Antibacterial Analysis of Andrographolide Against Selected Gram Positive and Negative Bacteria
Authors
Muhammad Zaki , Syamsul Multazam , Fakhrurrozi Fakhrurrozi , Muhammad NawawiDOI:
10.29303/jbt.v25i4a.10879Published:
2025-12-21Issue:
Vol. 25 No. 4a (2025): Special IssueKeywords:
Andrographolide, Disc diffusion, MIC, MBCArticles
Downloads
How to Cite
Downloads
Metrics
Abstract
Andrographolide is an active compound extracted from Andrographis paniculata. It is commonly used in traditional medicine to reduce inflammation and fight bacteria. Studies show that andrographolide can stop bacteria from growing by disrupting their DNA and biofilm formation. It can also help regulate the immune system and lower inflammation caused by bacterial infections. Therefore, andrographolide has the potential to be an alternative to synthetic antibiotics, helping to prevent bacterial resistance and reduce side effects from synthetic antibiotic use. This study aims to investigate the potential antibacterial activity of andrographolide against S. aureus (ATCC 25923), S. epidermidis (ATCC 12228), K. pneumoniae (ATCC 70063), and P. aeruginosa (ATCC 9027). This study utilized the disc diffusion method to determine the inhibitory effects of andrographolide, as well as Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal Concentration (MBC) assays to evaluate its bactericidal properties. Disc diffusion test (3.0 mg/mL) found that andrographolide can inhibit P. aeruginosa (23.70 mm), S. aureus (16.37 mm), S. epidermidis (19.77 mm), and K. pneumoniae (14.63 mm). The bacteria S. aureus, S. epidermidis, and K. pneumoniae have the same MIC and MBC values (1.5 mg/mL), while P. aeruginosa has a different value (0.75 mg/mL). These results indicate the bactericidal category at this concentration. Future research should explore how andrographolide works against various strains of bacteria and also investigate how andrographolide affects biofilms.
References
Abdul Mutalib albeed. (2021). Antioxidant, Antibacterial Activity and Phytochemical Screening of Ethanolic Seeds Extract of Libyan Peganum Harmala and Cuminum Cyminum. (June). https://ir.uitm.edu.my/id/eprint/60077/
Ahmad, S., Ariffin, Z., Jusoh, A. Z., Hashim, H., Nazrul, M., Daud, H., & Karuppan, J. (2016). Penentuan kandungan andrographolide dalam hempedu bumi. 9, 113–118. http://ebuletin.mardi.gov.my/buletin/09/Hempedu%20bumi.pdf
Aryal, S. (2015, June 24). Catalase Test- Principle, Uses, Procedure, Result Interpretation with Precautions. Microbiology Info.com. https://microbiologyinfo.com/catalase-test-principle-uses-procedure-result- interpretation-with-precautions/
Aryal, S. (2016, August 31). Mannitol Salt Agar for the isolation of Staphylococcus aureus. Retrieved November 15, 2022, from Microbiology Info.com website: https://microbiologyinfo.com/mannitol-salt-agar-for-the-isolation-of-staphylococcus-aureus/.
Banerjee, M., Parai, D., Chattopadhyay, S., & Mukherjee, S. K. (2017). Andrographolide: antibacterial activity against common bacteria of human health concern and possible mechanism of action. Folia Microbiologica, 62(3), 237–244. https://doi.org/10.1007/s12223-017-0496-9
Elfidasari, D., Noriko, N., Mira Saraswati, A., Feroza, A., & Canadian Tire, S. F. (2013). Deteksi bakteri Klebsiella pneumonia pada beberapa jenis rokok konsumsi masyarakat. Jurnal Al Azhar Indonesia: Seri Sains dan Teknologi, 2(1), 41-47. http://dx.doi.org/10.36722/sst.v2i1.97
Elshikh, M., Ahmed, S., Funston, S., Dunlop, P., McGaw, M., Marchant, R., & Banat, I. M. (2016). Resazurin-based 96-well plate microdilution method for the determination of minimum inhibitory concentration of biosurfactants. Biotechnology Letters, 38(6), 1015–1019. https://doi.org/10.1007/s10529-016-2079-2
He, M., Li, H., Zhang, Z., Jiang, J., Li, H., Yang, W., Cheng, Y., Gao, H., Chen, Q., Du, L., Chen, S., Man, C., & Wang, F. (2022). Microbiological Characteristics and Pathogenesis of Klebsiella pneumoniae Isolated from Hainan Black Goat. Veterinary Sciences, 9(9), 1–16. https://doi.org/10.3390/vetsci9090471
Hossain, MS, Urbi, Z., Sule, A., & Rahman, KMH (2014). Tinjauan Etnobotani, Fitokimia, dan Farmakologi. Jurnal Ilmiah Dunia, 2014, 1–28. https://doi.org/10.1155/2014/274905
Hudzicki, J. (2009). Protokol uji kerentanan difusi cakram Kirby-Bauer. Perhimpunan Mikrobiologi Amerika, 15, 55-63. https://dspace.uc.ac.id/bitstream/handle/123456789/3657/Paper3657.pdf?sequence=4&isAllo#page=181
McAdow Molly, Missiakas Dominique M., Schnnewind Olaf (2012) Staphylococcus aureus Secretes Coagulase and von Willebrand Factor Binding Protein to Modify the Coagulation Cascade and Establish Host Infections. Journal of Innate Immunity, 4, 141-148. https://doi.org/10.1159/000333447
