Abstract
This study investigates the bioactive compound content and biological activities of raw powder extracts and particle size fractions from Solanum torvum leaves. The leaves, harvested from Douala, were processed into powders and subsequently divided into different fractions. Methanolic extracts of these powders were analyzed for their content of bioactive compounds (total polyphenols, total flavonoids, and condensed tannins), antioxidant (DPPH, ABTS, FRAP assays), and antimicrobial (bacterial and fungal) activities. The particle size fraction of 250-400 µm constitutes the largest proportion (33.41%) of the raw powder. The highest contents of bioactive compounds are found in the 200-250, 400-500, and < 125 µm fractions for total polyphenols (44.62 ± 0.19 mg GEA/100 ml extract), total flavonoids (14.47 ± 0.37 mg QE/100 ml extract), and condensed tannins (22.79 ± 0.12 mg CE/100 ml extract), respectively. The antioxidant activity of extracts from 500-800µm fraction improved their DPPH and ABTS assays by 31.50% and 40.44% compared to the raw powder. The same fraction (500-800 µm) and the raw powder extracts demonstrated bactericidal activities, while the 125-200, 200-250, and ≥ 800 µm fraction extracts exhibited moderate and significant antifungal activities against several bacterial and fungal strains, respectively. These biological activities are primarily attributed to the average flavonoid contents, which become more accessible in extracts after fractionation. This method of processing powder suggests that no plant powder should be disregarded or rejected due to its low content of bioactive compounds.
Publisher
Journal of Experimental Biology and Agricultural Sciences
Reference41 articles.
1. Acharyya, S., & Khatun, B. (2018). Antimicrobial and analgesic activity of Solanum torvum. Haya: The Saudi Journal of Life Sciences, 3(6), 459–464. https://doi.org/10.21276/haya.2018.3.6.2
2. Assiéné, A. J. A., Fombang, N. E., & Mbofung, C. M. (2021). Influence of Compounds Contents and Particle Size on Some Functional Properties of Moringa oleifera Leaves (Lam) Powders. Asian Food Science Journal, 20(1), 60–71. https://doi.org/10.9734/afsj/2021/v20i130255
3. Bahar, B. G., & Khalili, M. (2015). Particle size analysis on wide size distribution powders; Effect of sampling and characterization technique. Advanced Powder Technology, 26(1), 200–207. https://doi.org/10.1016/j.apt.2014.09.009
4. Boateng, L., Nortey, E., Ohemeng, A. N., Asante, M., & Steiner-Asiedu, M. (2019). Sensory attributes and acceptability of complementary foods fortified with Moringa oleifera leaf powder. Nutrition and Food Science, 49(3), 393–406. https://doi.org/10.1108/NFS-07-2018-0192
5. Borokini, F. B., Oladipo, G. O., Komolafe, O. Y., & Ajongbolo, K. F. (2022). Phytochemical, nutritional and antioxidant properties of Abelmoschus esculentus Moench L leaf: A pointer to its fertility potentials. Measurement: Food, 6, 100034. https://doi.org/10.1016/j.meafoo.2022.100034