Antimicrobial activity of Scutellaria L. plant extracts
Анотація
The work deals with the evaluating the antimicrobial activity of ethanolic extracts of different plant organs (roots, leaves, buds) of three species of Scutellaria genus: S. albida L., S. altissima L., S. baicalensis L., grown in M.M. Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine, against gram-negative (Pseudomonas aeruginosa, Escherichia coli and Serratia marcescens) and gram-positive (Staphylococcus aureus) microorganisms. Analysis of the effect of ethanolic extracts of juvenile Scutellaria plants on bacterial cultures showed that S. albida had the highest inhibitory potential, as it inhibited the growth of all bacterial test objects. S. creticola extracts effected both gram-positive bacteria and gram-negative Staphylococcus aureus. The extracts of S. altissima and S. baicalensis juvenile plants were characterized by their activity against two gram-positive test objects – Escherichia coli and Pseudomonas aeruginosa. The analysis of the antibacterial activity of ethanolic fractions of the extracts of Scutellaria individual organs showed that the highest inhibitory effect was demonstrated by the extracts of leaves and roots of S. baicalensis against Escherichia coli, the leaves and roots of S. albida against Staphylococcus aureus, and S. albida of against Pseudomonas aeruginosa. The results confirmed the antimicrobial effect of different Scutellaria species, so that these plants could be used for the treatment of bacterial infections.Посилання
- Arıtuluk, Z. C., Özkul, K. C., Renda, G., Ekizoğlu, M., & Ezer, N. (2019). Antimicrobial activity of three Scutellaria L. species from Turkey. Journal of Research in Pharmacy, 23(3), 552–558.
- Bai, M., Zheng, C.-J., Wu, S.-Y., Chen, G.-Y., Song, X.-P., & Han, C.-R. (2019). Chemical constituents from Scutellaria hainanensis C. Y. Biochemical Systematics and Ecology, 82, 1–12.
- Chen, N. T., Wu, W., Hou, X., Yang, Q., & Li, Z. (2021, 04 Sep). A review: antimicrobial properties of several medicinal plants widely used in Traditional Chinese Medicine. Food Quality and Safety, 5, 1–22.
- Cole, I. B., Cao, J., Alan, A. R., Saxena, P. K., & Murch, S. J. (2008). Comparisons of Scutellaria baicalensis, Scutellaria lateriflora and Scutellaria racemosa: genome size, antioxidant potential and phytochemistry. Planta Med, 74(4), 474–
- Golmakani, E., Mohammadi, A., Ahmadzadeh, S. T., & Kamali, H. (2014, November). Phenolic and flavonoid content and antioxidants capacity of pressurized liquid extraction and perculation method from roots of Scutellaria pinnatifida A. Hamilt. subsp alpina (Bornm) Rech. f. The Journal of Supercritical Fluids, 95, 318–324.
- Japan Society of Chemotherapy. (1981). Method of minimal inhibitory concentration. Chemotherapy, 29, 76–78.
- Koshchavko, K. S. Luchakivska, Yu. S., & Koval, I. V. (2023, May 19). Obtaining transgenic roots of altissima L. and S. albida L. for the accumulation of a high content of flavonoids. In Proceedings of the 17th International scientific and practical conference "Biotechnology of the XXI Century", 119–121 (In Ukrainian).
- Koshchavko, K. S., & Luchakivska, Y. S. (2022). Evaluation of the influence of cultivation conditions (in vitro and in situ) on the level of pharmacologically valuable substances in plants of the genus Scutellaria Materials of the 16th All-Ukrainian Scientific and Practical Conference "Biotechnology of the XXI Century", 60–61 (In Ukrainian).
- Koval, I. V., Vakulenko, T. B., & Koshchavko, K. S. (2020). Carpological characteristics of some species of the genus Scutellaria The international scientific conference is dedicated to the 85th anniversary of the founding of the National Botanical Garden named after M.M. Hryshka of the National Academy of Sciences of Ukraine, 253–256 (In Ukrainian).
- Li, Y. Y., Tang, X. L., Jiang, T., Li, P. F., Li, P. L., & Li, G. Q. (2013, August 5). Bioassay-guided isolation of neo-clerodane diterpenoids from Scutellaria barbata. Journal of Asian Nat Prod Res,15(9), 941–94
- Mamadalieva, N. Z., Herrmann, F., Readi, E.-M. Z., Tahrani, A., Hamoud, R., Egamberdieva, D. R., Azimova, S. S., & Wink, M. (2011, October). Flavonoids in Scutellaria immaculata and ramosissima (Lamiaceae) and their biological activity. Journal of Pharm Pharmacol, 63(10), 1346–1357.
