Phytochemical characterization and antioxidant potential of the leaves of Calyptrochilum christyanum (Rchb.f.) Summerh. collected in Man, Western Côte d’Ivoire
Abstract
Calyptrochilum christyanum (Rchb.f.) Summerh. is an orchid species reported to be used in traditional medicine in Côte d’Ivoire, but its phytochemical composition and biological properties remain poorly documented. This study aimed to characterize the phytochemical profile and evaluate the antioxidant activity of aqueous and hydroethanolic leaf extracts of C. christyanum. Thin-layer chromatography (TLC) was used for phytochemical screening, while total phenolic compounds, flavonoids, and condensed tannins were quantified using colorimetric methods. Antioxidant activity was evaluated by TLC-DPPH bioautography and spectrophotometric DPPH assays. TLC revealed the presence of tannins, flavonoids, coumarins, and anthraquinone/anthrone derivatives. The aqueous extract exhibited the highest levels of total phenolic content (157.75 ± 3.89 mg GAE/g extract), flavonoids (87.53 ± 6.11 mg QE/g extract), and condensed tannins (17.35 ± 1.26 mg CE/g extract). However, the hydroethanolic extract showed stronger antioxidant activity (IC₅₀ = 0.197 mg/mL) than the aqueous extract (IC₅₀ = 0.739 mg/mL). These findings highlight C. christyanum leaves as a potential source of antioxidant phytochemicals.
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Jamshidi-Kia, F., Lorigooini, Z., & Amini-Khoei, H. (2018). Medicinal plants: Past history and future perspective. Journal of Herbmed Pharmacology, 7(1), 1–7. https://doi.org/10.15171/jhp.2018.01
Do, Q. D., Angkawijaya, A. E., Tran-Nguyen, P. L., Huynh, L. H., Soetaredjo, F. E., Ismadji, S., & Ju, Y. H. (2014). Effect of extraction solvent on total phenol content, total flavonoid content, and antioxidant activity of Limnophila aromatica. Journal of Food and Drug Analysis, 22(3), 296–302. https://doi.org/10.1016/j.jfda.2013.11.001
Shahidi, F., & Ambigaipalan, P. (2015). Phenolics and polyphenolics in foods, beverages and spices: Antioxidant activity and health effects. Journal of Functional Foods, 18, 820–897. https://doi.org/10.1016/j.jff.2015.06.018
Liguori, I., Russo, G., Curcio, F., Bulli, G., Aran, L., Della-Morte, D., Gargiulo, G., Testa, G., Cacciatore, F., Bonaduce, D., & Abete, P. (2018). Oxidative stress, aging, and diseases. Clinical Interventions in Aging, 13, 757–772. https://doi.org/10.2147/CIA.S158513
Royal Botanic Gardens, Kew. (2026). Calyptrochilum christyanum (Rchb.f.) Summerh. Plants of the World Online. https://powo.science.kew.org/taxon/urn:lsid:ipni.org:names:621524-1
Onugwu, S. O., Jennifer, O. F., & Onugwu, A. L. (2025). Pharmacognostic and antidiabetic evaluation of methanol extract of Calyptrochilum christyanum (Rchb.f.) Summerh. (Orchidaceae) and its fractions. GSC Biological and Pharmaceutical Sciences, 33(2), 297–307. https://doi.org/10.30574/gscbps.2025.33.2.0441
Uzor, G. R., Onugwu, S. O., Jennifer, O. F., & Onugwu, A. L. (2025). Phytochemical and anti-lipidemic evaluation of methanol extract of Calyptrochilum christyanum (Rchb.f.) Summerh. (Orchidaceae) and its fractions on alloxan-induced diabetic rats. World Journal of Pharmaceutical Research, 14(15), 752–761.
