Anthocyanin profile and effect at glaucoma Vaccinium arctostaphylos and Vaccinium myrtillus fruits
- 作者: Ibaeva K.A.1, Shamilov A.A.1, Tashlitsky V.N.2, Pozdnyakov D.I.1
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隶属关系:
- Volgograd State Medical University Ministry of Health of Russian Federation
- M.V. Lomonosov Moscow State University
- 期: 卷 28, 编号 9 (2025)
- 页面: 70-79
- 栏目: Problems of experimental biology and medicine
- URL: https://journals.eco-vector.com/1560-9596/article/view/690141
- DOI: https://doi.org/10.29296/25877313-2025-09-10
- ID: 690141
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Introduction. We may use the sources of anthocyanins for prevention of glaucoma in the medicine practice. Pharmacopoeia source of anthocyanins is fruits of bilberry. Related species such as Vaccinium arctostaphyllos may be additional source of anthocyanins along with Vaccinium myrtillus.
Aim – the comparative investigation of anthocyanin profile of Vaccinium arctostaphylos and V. myrtillus fruits and its effects at the progress of glaucoma.
Material and methods. We prepared two types of extracts: without and with addition of hydrochloric acid. We got anthocyanins profile by high-performance liquid chromatography with UV-detector. Glaucoma model was prepared by injection of polystyrene microballons in anterior chamber of rats with subsequent measurement of activity of succinate dehydrogenase and concentration of thiobarbituric acid reactive products (TBARS) in the rat’s brain tissues.
Results. Water-alcohol extracts with addition of hydrochloric acid from bilberry fruits contain three anthocyanins: delphinidin, cyanidin, mixture peonidin and malvidin. Cyanidin is the major components in the both types of fruits. Water-alcohol extracts without hydrochloric acid content nine substances: delphinidin 3-galactoside, delphinidin 3-glucoside, cyanidin 3-galactoside in mixture with delphinidin 3-arabinoside, cyanidin 3-glucoside, petunidin 3-glucoside, peonidin 3-glucoside, malvidin 3-glucoside. Malvidin 3-glucoside and delphinidin 3-glucoside are the main glycosides in the V. arctostaphylos fruits, cyaniding 3-glucoside and glycosides of delphinidin – in the V. myrtillus fruits. Water-alcohol extracts with addition of hydrochloric acid had more effective as neuroprotective agent by increasing concentration of succinate dehydrogenase and decreasing amount of TBARS in the brain.
Conclusion. Extracts from bilberry fruits have neuroprotective effect by presence of total amount of anthocyanins and may be used for prevention of glaucoma.
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作者简介
Kh. Ibaeva
Volgograd State Medical University Ministry of Health of Russian Federation
编辑信件的主要联系方式.
Email: ibaeva.hadizhat@mail.ru
ORCID iD: 0009-0002-7900-4559
SPIN 代码: 6678-9776
Post-graduate Student, Department of Pharmacognosy, Botany and Technology of Phytopreparations; Pyatigorsk Medical-Pharmaceutical Institute
俄罗斯联邦, Kalinina Avenue, 11, Pyatigorsk,357532A. Shamilov
Volgograd State Medical University Ministry of Health of Russian Federation
Email: shamilovxii@yandex.ru
ORCID iD: 0000-0002-6730-9518
SPIN 代码: 5834-3249
Dr.Sc. (Pharm.), Associate Professor, Professor of Department of Pharmacognosy, Botany and Technology of Phytopreparations; Pyatigorsk Medical-Pharmaceutical Institute
俄罗斯联邦, Kalinina Avenue, 11, Pyatigorsk,357532V. Tashlitsky
M.V. Lomonosov Moscow State University
Email: tashlitsky@belozersky.msu.ru
ORCID iD: 0000-0003-4100-2419
SPIN 代码: 2590-8903
Ph.D. (Chem.), Senior Research Scientist, Department of Chemistry of Natural Compounds, Chemical Faculty
俄罗斯联邦, Leninskie Gory, GSP-1, building 40, Moscow, 119991D. Pozdnyakov
Volgograd State Medical University Ministry of Health of Russian Federation
Email: pozdniackow.dmitry@yandex.ru
ORCID iD: 0000-0003-0889-7855
SPIN 代码: 6764-0279
Ph.D. (Pharm.), Head of Department of Pharmacology with course of Clinical Pharmacology; Pyatigorsk Medical-Pharmaceutical Institute
俄罗斯联邦, Kalinina Avenue, 11, Pyatigorsk,357532参考
- Zaa C.A., Marcelo Á.J., An Z. et al. Anthocyanins: Molecular Aspects on Their Neuroprotective Activity. Biomolecules. 2023; 13(11): 1598. doi: 10.3390/biom13111598.
