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Inhibition of Oxidative Stress by Low-Molecular-Weight Polysaccharides with Various Functional Groups in Skin Fibroblasts

机译:皮肤成纤维细胞中具有各种官能团的低分子量多糖对氧化应激的抑制作用

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The aim of this study was to evaluate the in cellulo inhibition of hydrogen-peroxide-induced oxidative stress in skin fibroblasts using different low-molecular-weight polysaccharides (LMPS) prepared from agar (LMAG), chitosan (LMCH) and starch (LMST), which contain various different functional groups (i.e., sulfate, amine, and hydroxyl groups). The following parameters were evaluated: cell viability, intracellular oxidant production, lipid peroxidation, and DNA damage. Trolox was used as a positive control in order to allow comparison of the antioxidant efficacies of the various LMPS. The experimentally determined attenuation of oxidative stress by LMPS in skin fibroblasts was: LMCH LMAG LMST. The different protection levels of these LMPS may be due to the physic-chemical properties of the LMPS’ functional groups, including electron transfer ability, metal ion chelating capacities, radical stabilizing capacity, and the hydrophobicity of the constituent sugars. The results suggest that LMCH might constitute a novel and potential dermal therapeutic and sun-protective agent.
机译:这项研究的目的是使用琼脂(LMAG),壳聚糖(LMCH)和淀粉(LMST)制备的不同低分子量多糖(LMPS)来评估纤维素对皮肤成纤维细胞中过氧化氢诱导的氧化应激的抑制作用,其中包含各种不同的官能团(即硫酸盐,胺基和羟基)。评价了以下参数:细胞活力,细胞内氧化剂产生,脂质过氧化和DNA损伤。为了比较各种LMPS的抗氧化剂功效,将Trolox用作阳性对照。 LMPS在皮肤成纤维细胞中通过实验确定的氧化应激衰减为:LMCH> LMAG> LMST。这些LMPS的不同保护水平可能是由于LMPS官能团的物理化学性质,包括电子转移能力,金属离子螯合能力,自由基稳定能力和组成糖的疏水性。结果表明LMCH可能构成一种新型的和潜在的皮肤治疗和防晒剂。

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