4.6 Article

Protection of Erythrocytes and Microvascular Endothelial Cells against Oxidative Damage by Fragaria vesca L. and Rubus idaeus L. Leaves Extracts-The Mechanism of Action

Journal

MOLECULES
Volume 27, Issue 18, Pages -

Publisher

MDPI
DOI: 10.3390/molecules27185865

Keywords

HMEC-1; raspberry; wild strawberry; cytotoxicity; erythrocytes; oxidation; cells; membrane; bioactivity; Fragaria vesca L; Rubus idaeus L

Funding

  1. Wroclaw University of Environmental and Life Sciences funds [B010/0014/22]
  2. Wroclaw University of Environmental and Life Sciences

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The aim of this study was to determine the biological activity of ellagitannins rich extracts from raspberry leaves and wild strawberry in relation to cells and cell membranes. The results showed that these extracts have protective effects on cells and membranes, and exhibit high biological activity, which may be used to delay aging and prevent diseases associated with oxidative stress.
The aim of this work is to determine the biological activity of ellagitannins rich extracts from leaves of raspberry (Rubus idaeus L.) and wild strawberry (Fragaria vesca L.) in relation to cells and cell membranes. Detailed qualitative and quantitative analysis of phenolic compounds of the extract was made using chromatographic methods. Cytotoxic and antioxidant activities of tested extracts in relation to erythrocytes and human vascular endothelial cells (HMEC-1) were determined by using fluorimetric and spectrophotometric methods. In order to establish the influence of the extracts on the physical properties of the membrane, such as osmotic resistance and erythrocytes shapes, mobility and/or hydration of polar heads and fluidity of hydrocarbon chains of membrane lipids, microscopic and spectroscopic methods were used. The results showed that the extracts are non-toxic for erythrocytes and HMEC-1 cells (up to concentration of 50 mu g/mL), but they effectively protect cells and their membranes against oxidative damage. The increase in osmotic resistance of erythrocytes, formation of echinocytes and changes only in the polar part of the membrane caused by the extracts demonstrate their location mainly in the hydrophilic part of the membrane. The results indicate that tested extracts have high biological activities and may be potentially used in delaying the ageing process of organisms and prevention of many diseases, especially those associated with oxidative stress.

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