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Phenol-Rich Feijoa sellowiana (Pineapple Guava) Extracts Protect Human Red Blood Cells from Mercury-Induced Cellular Toxicity

机译:富含苯酚的Feijoa sellowiana(菠萝番石榴)提取物可保护人类红细胞免受汞诱导的细胞毒性

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摘要

Plant polyphenols, with broadly known antioxidant properties, represent very effective agents against environmental oxidative stressors, including mercury. This heavy metal irreversibly binds thiol groups, sequestering endogenous antioxidants, such as glutathione. Increased incidence of food-derived mercury is cause for concern, given the many severe downstream effects, ranging from kidney to cardiovascular diseases. Therefore, the possible beneficial properties of Feijoa sellowiana against mercury toxicity were tested using intact human red blood cells (RBC) incubated in the presence of HgCl2. Here, we show that phenol-rich (10–200 µg/mL) extracts from the Feijoa sellowiana fruit potently protect against mercury-induced toxicity and oxidative stress. Peel and pulp extracts are both able to counteract the oxidative stress and thiol decrease induced in RBC by mercury treatment. Nonetheless, the peel extract had a greater protective effect compared to the pulp, although to a different extent for the different markers analyzed, which is at least partially due to the greater proportion and diversity of polyphenols in the peel. Furthermore, Fejioa sellowiana extracts also prevent mercury-induced morphological changes, which are known to enhance the pro-coagulant activity of these cells. These novel findings provide biochemical bases for the pharmacological use of Fejioa sellowiana-based functional foods in preventing and combating mercury-related illnesses.
机译:具有广泛已知的抗氧化特性的植物多酚是对抗环境氧化应激源(包括汞)的非常有效的制剂。这种重金属不可逆地结合了硫醇基,螯合了内源性抗氧化剂,例如谷胱甘肽。鉴于从肾脏到心血管疾病的许多严重的下游影响,食品中汞的发生率增加令人关注。因此,使用在HgCl2存在下孵育的完整人类红细胞(RBC)测试了Feijoa sellowiana对汞毒性的可能有益特性。在这里,我们表明,Feijoa sellowiana果实中富含苯酚的提取物(10–200 µg / mL)可以有效抵抗汞诱导的毒性和氧化应激。果皮和果肉提取物都能抵消汞处理引起的红细胞氧化应激和硫醇的减少。尽管如此,与纸浆相比,果皮提取物具有更大的保护作用,尽管对于所分析的不同标记物具有不同的程度,这至少部分是由于果皮中多酚的比例和多样性更大。此外,Fejooa sellowiana提取物还可以防止汞诱导的形态变化,已知这种形态变化可增强这些细胞的促凝活性。这些新发现为基于Fejioa sellowiana的功能性食品在预防和抵抗汞相关疾病中的药理应用提供了生化基础。

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