Formulation of Bar Soap Containing Neem and Sulfur as Active Ingredients and Antibacterial Testing Against Propionibacterium acnes

Authors

  • Fahmi Hidayat Universitas Islam Kadiri
  • Aulia Dewi Rosanti Universitas Islam Kadiri
  • Faizatul Fitria Institut Ilmu Kesehatan Bhakti Wiyata
  • Ahmad Risy Alfa Reza Universitas Islam Kadiri
  • Haqqul Izzati Nur Rachmad Universitas Islam Kadiri

Keywords:

Acne vulgaris, Azadirachta indica, antibacterial soap, Propionibacterium acnes, sulfur

Abstract

Propionibacterium acnes is one of the main bacterial contributors to acne vulgaris, a prevalent dermatological condition. The prolonged use of topical antibiotics often leads to bacterial resistance, highlighting the need for safe and effective natural alternatives. Neem and sulfur are known for their antibacterial, anti-inflammatory, and keratolytic properties, but studies on their combined application in herbal soap formulations remain limited. This study aimed to formulate an antibacterial herbal bar soap combining neem extract and sulfur and to evaluate its physicochemical characteristics and antibacterial activity against P. acnes. The soap was prepared through saponification of coconut, palm, and olive oils (25%:35%:40%) producing four formulations: base soap (H1), neem soap (H2), sulfur soap (H3), and combined neem–sulfur soap (H4). Each formulation was assessed for organoleptic properties, pH, moisture content, free alkali and antibacterial activity against P. acnes with a commercial sulfur soap as positive control.All formulations met the reference standard of solid soap with pH 8.67–9.22,  moisture content 7.76–8.46 %, and free alkali <0.1%. The H4 formula showed the highest antibacterial activity with a 9.00 mm inhibition zone, surpassing the positive control (8.4 mm). The combination of neem extract and sulfur can be effectively formulated into a stable herbal antibacterial soap with significant inhibitory activity against P. acnes. This product shows promising potential as a natural therapeutic for acne-prone skin.

References

Adlia, A., Aljuffrie, S., Adi, A. C., Regitasari, D. A., Rahmasari, V. A., & Rachmawati, H. (2019). Community Empowerment Through Sulfur Soap Preparation for Dermatitis Prevention. Darmabakti Cendekia: Journal of Community Service and Engagements, 1(2), 45. https://doi.org/10.20473/dc.V1.I2.2019.45-49

Ali, E., Islam, Md. S., Hossen, Md. I., Khatun, Mst. M., & Islam, Md. A. (2021). Extract of neem (Azadirachta indica) leaf exhibits bactericidal effect against multidrug resistant pathogenic bacteria of poultry. Veterinary Medicine and Science, 7(5), 1921–1927. https://doi.org/10.1002/vms3.511

Anyanwu, M., & Okoye, R. (2017). Antimicrobial activity of Nigerian medicinal plants. Journal of Intercultural Ethnopharmacology, 6(2), 1. https://doi.org/10.5455/jice.20170106073231

Baby, A. R., Freire, T. B., Marques, G. D. A., Rijo, P., Lima, F. V., Carvalho, J. C. M. D., Rojas, J., Magalhães, W. V., Velasco, M. V. R., & Morocho-Jácome, A. L. (2022). Azadirachta indica (Neem) as a Potential Natural Active for Dermocosmetic and Topical Products: A Narrative Review. Cosmetics, 9(3), 58. https://doi.org/10.3390/cosmetics9030058

Betsy, K. J., Jilu, M., Fathima, R., & Varkey, J. T. (2021). Determination of Alkali Content & Total Fatty Matter in Cleansing Agents. Asian Journal of Science and Applied Technology, 2(1), 8–12. https://doi.org/10.51983/ajsat-2013.2.1.755

Brüggemann, H., Salar-Vidal, L., Gollnick, H. P. M., & Lood, R. (2021). A Janus-Faced Bacterium: Host-Beneficial and -Detrimental Roles of Cutibacterium acnes. Frontiers in Microbiology, 12(2021), 673845. https://doi.org/10.3389/fmicb.2021.673845

