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The antioxidant properties of oligo sodium alginates prepared by radiation-induced degradation in aqueous and hydrogen peroxide solutions

机译:在水溶液和过氧化氢溶液中辐射诱导降解制得的藻酸钠寡酸钠的抗氧化性能

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In this study, the radiation-induced degradation of sodium alginates (NaAlg), having different guluronic acids (G) and mannuronic acid (M) ratios, (G/M), in aqueous and hydrogen peroxide solutions were investigated first; after that, the antioxidative properties of the oligo sodium alginates prepared were identified. Radiation degradation yield values, G(S), were determined for each irradiation condition and compared with those of the dry-state-irradiated NaAlg. The results showed that the oligo sodium alginates with M_n from 1000 to 3750 Da could be easily prepared by γ-irradiation of NaAlg solution in the presence of small amount of hydrogen peroxide at low doses (below 5.0 kGy) and by controlling the G/M. The antioxidant properties of the fractions with various molecular weight and G/M were evaluated by determining the scavenging ability of 1,1-diphenyl-2-picrylhydrazyl free radical (DPPH·), and 50% inhibition concentrations of LF120 NaAlg, which was irradiated in aqueous solution and H2O2 solution at a dose of 2.5 kGy and having number average molecular weights of 10.2 and 3.75 kDa were found to be 10.0 and 2.5 mg/ml, respectively. The results demonstrated that its molecular weight was an important factor in controlling the antioxidant properties of NaAlg, and due to the sharp decrease in molecular weight in the case of aqueous media irradiation the effect of G/M of initial polymer became unimportant whereas the dry-state-irradiated NaAlgs behaved conversely.
机译:在这项研究中,首先研究了在水溶液和过氧化氢溶液中具有不同古洛糖醛酸(G)和甘露糖醛酸(M)比(G / M)的海藻酸钠(NaAlg)的辐射诱导降解;之后,鉴定了所制备的藻酸低钠盐的抗氧化性能。确定每种辐照条件的辐射降解产率值G(S),并将其与干燥状态辐照的NaAlg进行比较。结果表明,通过在低剂量(5.0 kGy以下)少量过氧化氢存在下对NaAlg溶液进行γ辐照,并控制G / M,可以轻松制备M_n为1000至3750 Da的藻酸钠寡钠。 。通过测定1,1-二苯基-2-吡啶并肼基自由基(DPPH·)的清除能力和50%抑制浓度的LF120 NaAlg的辐照能力,评估了各种分子量和G / M的馏分的抗氧化性能。发现在水溶液和H 2 O 2溶液中浓度为2.5kGy且数均分子量为10.2和3.75kDa的H 2 O分别为10.0和2.5mg / ml。结果表明,其分子量是控制NaAlg抗氧化性能的重要因素,并且由于在水性介质辐照下分子量急剧降低,初始聚合物的G / M效应变得不重要,而干聚合物的受状态辐照的NaAlgs的行为相反。

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