- Tribble J.R., Hui F., Quintero H. et al. Neuroprotection in glaucoma: Mechanisms beyond intraocular pressure lowering. Mol Aspects Med. 2023; 92: 101193. doi: 10.1016/j.mam.2023.101193.
- Panchal S.K., John O.D., Mathai M.L. et al. Anthocyanins in Chronic Diseases: The Power of Purple. Nutrients. 2022; 14(10): 2161. doi: 10.3390/nu14102161.
- Sim R.H., Sirasanagandla S.R., Das S. et al. Treatment of Glaucoma with Natural Products and Their Mechanism of Action: An Update. Nutrients. 2022; 14(3): 534. doi: 10.3390/nu14030534.
- Фидарова А.Ч., Бериев О.Г. Распространение, биологические особенности и экологическое значение черники кавказской (Vaccinium arctostaphylos L.) в Республике Северная Осетия-Алания. Вестник МАНЭБ. 2008; 14(3): 74–76. [Fidarova A.Ch., Beriev O.G. Ditribution, biological features and ecological importance of Vaccinium arctostaphylos L. of Republic of North Ossetia-Alania. Vestnik MANEB. 2008; 14(3):74-76. (In Russ.)].
- Ayaz F.A., Hayirlioglu-Ayaz S., Gruz J. et al. Separation, characterization, and quantitation of phenolic acids in a little-known blueberry (Vaccinium arctostaphylos L.) fruit by HPLC-MS. J Agric Food Chem. 2005; 53(21): 8116–22. doi: 10.1021/jf058057y.
- Lätti A.K., Kainulainen P.S., Hayirlioglu-Ayaz S. et al. Characterization of anthocyanins in caucasian blueberries (Vaccinium arctostaphylos L.) native to Turkey. J Agric Food Chem. 2009; 57(12): 5244–5249. doi: 10.1021/jf9005627.
- Jooyandeh H., Noshad M., Khamirian R.A. Modeling of ultrasound-assisted extraction, characterization and in vitro pharmacological potential of polysaccharides from Vaccinium arctostaphylos L. Int J Biol Macromol. 2018; 107(Pt A): 938–948. doi: 10.1016/j.ijbiomac.2017.09.077.
- Kianbakht S., Abasi B., Dabaghian F.H. Anti-hyperglycemic effect of Vaccinium arctostaphylos in type 2 diabetic patients: a randomized controlled trial. Forsch Komplementmed. 2013; 20(1): 17–22. doi: 10.1159/000346607.
- Kianbakht S., Hashem-Dabaghian F. Antihypertensive efficacy and safety of Vaccinium arctostaphylos berry extract in overweight/obese hypertensive patients: A randomized, double-blind and placebo-controlled clinical trial. Complement Ther Med. 2019; 44: 296–300. doi: 10.1016/j.ctim.2019.05.010.
- Cásedas G., González-Burgos E., Smith C. et al. Regulation of redox status in neuronal SH-SY5Y cells by blueberry (Vaccinium myrtillus L.) juice, cranberry (Vaccinium macrocarpon A.) juice and cyanidin. Food Chem Toxicol. 2018; 118: 572–580. doi: 10.1016/j.fct.2018.05.066.
- Руководство по методам контроля качества и безопасности биологически активных добавок к пище. М.: Федеральный центр госсанэпиднадзора Минздрава России. 2004; 240 с. [Method Guide of quality control and safety of biological active food supplements. M.: federal Centre of gossanepidnadzor of Ministry of of Health. 2004; 240 p.]
- Patko E., Szabo E., Vaczy A. et al. Protective Effects of Pituitary Adenylate-Cyclase-Activating Polypeptide on Retinal Vasculature and Molecular Responses in a Rat Model of Moderate Glaucoma. Int J Mol Sci. 2023; 24(17): 13256. doi: 10.3390/ijms241713256.
- Nickavar B., Amin Gh. Anthocyanins from Vaccinium arctostaphylos berries. Pharmaceutical Biology. 2004; 42(4-5): 289–291. doi: 10.1080/13880200490511819.
- Shamilov A.A., Olennikov D.N., Pozdnyakov D.I. et al. Caucasian Blueberry: Comparative Study of Phenolic Compounds and Neuroprotective and Antioxidant Potential of Vaccinium myrtillus and Vaccinium arctostaphylos Leaves. Life (Basel). 2022; 12(12): 2079. doi: 10.3390/life12122079.
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