- Minarchenko, V. M. (2005). Medicinal vascular plants of Ukraine (medical and resource value). Phytosocial Center (In Ukrainian).
- Minukhin, V. V., Kovalenko, N. I., & Zamazii, T. M. (2014). Family of intestinal bacteria. Kharkiv National Medical University, 44 (In Ukrainian).
- Okoth, A., Chenia, H. Y., Koorbanally, N. A. (2013). Antibacterial and antioxidant activites of flavonoids from Lannea alata (Engl.) Engl. (Anacardiaceae). Phytochem. Lett., 6, 476–481.
- Sato, Y., Suzaki, S., Nishikawa, T., Kihara, M., Shibata, H., & Higuti, T. (2000). Phytochemical flavones isolated from Scutellaria barbata and antibacterial activity against methicillin-resistant Staphylococcus aureus. Journal of Ethnopharmacol, 72(3), 483–48
- Shah, M., Waheed, M., Rehman, N.U., Halim, S.A., Ahmed, M., Rehman, H., Zahoor, M., Mubin, S., Khan, A., Nassan, M. A., Batiha, G. E.-S., & Harrasi, A.-A. (2021). Biomedical Applications of Scutellaria edelbergiiRech. f.: in Vitro and in Vivo Molecules, 26(12), 3740.
- Shang, X., He, X., He, X., Li, M., Zhang, R., Fan, P., Zhang, Q., & Jia, Z. (2010, March 24). The genus Scutellaria an ethnopharmacological and phytochemical review. Journal of Ethnopharmacol, 128(2), 279–313.
- Shi, G. X., Shao, J., Wang, T. M., Wang, C. Z. (2014). New advance in studies on antimicrobal activity of Scutellaria baicalensis and its effective ingredients. Zhongguo Zhong Yao Za Zhi. China Journal of Chinese Materia Medica, 39(19), 3713–3718.
- Shishkin, B. K. & Yuzepchuk, S. V. (1954). Flora of the USSR. Publishing House of the Academy of Sciences of the USSR, 20, 71–225 (In Russian).
- Sklyar, T., Lavrentievа, K., Kurahina, N., Lykholat, T., Papiashvili, M., Lykholat, O., Stepanskyi, D. (2022). Monitoring of Enterobacteria strains with producing β-lactamases in males with infectious-inflammatory diseases of urogenital tract. Med. Perspekt. 27(2):110-8. Available from: https://journals.uran.ua/index.php/2307-0404/article/view/260282
- Sklyar, T., Gavryliuk, V., Lavrentievа, K., Kurahina, N., Lykholat, T., Zaichenko, K., Papiashvili, M., Lykholat, O. & Stepansky, D. (2021). Monitoring of distribution of antibiotic-resistant strains of microorganisms in patients with dysbiosis of the urogenital tract. Mech. Biol. 12(2), 199–205.
- Sklyar, T., Kurahinaa. N., Lavrentieva, K., Burlaka, V., Lykholat, T., & Lykholat, O. (2021). Autonomic (mobile) genetic elements of bacteria and their hierarchy. Cytology and Genetics. 55(3), 256–269.
- Sklyar, T.V., Lavrentiev, K.V., Gavrilyuk, V.G., Kurahina, N.V., Vereshchaha, M.O. & Lykholat, O.A. (2018). Monitoring of multiresistant community-associated MRSA strains from patients with pathological processes of different localization. Mech. Biol. 9(2), 281–286.
- Wikipedia. (2020). Serratia marcescens (In Ukrainian). https://uk.wikipedia.org/wiki/Serratia_marcescens
- World Checklist of Selected Plant Families. Scutellaria. https://wcsp.science.kew.org/qsearch.do
- Yang, X., Huang, S., Chen, J., Song, N., Wang, L., Zhang, Z., Deng, G., Zheng, H., Zhu, XQ., & Lu, F. (2010, January 8). Evaluation of the adjuvant Ythe immune protection induced by UV-attenuated Toxoplasma gondii in mouse models. Vaccine, 28(3), 737–7
- Zhurba, A. Y. (2013). Antibacterial activity of cereal lectins. Collection of scientific works of participants of the III stage of the All-Ukrainian competition for the defense of scientific research works of students of the Small Academy of Sciences of Ukraine for the years 2010-2013, 5–22 (In Ukrainian).
Переглядів анотації: 1185 Завантажень PDF: 502
Опубліковано
2024-12-30
Номер
Розділ
Articles
