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Structural Characterization and Antioxidant Potential of Chitosan by γ-Irradiation from the Carapace of Horseshoe Crab

机译:马蹄铁蟹甲基辐射壳聚糖的结构表征及抗氧化潜力

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摘要

Natural product extraction is ingenuity that permits the mass manufacturing of specific products in a cost-effective manner. With the aim of obtaining an alternative chitosan supply, the carapace of dead horseshoe crabs seemed feasible. This sparked an investigation of the structural changes and antioxidant capacity of horseshoe crab chitosan (HCH) by γ-irradiation using 60Co source. Chitosan was extracted from the horseshoe crab (Tachypleus gigas; Müller) carapace using heterogeneous chemical N-deacetylation of chitin, followed by the irradiation of HCH using 60Co at a dose-dependent rate of 10 kGy/hour. The average molecular weight was determined by the viscosimetric method. Regarding the chemical properties, the crystal-like structures obtained from γ-irradiated chitosan powders were determined using Fourier transfer infrared (FTIR) spectroscopy and X-ray diffraction (XRD) analyses. The change in chitosan structure was evident with dose-dependent rates between 10 and 20 kGy/hour. The antioxidant properties of horseshoe crab-derived chitosan were evaluated in vitro. The 20 kGy γ-irradiation applied to chitosan changed the structure and reduced the molecular weight, providing sufficient degradation for an increase in antioxidant activity. Our findings indicate that horseshoe crab chitosan can be employed for both scald-wound healing and long-term food preservation due to its buffer-like and radical ion scavenging ability.
机译:天然产品提取是纯粹的含量以成本效益的方式大规模制造特定产品。随着替代壳聚糖供应的目的,死马蹄蟹的甲壳似乎是可行的。这引出了使用60CO源对γ-辐射进行马蹄蟹壳聚糖(HCH)结构变化和抗氧化能力的研究。用甲壳素的异构化学品N-脱乙酰化从马蹄蟹(Tachypleus Gigas;Müller)甲壳中提取壳聚糖,然后使用60CO以10kGy /小时的剂量依赖性速率照射Hch的照射。通过粘度法测定平均分子量。关于化学性质,使用傅里叶转移红外(FTIR)光谱和X射线衍射(XRD)分析测定从γ辐射的壳聚糖粉末获得的晶状结构。壳聚糖结构的变化具有10%至20 kgy /小时的剂量依赖性速率明显。在体外评估马蹄蟹衍生的壳聚糖的抗氧化性能。施用于壳聚糖的20kGyγ辐射改变了结构并降低了分子量,为抗氧化活性的增加提供了足够的降解。我们的研究结果表明,由于其缓冲液和自由基离子清除能力,可以使用马蹄蟹壳聚糖来用于鳞片伤口愈合和长期食物保存。

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