Salehi, B., Martorell, M., Arbiser, J. L., Sureda, A., Martins, N., Maurya, P. K., Sharifi-Rad, M., Kumar, P., & Sharifi-Rad, J. (2018). Antioxidants: Positive or Negative Actors? Biomolecules, 8(4), 124. https://doi.org/10.3390/biom8040124
Zhang, Q. W., Lin, L. G., & Ye, W. C. (2020). Techniques for extraction and isolation of natural products: A comprehensive review. Chinese Medicine, 15, Article 27. https://doi.org/10.1186/s13020-020-00307-x
Azmir, J., Zaidul, I. S. M., Rahman, M. M., Sharif, K. M., Mohamed, A., Sahena, F., Jahurul, M. H. A., Ghafoor, K., Norulaini, N. A. N., & Omar, A. K. M. (2013). Techniques for extraction of bioactive compounds from plant materials: A review. Journal of Food Engineering, 117(4), 426–436. https://doi.org/10.1016/j.jfoodeng.2013.01.014
Heinrich, M., Jalil, B., Abdel-Tawab, M., Echeverria, J., Kulić, Ž., McGaw, L. J., Pezzuto, J. M., Potterat, O., & Wang, J.-B. (2022). Best practice in the chemical characterisation of extracts used in pharmacological and toxicological research—The ConPhyMP guidelines. Frontiers in Pharmacology, 13, Article 953205. https://doi.org/10.3389/fphar.2022.953205
Wagner, H., & Bladt, S. (1996). Plant drug analysis: A thin layer chromatography atlas (2nd ed.). Springer. https://doi.org/10.10007/978-3-642-00574-9
Singleton, V. L., Orthofer, R., & Lamuela-Raventós, R. M. (1999). Analysis of total phenols and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent. Methods in Enzymology, 299, 152–178. https://doi.org/10.1016/S0753-6879(99)99017-1
Chang, C. C., Yang, M. H., Wen, H. M., & Chern, J. C. (2002). Estimation of total flavonoid content in propolis by two complementary colorimetric methods. Journal of Food and Drug Analysis, 10(3), 178–182. https://doi.org/10.38212/2224-6614.2748
Heimler, D., Vignolini, P., Dini, M. G., & Romani, A. (2006). Antiradical activity and polyphenol composition of local Brassicaceae edible varieties. Food Chemistry, 99(3), 464–469. https://doi.org/10.1016/j.foodchem.2005.07.057
Soler-Rivas, C., Espín, J. C., & Wichers, H. J. (2000). An easy and fast test to compare total free radical scavenger capacity of foodstuffs using TLC. Phytochemical Analysis, 11(5), 330–338. https://doi.org/10.1002/1099-1565(200009/10)11:5<330::AID-PCA534>3.0.CO;2-G
Blois, M. S. (1958). Antioxidant determinations by the use of a stable free radical. Nature, 181(4617), 1199–1200. https://doi.org/10.1038/1811199a0
Munteanu, I. G., & Apetrei, C. (2021). Analytical methods used in determining antioxidant activity: A review. International Journal of Molecular Sciences, 22(7), Article 3380. https://doi.org/10.3390/ijms22073380
Sidiq, L. O., Segun, P. A., & Ogbole, O. O. (2018). Total phenolic contents and antioxidant activity of nine medicinal plants used in Nigerian traditional medicine. Tropical Journal of Natural Product Research, 2(9), 438–441. https://doi.org/10.26538/tjnpr/v2i9.6
Mishra, A. P., Saklani, S., Salehi, B., Parcha, V., Sharifi-Rad, M., Milella, L., Iriti, M., Sharifi-Rad, J., & Srivastava, M. (2018). Satyrium nepalense, a high altitude medicinal orchid of Indian Himalayan region: Chemical profile and biological activities of tuber extracts. Cellular and Molecular Biology, 64(8), 35–43. https://doi.org/10.14715/cmb/2018.64.8.6
Teugwa, C. M., Mejiato, P. C., Zofou, D., Tchinda, B. T., & Boyom, F. F. (2013). Antioxidant and antidiabetic profiles of two African medicinal plants: Picralima nitida (Apocynaceae) and Sonchus oleraceus (Asteraceae). BMC Complementary and Alternative Medicine, 13, Article 175. https://doi.org/10.1186/1472-6882-13-175

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