Assessment of antimicrobial properties of Curcuma caesia Roxb. rhizome extracts against pathogenic microorganisms

Paper Details

Research Paper 13/09/2025
Views (480)
current_issue_feature_image
publication_file

Assessment of antimicrobial properties of Curcuma caesia Roxb. rhizome extracts against pathogenic microorganisms

Kalyan Das
Int. J. Biosci. 27(3), 102-106, September 2025.
Copyright Statement: Copyright 2025; The Author(s).
License: CC BY-NC 4.0

Abstract

Curcuma caesia Roxb is a rhizomatous herb of the Zingiberaceae family, which is traditionally used in ethnomedicine for treating infections, wounds, inflammation, and respiratory disorders. The present study assessed the antimicrobial activity of successive solvent extracts of C. caesia rhizomes using agar well and disc diffusion assays against Bacillus subtilis, Staphylococcus aureus, Enterococcus faecalis, Escherichia coli, Candida albicans, and Penicillium chrysogenum. Among the extracts, ethyl acetate exhibited the strongest antimicrobial activity, with ZOI ranging from 4.6 ± 1.15 mm to 19.3 ± 0.57 mm in the well diffusion method and 8.6 ± 0.57 mm to 15.6 ± 0.57 mm in the disc diffusion method, followed by methanol, which showed moderate but consistent inhibition. Acetone and aqueous extracts displayed relatively weak and selective activity, being effective only against a few test organisms. Statistical analysis (ANOVA) confirmed significant differences among extracts (p < 0.05). These findings support the ethnomedicinal claims of C. caesia and highlight the ethyl acetate fraction as a promising candidate for the development of plant-based antimicrobial agents.

Cowan MM. 1999. Plant products as antimicrobial agents. Clinical Microbiology Reviews 12(4), 564–582.

Dan R. 2023. Characterizing novel antimicrobial agents from natural sources to combat antibiotic-resistant bacteria. Quest Journals: Journal of Medical and Dental Science Research 10(12), 24–47. https://www.questjournals.org

Das S, Bordoloi PK. Sharma G. 2012. Phytochemical and antimicrobial screening of essential oil of Curcuma caesia Roxb. International Journal of Pharmaceutical Sciences and Research 3(4), 1107–1110.

Haroen U, Syafwan S, Kurniawan K, Budiansyah A, Widjaja N,  Fakhri S. 2025. The phenolic and flavonoid content and biological activity of Curcuma (Curcuma xanthorrhiza) fractions with different solvent polarities. Journal of Advanced Veterinary and Animal Research 12(1), 192–204. https://doi.org/10.5455/javar.2025.l886

Haroen D, Handayani R, Widowati T, Sari DP, Maulana S. 2025. Antimicrobial activity of Curcuma xanthorrhiza fractions against pathogenic bacteria. Journal of Applied Pharmaceutical Science 15(2), 112–120. https://doi.org/10.7324/JAPS.2025.15214

Kim KJ, Yu H H, Cha JD, Seo SJ, Choi NY, You YO. 2005. Antibacterial activity of Curcuma longa L. against methicillin-resistant Staphylococcus aureus. Phytotherapy Research 19(7), 599–604. https://doi.org/10.1002/ptr.1660

Kumar R, Singh A, Meena A. 2013. Ethnobotanical uses of Curcuma caesia Roxb. (Black turmeric) in Chhattisgarh. International Journal of Pharmacy and Life Sciences 4(7), 2808–2811.

Lalhminghlua S, Lalramnghinglova H. 2011. Ethnobotanical records of Curcuma caesia Roxb. in Mizoram, India. Pleione, 5(1), 120–124.

Nadkarni KM,  Nadkarni AK. 2007. Indian materia medica (Vol. 1). Popular Prakashan.

Parekh J, Chanda S. 2007. Antibacterial and phytochemical studies on twelve species of Indian medicinal plants. African Journal of Biomedical Research 10(2), 175–181.

Singh A, Malhotra S, Subban R. 2011. Anti-inflammatory and antimicrobial activities of Curcuma caesia Roxb. rhizome extracts. Journal of Ethnopharmacology 133(2), 693–697. https://doi.org/10.1016/j.jep.2010.10.053

Related Articles

In vitro assessment of the anticancer activity of quinaldic acid against human breast cancer cells (MCF-7)

N. Medhavi, S. M. Sivasankaran, K. Selvakumar, K. Harish, S. Manoharan*, Int. J. Biosci. 29(3), 1-10, September 2026.

In silico molecular docking analysis of quinaldic acid against cancer related targets

N. Medhavi, K. Harish, S. M. Sivasankaran, K. Selvakumar, B. Vidhyambigai, S. Manoharan*, Int. J. Biosci. 29(2), 129-139, August 2026.

First records of Macrogyrodactylus clarii and six species of Quadriacanthus (Monogenea) infecting Clarias gariepinus (Burchell, 1822) across four localities in Senegal

Arfang Diamanka*, Abdou Toure, Sikhou Drame, Cheikh Diop, Ngor Faye, Int. J. Biosci. 29(2), 118-128, August 2026.

Comparative predictive performance of anthropometric indices and associated risk factors for obesity among Beninese adults: A cross-sectional study

Ganlaky D. Boris, Sègbo Julien A. Gaetan*, Dossou David, Sossa J. Charles, Akpovi D. Casimir, Agbangla Clement, Int. J. Biosci. 29(2), 105-117, August 2026.

Proximate, mineral and vitamin composition of Uvaria chamae P. Beauv. (Annonaceae) seed flour from Korhogo, northern Côte d’Ivoire

Nyamien Yves Bleouh Jean*, Anon Attoh Hyacinthe, Diallo Koffi, Biego Godi Henri, Int. J. Biosci. 29(2), 97-104, August 2026.

Acute toxicity of seeds from Sphenostylis stenocarpa (Hochst ex A. Rich.) Harms

Wilfried Zanmenou*, Razack Osseni, Mahouglo Barnabé Houessou, Chimène Agrippine Rodogune Yelouassi, Comlan Kintomagnimessè Célestin Tchekessi, Philippe Sessou, Anatole Laleye, Pierre Dossou-Yovo, Int. J. Biosci. 29(2), 89-96, August 2026.

Stabilization of cashew apple juice with chitosan: clarification and microbiological quality

Kokora Aya Philomène*, Coulibaly Adama, Cissé Mohamed, Coulibaly Bintou, Konan N’guessan Ysidor, Godi Henri Marius Biego, Int. J. Biosci. 29(2), 76-88, August 2026.

Implementation and evaluation of limited face to face classes: basis for adoption of health and safety manual

Christian Jude B. Calunsag*, Int. J. Biosci. 29(2), 65-75, August 2026.