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Protection against Oxidative Damage in Human Erythrocytes and Preliminary Photosafety Assessment of Punica granatum Seed Oil Nanoemulsions Entrapping Polyphenol-rich Ethyl Acetate Fraction

机译:保护人体红细胞的氧化损伤和石榴籽油纳米乳截留的富含多酚的乙酸乙酯馏分的初步光安全性评估

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摘要

The main purpose of the present study is to evaluate the ability of nanoemulsion entrapping pomegranate peel polyphenol-rich ethyl acetate fraction (EAF) prepared from pomegranate seed oil and medium chain triglyceride to protect human erythrocyte membrane from oxidative damage and to assess preliminary in vitro photosafety. In order to evaluate the phototoxic effect of nanoemulsions, human red blood cells (RBCs) are used as a biological model and the rate of haemolysis and photohaemolysis (5 J cm-2 UVA) is assessed in vitro. The level of protection against oxidative damage caused by the peroxyl radical generator AAPH in human RBCs as well as its effects on bilayer membrane characteristics such as fluidity, protein profile and RBCs morphology are determined. EAF-loaded nanoemulsions do not promote haemolysis or photohaemolysis. Anisotropy measurements show that nanoemulsions significantly retrain the increase in membrane fluidity caused by AAPH. SDS-PAGE analysis reveal that AAPH induced degradation of membrane proteins, but that nanoemulsions reduce the extend of degradation. Scanning electron microscopy examinations corroborate the interaction between AAPH, nanoemulsions and the RBCs membrane bilayer. Our work demonstrates that P. granatum nanoemulsions are photosafe and protect RBCs against oxidative damage and possible disturbance of the lipid bilayer of biomembranes. Moreover it suggests that these nanoemulsions could be promising new topical products to reduce the effects of sunlight on skin
机译:本研究的主要目的是评估由石榴籽油和中链甘油三酸酯制备的纳米乳液截留石榴皮富含多酚的乙酸乙酯馏分(EAF)保护人红细胞膜免受氧化损伤的能力,并评估初步的体外光安全性。为了评估纳米乳剂的光毒性作用,将人红细胞(RBC)用作生物学模型,并在体外评估溶血和光溶血的速率(5 J cm-2 UVA)。确定了在人的RBC中由过氧自由基产生剂AAPH引起的氧化损伤的保护水平,以及其对双层膜特性(如流动性,蛋白质谱和RBC形态)的影响。装有EAF的纳米乳剂不会促进溶血或光溶血。各向异性测量结果表明,纳米乳剂能有效地抑制由AAPH引起的膜流动性的增加。 SDS-PAGE分析表明,AAPH诱导了膜蛋白的降解,但纳米乳剂降低了降解的范围。扫描电子显微镜检查证实了AAPH,纳米乳剂和RBCs双层膜之间的相互作用。我们的工作表明,颗粒状纳米乳是光安全的,可以保护RBC免受氧化损伤以及可能对生物膜脂质双层的破坏。此外,这表明这些纳米乳剂有望成为有希望的新的局部产品,以减少阳光对皮肤的影响。

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