Topical Pharmaceutical Foam Composition
a technology of pharmaceutical foam and composition, applied in the direction of aerosol delivery, antibacterial agents, antinoxious agents, etc., can solve the problems of difficult task of reproducing the performance of reformulated aerosols for pharmaceutical use, few pharmaceutical foams are commercially available, and the odor and/or color intensity is reduced
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example 1
Reduced Odor Topical Formulation Containing Sulfur and Sodium Sulfacetamide
[0078]A topical formulation containing sulfur and sodium sulfacetamide was prepared wherein the formulation exhibited diminished color. The composition of the formulation and the physical and mechanical properties of the formulation are shown in Table 1.
[0079]The formulation was prepared by mixing the water and propylene glycol together and adding the methylparaben, propylparaben and sodium sulfacetamide to form a uniform solution. The solution was heated to 70° C. and the sulfur was dispersed in the solution with moderate stirring. Separately, cetyl alcohol, emulsifying wax, and BRIJ 76 were melted together and heated to 70° C. The water and oil phases were combined and mixed for 10 minutes at high shear to form the emulsion. The emulsion was allowed to cool to 45° C. with moderate stirring at which time trolamine was added to the formulation and the formulation was adjusted to 100% with water.
[0080]The fina...
example 2
Reduced Odor Topical Formulation Containing Urea
[0081]A topical formulation containing urea was prepared, wherein the formulation exhibited diminished odor. The composition of the formulation and the physical and mechanical properties of the formulation are shown in Table 1.
[0082]The formulation was prepared by mixing the water and propylene glycol together and adding the methylparaben, propylparaben and urea to form a uniform solution. The solution was heated to 70° C. with moderate stirring. Separately the cetyl alcohol, emulsifying wax and BRIJ 76 were melted together and heated to 70° C. The water and oil phases were combined and mixed for 10 minutes at high shear to form the emulsion. The emulsion was allowed to cool to 45° C. with moderate stirring at which time the trolamine was added and the formulation was adjusted to 100% with water.
[0083]The final formulation consisted of 91% by weight emulsion concentrate and 9% by weight HFC 134a propellant.
TABLE 1Formulation Compositio...
example 3
Organoleptic Analysis of Formulation Odor and Color
[0084]The odor and color of the formulations outlined in Table 1 were measured. Samples of the sulfur and urea aerosol foams were dispensed into weighing boats in a manner similar to that used to dispense the product for use. The samples of sulfur and urea emulsion concentrates were observed for color and odor in bulk packaging under conditions similar to that in which currently marketed products are used. Panelists were asked to rate on a scale of 0 to 5 each sample for the attributes of color and odor. In the scale, 0 corresponded to no detectable odor or color and 5 corresponded to strong odor or color. The results are shown in Table 2.
TABLE 2Organoleptic Analysis of Formulation Odor and ColorSulfacetamide / SulfurUreaFoamConcentrateFoamOdorColorOdorColorOdorConcentrateScoreScoreScoreScoreScoreOdor ScoreAverage0.71.52.03.90.14.3Std Dev0.80.81.21.10.31.3p value0.00050.0001n / an / an / an101010101010
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