Niroumand, M. C., Farzaei, M. H., & Amin, G. (2015). Review Medicinal properties of Peganum harmala L . in traditional Iranian medicine and modern phytotherapy: a review. Journal of Traditional Chinese Medicine, 35(1), 104–109. https://doi.org/10.1016/S0254-6272(15)30016-9
Pérez-López, A., Orozco-Hayek, M., Rivas-Galindo, V., & De Torres, N. W. (2008). Experimental design to determine the factors affecting the preparation of extracts for antibacterial use. Natural Product Communications, 3(3), 1934578X0800300311. https://doi.org/10.1177/1934578X0800300311
Rajagopal, M., Airody Vasudeva Adhikari, Tzar, M. N., R. Ramliza, & Christophe Wiart. (2020). Antibacterial activities of the extracts, fractions and isolated compounds from Canarium patentinervium Miq. against bacterial clinical isolates. 20(1). https://doi.org/10.1186/s12906-020-2837-5
Sarip, Erismar. A., dan Vivi, F. 2016. Daya Antimikroba Sari Akar Mamba (Millettia Sericea W. dan A.) terhadap Pertumbuhan Bakteri Escherichia coli dan Salmonella typhi. (STKIP) PGRI Sumatera Barat. https://jim.upgrisba.ac.id/jurnal/view/05MR
Shields, P., & Cathcart, L. (2010). Oxidase test protocol. American Society for Microbiology, 1-9. https://asm.org/getattachment/00ce8639-8e76-4acb-8591-0f7b22a347c6/oxidase-test-protocol-3229.pdf?fbclid=IwAR3Y0UGSj7mlg-G20q4ZNqFmNItCvZSrXtauhRVQ0q69_uMa7B7HIeco43M
Smith, A. C., & Hussey, M. A. (2005). Gram stain protocols. American Society for Microbiology, 1(14), 113-144. https://egrassbcollege.ac.in/wp-content/uploads/2024/01/gram-stain-protocol-2886-2.pdf
Sule, A, Ahmed, Q. U., Samah, O. A., & Omar, M. N. (2010). Screening for Antibacterial Activity of Andrographis paniculata Used in Malaysian Folkloric Medicine: A Possible Alternative for the Treatment of Skin Infections. https://opensiuc.lib.siu.edu/cgi/viewcontent.cgi?article=1728&context=ebl
Tanwar, J., Das, S., Fatima, Z., & Hameed, S. (2014). Multidrug resistance: An emerging crisis. Interdisciplinary Perspectives on Infectious Diseases, 2014. https://doi.org/10.1155/2014/541340
Thammawithan, S., Talad Thai Song, C., Srichaiyapol, O., Patramanon, R., Hutchison, JA, & Kulchat, S. (2022). Nanopartikel perak terstabilisasi andrografolida mengatasi Burkholderia pseudomallei yang resisten terhadap seftazidim: studi aktivitas antimikroba dan cara kerjanya. Scientific Reports, 12(1), 10701. https://doi.org/10.1038/s41598-022-14550-x
Tripathi N. & Sapra A. (2022, August 8). Gram Staining. Retrieved November 17, 2022, from https://pubmed.ncbi.nlm.nih.gov/32965827/.
Tuan Kub, T. N., Aziz, F. M. A., Anis Amiera, M. A., Ahmad, N. N., Salmuna, Z. N., Hassan, S. A., ... & Harun, A. (2021). Antifungal effects and phytochemical screening of Andrographis paniculata extracts on dermatomycoses. http://mjm.usm.my/uploads/issues/1702/Formatted%20MJM-21-1144-ready-color.pdf
Wang, J., Yang, W., Wang, G., Tang, P., & Sai, Y. (2014). Penentuan enam komponen ekstrak Andrographis paniculata dan satu metabolit utama andrografolida dalam plasma tikus dengan kromatografi cair – spektrometri massa tandem. Jurnal Kromatografi B, 951–952, 78–88. https://doi.org/10.1016/j.jchromb.2014.01.028
Zeng, B., Wei, A., Zhou, Q., Yuan, M., Lei, K., Liu, Y., & Ye, Q. (2022). Andrografolid: Tinjauan farmakologi, farmakokinetik, toksisitas, uji klinis, dan penelitian farmasi. Penelitian Fitoterapi, 36(1), 336-364. https://doi.org/10.1002/ptr.7324
Zhang, H., Li, S., Si, Y., & Xu, H. (2021). Andrografolida dan turunannya: Pencapaian terkini dan prospek masa depan. European Journal of Medicinal Chemistry, 224, 113710. https://doi.org/10.3389/fphar.2021.720685
Zhang, L., Bao, M., Liu, B., Zhao, H., Zhang, Y., Ji, X., & Lu, C. (2020). Efek andrografolida dan analognya terhadap infeksi bakteri: tinjauan. Farmakologi, 105(3-4), 123-134. https://doi.org/10.1159/000503410
License
Copyright (c) 2025 Muhammad Zaki, Syamsul Multazam, Fakhrurrozi Fakhrurrozi, Muhammad Nawawi

This work is licensed under a Creative Commons Attribution 4.0 International License.

Jurnal Biologi Tropis is licensed under a Creative Commons Attribution 4.0 International License.
The copyright of the received article shall be assigned to the author as the owner of the paper. The intended copyright includes the right to publish the article in various forms (including reprints). The journal maintains the publishing rights to the published articles.
Authors are permitted to disseminate published articles by sharing the link/DOI of the article at the journal. Authors are allowed to use their articles for any legal purposes deemed necessary without written permission from the journal with an acknowledgment of initial publication to this journal.
























