Original ArticlePharmacognosy CommunicationsVol. 9 | Issue 3 | 2019 | pp. 96–99Open access
Antiplasmodial Biflavanones from the Stem Bark of Garcinia buchananii Engl.
- 1,2*,
- 1,
- 3,
- 4,
- 5,
- 6,
- 6,
- 6
- 1 Institute of Traditional Medicine, Muhimbili University of Health and Allied Sciences, Dar es Salaam, TANZANIA.
- 2 Department of Chemical Science and Technology, Technical University of Kenya, Nairobi, KENYA.
- 3 Institut für Chemie, Universität Potsdam, OT Golm, Haus 25, D/0.19 (Labor E/0.06-0.08), Karl-Liebknecht-Str. 24-25, D-14476 Potsdam, GERMANY.
- 4 Department of Traditional Medicine Research, National Institute for Medical Research, Dar es Salaam, TANZANIA.
- 5 Centre for Traditional Medicine and Drug Research, Kenya Medical Research Institute (KEMRI), Nairobi, KENYA.
- 6 Department of Chemistry, University of Nairobi, Chiromo Road, Nairobi, KENYA.
Published in Pharmacognosy Communications
Correspondence: Ruth Anyango Omole
Institute of Traditional Medicine, Muhimbili University of Health and Allied Sciences, Dar es Salaam, TANZANIA.; Department of Chemical Science and Technology, Technical University of Kenya, Nairobi, KENYA.
Email: oruth2002@yahoo.com
Copyright: © 2019 Manuscript Technomedia. This is an open access article.
- Published:
- Jun 16, 2019
How to cite
Omole, R. A., Moshi, M. J., Heydenreich, M., Malebo, H. M., Gathirwa, J. W., Oriko, R. O., Omosa, L. K., & Midiwo, J. O. (2019). Antiplasmodial Biflavanones from the Stem Bark of Garcinia buchananii Engl. Pharmacognosy Communications, 9(3), 96–99. https://doi.org/10.5530/pc.2019.3.20.
Abstract
Introduction: Plants of the genus Garcinia are traditionally used treat a range of infectious and non-infectious diseases. Garcinia species are reported to have been shown to have a range of biological activities including cytotoxicity antimicrobial, antifungal, antioxidant, antimalarial and HIV-1 protease inhibitory activity among others. Methods: Solvent extraction was done using CH2Cl2: MeOH (1:1). Isolation was done using column chromatography with silica gel as the stationery phase and ethyl acetate and n-hexane used as mobile phase in increasing polarity. Thin layer chromatography was used to monitor the isolation. Structure elucidation was done using nuclear magnetic resonance and mass spectroscopic techniques. Chloroquine resistant (W2) and chloroquine sensitive (D6) P. falciparum strains were used for antiplasmodial assay. Results: Further bioassay guided fractionation of a CH2Cl2: MeOH (1:1) extract of Garcinia buchananii led to the isolation of two already reported biflavanones, isogarcinol (1) and guttiferone (2) with promising antiplasmodial activity against a chloroquine resistant (W2) Plasmodium falciparum strain with an IC50 of 2.8 ± 0.90 μg/mL for compound 1 and IC50 of 3.94 ± 0.38 μg/mL for compound 2. Compounds 1 and 2 also exhibited moderate activity against the chloroquine sensitive (D6) Plasmodium falciparum strain with IC50 of 7.03±0.60 and 10.64±4.50 μg/mL, respectively. Conclusion: The results provide proof to support the use of G. buchananii by the indigenous community for antimalarial therapy.
Keywords
Subject
Article metadata
| Title | Antiplasmodial Biflavanones from the Stem Bark of Garcinia buchananii Engl. |
|---|---|
| Authors | Ruth Anyango Omole; Mainen Julius Moshi; Matthias Heydenreich; Hamisi Masanja Malebo; Jeremiah Waweru Gathirwa; Richard Owor Oriko; Leonida Kerubo Omosa; Jacob Ogweno Midiwo |
| Affiliations | Institute of Traditional Medicine, Muhimbili University of Health and Allied Sciences, Dar es Salaam, TANZANIA.; Department of Chemical Science and Technology, Technical University of Kenya, Nairobi, KENYA.; Institut für Chemie, Universität Potsdam, OT Golm, Haus 25, D/0.19 (Labor E/0.06-0.08), Karl-Liebknecht-Str. 24-25, D-14476 Potsdam, GERMANY.; Department of Traditional Medicine Research, National Institute for Medical Research, Dar es Salaam, TANZANIA.; Centre for Traditional Medicine and Drug Research, Kenya Medical Research Institute (KEMRI), Nairobi, KENYA.; Department of Chemistry, University of Nairobi, Chiromo Road, Nairobi, KENYA. |
| Corresponding author | oruth2002@yahoo.com |
| Journal | Pharmacognosy Communications |
| Volume / Issue | Vol. 9, Issue 3 (2019) |
Also in this issue
- Editorialpp. 84–84
- Inhalation Absorption Prediction (IAP) Model for Predicting Medicinal Cannabis Phytochemical Pharmacokineticspp. 85–90
- Oleanolic Acid and other Compounds Isolated from Cordia africana Lam which Inhibit Vancomycin Resistant Enterococcuspp. 91–95
- Westringa fruticosa (Willd.) Druce Leaf and Flower Extracts Lack Antibacterial Activity and are Non-toxic in vitropp. 100–105
- Xanthophyllum fragrans C.T. White Leaf Extracts Inhibit the Growth of Pseudomonas aeruginosapp. 106–111
Readers Also Viewed
Development and Validation of UV/visible Spectrophotometric Method for Estimation of Piroxicam from Bulk and Formulation
Sandip Mohan Honmane, Kunal Rajaram Yadav, Yuvraj Dilip Dange
Apr 23, 2025
Effects of Artificial Intelligence on Academic Performance of Library and Information Science University Students: A Meta-Analysis (2023-2025)
Kayode Sunday John Dada
Aug 6, 2026
Bridging Innovation and Impact: A Multidisciplinary Approach to Contemporary Research Challenges
Mueen Ahmed KK
Aug 11, 2026