free preservative in the aqueous phase of the emulsion required to reduce the microbial population to the level specified in BP was found to be less than the concentration needed in distilled water indicating that the antimicrobial activity of the preservatives in emulsions is not entirely dependent on the concentration of their free form in the aqueous phase of emulsions.

Bacteria↗

Factors affecting the disintegration and dissolution of chloroquine phosphate/starch tablets.

A study has been made of the effects produced on the disintegration and dissolution times of chloroquine phosphate tablets by varying their moisture and starch contents and the distribution of the starch in the formulation. 3 to 5% w/w of moisture produces a maximum in the disintegration and dissolution times. Starch added externally as a powder acts only as a disintegrating agent for the tablets, but starch added internally as a paste during granulation acts both as a binding agent and a disintegrant.

Chemistry, Pharmaceutical↗