Caesa Anjarini, S., Kurniawari, D., Budi, S., & Audina, M. (2023). Formulasi dan Evaluasi Sediaan Facial Wach Ekstrak Mimba (Azadirachta indica A.Juss). Jurnal Insan Farmasi Indonesia, 6(2), 289–299. https://doi.org/10.36387/jifi.v6i2.1519

Chen, Y. J., Tang, J., Wang, L., & Hua, W. (2025). Sulfur and Its Derivatives in Dermatology: Insights Into Therapeutic Applications—A Narrative Review. Journal of Cosmetic Dermatology, 24(8), e70402. https://doi.org/10.1111/jocd.70402

Chukwuemeka Paul Azubuike, Sandra Ebele Ejimba, Abel Olusola Idowu, & Issac Adeleke. (2015). Formulation and Evaluation of Antimicrobial Activities of Herbal Cream Containing Ethanolic Extracts of Azadirachta indica Leaves and Aloe Vera Gel. Journal of Pharmacy and Nutrition Sciences, 5(2), 137–142. https://doi.org/10.6000/1927-5951.2015.05.02.6

Das, S., Agarwal, S., Samanta, S., Kumari, M., & Das, R. (2024). Formulation and evaluation of herbal soap. Journal of Pharmacognosy and Phytochemistry, 13(4), 14–19. https://doi.org/10.22271/phyto.2024.v13.i4a.14990

Ermawati, D., Ayu Wardani, E. A. T., & Rahmasari, D. (2022). The Effect of Variations of Coconut Oil and Palm Oil on the Characteristics of Soap Bars Containing 7% Concentration of Moringa Oleifera Oil. KnE Medicine. https://doi.org/10.18502/kme.v2i3.11879

Putri, A.V.A., Fadli, R., Febrina, D., Sari, Y.P. & Sari, M.P. (2023). Making Organic Solid Soap from Palm Oil, Olive Oil, and Pure Coconut Oil (VCO) with Coffee Powder and Coffee Aroma. SEMESTA: Journal of Science Education and Teaching, 6(2), 63–71. https://doi.org/10.24036/semesta/vol6-iss2/210

Febriani, A., Syafriana, V., Afriyando, H., & Djuhariah, Y. S. (2020). The Utilization of Oil Palm Leaves (Elaeis guineensis Jacq.) Waste as an Antibacterial Solid Bar Soap. IOP Conference Series: Earth and Environmental Science, 572(1), 012038. https://doi.org/10.1088/1755-1315/572/1/012038

Gupta, R., Nand, P., & Drabu, S. (2012). Insignificant anti-acne activity of Azadirachta indica leaves and bark. Journal of Pharmaceutical Negative Results, 3(1), 29. https://doi.org/10.4103/0976-9234.99650

Kim, H. J., & Kim, Y. H. (2024). Exploring Acne Treatments: From Pathophysiological Mechanisms to Emerging Therapies. International Journal of Molecular Sciences, 25(10), 5302. https://doi.org/10.3390/ijms25105302

Kuntom, A., & Kifli, H. (1998). Properties of soaps derived from distilled palm stearin and palm kernel fatty acids. Journal of Surfactants and Detergents, 1(3), 329–334. https://doi.org/10.1007/s11743-998-0032-4

Listyani, W., & Muna, L. (2024). The Effect of Varying NaOH Levels on the Physical Properties of Solid Soap with a Combination of Oils as a Student Learning Resource. Proceedings of the 3rd International Conference of Humanities and Social Science, ICHSS 2023, December 27, 2023, Surakarta, Central Java, Indonesia. Proceedings of the 3rd International Conference of Humanities and Social Science, ICHSS 2023, December 27, 2023, Surakarta, Central Java, Indonesia, Surakarta, Indonesia. https://doi.org/10.4108/eai.27-12-2023.2352156

Lukić, M., Pantelić, I., & Savić, S. D. (2021). Towards Optimal pH of the Skin and Topical Formulations: From the Current State of the Art to Tailored Products. Cosmetics, 8(3), 69. https://doi.org/10.3390/cosmetics8030069

