Elizza Risqi Sanaya
Program Studi Pendidikan Profesi Apoteker, Fakultas Farmasi, Universitas Islam Sultan Agung

Published : 2 Documents Claim Missing Document
Claim Missing Document
Check
Articles

Found 2 Documents
Search

Formulation and Evaluation of Acne Spot Gel Preparations of Salicylic Acid and Sulfur with a Combination of Propylene Glycol and Carbomer Yuyun Darma Ayu Ningrum; Rizal Roffada Hanif; Elizza Risqi Sanaya
Indonesian Journal of Medical and Pharmaceutical Science Vol. 5 No. 1 (2026)
Publisher : Sultan Agung Islamic University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30659/ijmps.v5i1.557

Abstract

Background: Acne vulgaris is a skin condition with a high prevalence in Indonesia, especially among adolescents. Salicylic acid and sulfur are known to have keratolytic, antibacterial, and anti-inflammatory activities, making them widely used in acne treatment. In this study, salicylic acid and sulfur were formulated as an acne spot gel preparation using a combination of propylene glycol and carbomer. The physical properties of the acne spot gel preparation are significantly influenced by the concentration of propylene glycol and carbomer. Therefore, optimization of these two components is necessary to produce a stable and effective gel preparation. Methods: Eight formulas were developed using the Simplex Lattice Design (SLD) method. All formulas were evaluated for their physical characteristics to determine the optimum formula. The optimum formulas were subjected to cycling tests and analyzed using the Paired T-Test method. Results: The optimum formula for an acne spot gel containing salicylic acid and sulfur has physical characteristics including a yellow color, a distinctive sulfur aroma, and a gel texture with a homogeneous mixture. The preparation has a pH of 6.47, a spreadability of 5.96 cm, an adhesiveness of 10.13 seconds, and a viscosity of 11,291 cPs. The optimum formula is obtained from a combination of 14% propylene glycol and 1% carbomer. Conclusion: The optimum acne spot gel formula containing salicylic acid and sulfur meets the criteria for a good gel preparation and shows adequate physical stability.
Formulasi Gel Niacinamide dengan Optimasi Kombinasi Gelling Agent menggunakan Simplex Lattice Design Yuyun Darma Ayu Ningrum; Rizal Roffada; Elizza Risqi Sanaya; Riana Putri Rahmawati
Indonesian Journal of Medical and Pharmaceutical Science Vol. 5 No. 2 (2026)
Publisher : Sultan Agung Islamic University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30659/ijmps.v5i2.674

Abstract

Background: Niacinamide is a widely used topical active ingredient, while the physical characteristics of gel formulations are strongly influenced by the type and proportion of gelling agents. The combination of Carbomer 940 and hydroxypropyl methylcellulose (HPMC) may provide complementary effects on viscosity, spreadability, and adhesiveness. However, the optimal proportion of these polymers in a 4% niacinamide gel has not been specifically established using a mixture-design approach. Methods: An experimental formulation study was conducted using a constrained mixture design with a total gelling-agent concentration of 2%. Carbomer 940 and HPMC were varied within the predetermined formulation constraints to generate eight experimental formulations. Each formulation was evaluated for organoleptic characteristics, homogeneity, pH, spreadability, adhesiveness, viscosity, and niacinamide content. The effects of polymer proportions were analyzed using Design-Expert software, and the optimum formulation was determined using a desirability approach. The optimum formulation was independently prepared for verification and subjected to a preliminary physical stability evaluation using three cycles of temperature cycling. Results: The optimum formulation consisted of 1.12% Carbomer 940 and 0.88% HPMC, with a desirability value of 0.98. Verification produced a pH of 5.75 ± 0.01, spreadability of 5.80 ± 0.02 cm, adhesiveness of 11.38 ± 0.08 s, viscosity of 10,017 ± 35 cP, and niacinamide content of 99.38 ± 0.08%. No significant differences were observed in the evaluated quantitative parameters after three temperature cycles (p > 0.05). Conclusion: The constrained mixture design identified 1.12% Carbomer 940 and 0.88% HPMC as the optimum proportion for the 4% niacinamide gel within the investigated formulation range. The optimum formulation showed balanced physical characteristics and no significant changes in the evaluated parameters after the preliminary temperature-cycling test. Further accelerated and long-term stability studies are required to confirm formulation stability.