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Impact of Crystalline Structural Differences Between α- and β-Chitosan on Their Nanoparticle Formation Via Ionic Gelation and Superoxide Radical Scavenging Activities

机译:α-和β-壳聚糖的晶体结构差异通过离子凝胶化和超氧化物自由基清除活性对其纳米颗粒形成的影响

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摘要

α- and β-Chitosan nanoparticles were obtained from shrimp shell and squid pen chitosan with different set of deacetylation degree (%DD) and molecular weight (MW) combinations. After nanoparticle formation via ionic gelation with sodium tripolyphosphate (TPP), the % crystallinity index (%CI) of the α- and β-chitosan nanoparticles were reduced to approximately 33% and 43% of the initial %CI of the corresponding α- and β-chitosan raw samples, respectively. Both forms of chitosan and chitosan nanoparticles scavenged superoxide radicals in a dose-dependent manner. The %CI of α- and β-chitosan and chitosan nanoparticles was significantly negatively correlated with superoxide radical scavenging abilities over the range of concentration (0.5, 1, 2 and 3 mg/mL) studied. High %DD, and low MW β-chitosan exhibited the highest superoxide radical scavenging activity ( < 0.05). α- and β-Chitosan nanoparticles prepared from high %DD and low MW chitosan demonstrated the highest abilities to scavenge superoxide radicals at 2.0–3.0 mg/mL ( < 0.05), whereas α-chitosan nanoparticles, with the lowest %CI, and smallest particle size ( < 0.05), prepared from medium %DD, and medium MW chitosan showed the highest abilities to scavenge superoxide radicals at 0.5–1.0 mg/mL ( < 0.05). It could be concluded that α- and β-chitosan nanoparticles had superior superoxide radical scavenging abilities than raw chitosan samples.
机译:从虾壳和鱿鱼笔壳聚糖中获得α-和β-壳聚糖纳米粒子,它们具有不同的脱乙酰度(%DD)和分子量(MW)组合。在通过三聚磷酸钠(TPP)进行离子凝胶形成纳米颗粒后,α-和β-壳聚糖纳米颗粒的%结晶度指数(%CI)分别降低到相应α-和β-壳聚糖初始%CI的33%和43% β-壳聚糖分别为原始样品。壳聚糖和壳聚糖纳米颗粒的两种形式均以剂量依赖性方式清除超氧化物自由基。在所研究的浓度范围(0.5、1、2和3 mg / mL)内,α-和β-壳聚糖和壳聚糖纳米颗粒的%CI与超氧化物自由基清除能力显着负相关。高%DD和低MWβ-壳聚糖表现出最高的超氧化物自由基清除活性(<0.05)。由%DD和低MW壳聚糖制备的α-和β-壳聚糖纳米颗粒在2.0-3.0 mg / mL(<0.05)时表现出最高的清除超氧自由基的能力,而%CI最低且最小的α-壳聚糖纳米颗粒由中等%DD和中等分子量的壳聚糖制备的粒径(<0.05)显示出清除过氧化物自由基的能力最高,为0.5-1.0 mg / mL(<0.05)。可以得出结论,α-和β-壳聚糖纳米粒子具有比原始壳聚糖样品优越的超氧化物自由基清除能力。

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