Malawati, I., Anugrah, D. S. R., & Canadianti, M. (2024). Sabun Mandi Padat dari Susu Kambing dengan Kombinasi Daun Mimba (Azadirachta indica A. Juss) Ditinjau dari Karakteristik Fisik dan Kimia. Partner, 29(1), 44. https://doi.org/10.35726/jp.v29i1.7208

McLaughlin, J., Watterson, S., Layton, A. M., Bjourson, A. J., Barnard, E., & McDowell, A. (2019). Propionibacterium acnes and Acne Vulgaris: New Insights from the Integration of Population Genetic, Multi-Omic, Biochemical and Host-Microbe Studies. Microorganisms, 7(5), 128. https://doi.org/10.3390/microorganisms7050128

Nova, J. F., Smrity, S. Z., Hasan, M., Tariquzzaman, Md., Hossain, M. A. A., Islam, Md. T., Islam, Md. R., Akter, S., Rahi, Md. S., Joy, Md. T. R., & Kowser, Z. (2025). Comprehensive evaluation of physico-chemical, antioxidant, and antimicrobial properties in commercial soaps: A study on bar soaps and liquid hand wash. Heliyon, 11(4), e41614. https://doi.org/10.1016/j.heliyon.2024.e41614

Ojewumi, M. E., Obanla, O. R., Ekanem, G. P., & Nsionu, J. U. (2022). Phytochemicals and Anti-Microbial Properties of Neem (Azadirachta indica) Seed Oil Extract. In A. O. Ayeni, S. E. Sanni, & S. U. Oranusi (Eds.), Bioenergy and Biochemical Processing Technologies (pp. 231–241). Springer International Publishing. https://doi.org/10.1007/978-3-030-96721-5_20

Olson, K. R., Gao, Y., Arif, F., Arora, K., Patel, S., DeLeon, Eric. R., Sutton, T. R., Feelisch, M., Cortese-Krott, M. M., & Straub, K. D. (2018). Metabolism of hydrogen sulfide (H2S) and Production of Reactive Sulfur Species (RSS) by superoxide dismutase. Redox Biology, 15, 74–85. https://doi.org/10.1016/j.redox.2017.11.009

Silvyana, A. E., Rahmasari, R., & Elya, B. (2022). Azadirachta indica Hexane Extract: Potent Antibacterial Activity Against Propionibacterium acne and Identification of its Chemicals Content. Pharmacognosy Journal, 14(3), 489–496. https://doi.org/10.5530/pj.2022.14.62

Tahar, N., Wahyuni, D., Adawiyah, R., Khaerani, & Wahyuddin, M. (2023). Formulation and Antibacterial Activity of Porang (Amorphophallus muelleri Blume) Extract Gel Against Propionibacterium acne. Ad-Dawaa’ Journal of Pharmaceutical Sciences, 83–92. https://doi.org/10.24252/djps.v6i1.38744

U.S. Food and Drug Administration. (2021). OTC Monograph: Topical Acne drug products for OTC Human Use (Monograph M006). U.S. Department of Health and Human Services. https://www.accessdata.fda.gov/drugsatfda_docs/omuf/monographs/OTC%20Monograph_M006-Topical%20Acne%20drug%20products%20for%20OTC%20Human%20Use%2011.23.2021.pdf

Wylie, M. R., & Merrell, D. S. (2022). The Antimicrobial Potential of the Neem Tree Azadirachta indica. Frontiers in Pharmacology, 13, 891535. https://doi.org/10.3389/fphar.2022.891535

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Published

31-12-2025

How to Cite

Hidayat, F., Dewi Rosanti, A., Fitria, F. ., Reza, A. R. A., & Rachmad, H. I. N. . (2025). Formulation of Bar Soap Containing Neem and Sulfur as Active Ingredients and Antibacterial Testing Against Propionibacterium acnes. FITOFARMAKA: JURNAL ILMIAH FARMASI, 15(2), 96–103. Retrieved from https://fitofarmaka-fmipa.unpak.ac.id/index.php/fitofarmaka/article/view/51

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Research Articles