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Human erythrocytes are affected in vitro by extracts of Ugni molinae leaves.

机译:人红细胞在体外受到木乃香叶提取物的影响。

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摘要

Ugni molinae Turcz, also known as "Murtilla", is a plant that grows in the south of Chile. Infusions of their leaves have long been used in traditional native herbal medicine. The chemical composition of the leaves indicates the presence of polyphenols, which have antioxidant properties. In order to evaluate the mechanisms of their antioxidant properties and the toxicity of the aqueous extracts of leaves, the extracts were induced to interact with human red cells, their isolated unsealed membranes (IUM) and large unilamellar vesicles (LUV) of dimyristoylphosphatidyltidylcholine (DMPC), representative of phospholipid classes located in the outer monolayer of the erythrocyte membrane. Scanning electron microscopy (SEM) observations indicated that the extracts achieved a significant alteration in the shape of the erythrocytes as they changed their discoid shape to echinocytes. According to the bilayer couple hypothesis, the shape change indicates that the polyphenols were located in the outer moiety of the red cell membrane. This conclusion was confirmed by the fluorescence experiments performed in IUM and DMPC LUV. In fact, the extracts produced slight initial increases followed by sharp decreases at higher concentrations in the anisotropy and general polarization parameters. These results imply that the extracts induced structural perturbations in the acyl chain and polar group packing arrangements of the erythrocyte IUM and DMPC LUV lipid bilayers: first ordering and afterwards disordering them as the extract concentration increased.
机译:Ugni molinae Turcz,也称为“ Murtilla”,是一种生长在智利南部的植物。长期以来,在传统的天然草药中一直使用叶浸液。叶子的化学成分表明存在多酚,这些酚具有抗氧化特性。为了评估其抗氧化性能的机理和叶片水提物的毒性,诱导提取物与人红细胞,其分离的未密封膜(IUM)和大单层囊泡的二肉豆蔻酰磷脂酰胆碱(DMPC)相互作用。代表位于红细胞膜外单层的磷脂类别。扫描电子显微镜(SEM)观察表明,提取物在将其盘状形状转变为棘突细胞时,红细胞的形状发生了显着变化。根据双层耦合假说,形状改变表明多酚位于红细胞膜的外部。通过IUM和DMPC LUV进行的荧光实验证实了这一结论。实际上,在各向异性和一般极化参数较高的浓度下,提取物产生了少量的初始增加,然后急剧减少。这些结果表明,提取物在红血球IUM和DMPC LUV脂质双层的酰基链和极性基团排列中引起结构扰动:随着提取物浓度的增加,它们首先出现顺序,然后发生混乱。

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