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Depolymerization study of sodium hyaluronate by flow field-flow fractionation/multiangle light scattering

机译:流场-分流/多角度光散射法研究透明质酸钠的解聚研究

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Thermal depolymerization of ultrahigh-molecular-weight (UHMW) sodium hyaluronate (NaHA) was studied systematically by using frit-inlet asymmetrical flow field-flow fractionation/multiangle light scattering/differential refractive index (FI-AFlFFF/MALS/DRI). FI-AFlFFF was utilized for the size separation of NaHA samples which had been thermally degraded for varied treatment times, followed by light-scattering detection to determine MW and structural information of degraded NaHA products. Analysis of NaHA products showed time-dependent depolymerization of raw molecules into smaller-MW components, as well as unfolding of compact structures of UHMW NaHA. To determine whether the observed decrease in MW of sodium hyaluronate originated from the chain degradation of UHMW molecules or from dissociation of entangled complex particles that may have been formed by intermolecular association, narrow size fractions (1 × 107–6 × 107 and >6 × 107 MW) of NaHA molecules were collected during FlFFF separation and followed by thermal treatment. Subsequent FI-AFlFFF/MALS analysis of collected fractions after thermal treatment suggested that the ultrahigh-MW region (>107 Da) of NaHA is likely to result from supermolecular structures formed by aggregation of large molecules.
机译:利用玻璃料入口不对称流场分流/多角度光散射/微分折射率(FI-AFlFFF / MALS / DRI),系统地研究了超高分子量(UHMW)透明质酸钠(NaHA)的热解聚。 FI-AF1FFF用于热降解了不同处理时间的NaHA样品的大小分离,然后进行光散射检测以确定降解的​​NaHA产物的分子量和结构信息。对NaHA产品的分析显示,时间依赖性的原始分子解聚为较小的MW组分,以及UHMW NaHA紧凑结构的展开。为了确定观察到的透明质酸钠分子量的降低是由于UHMW分子的链降解还是可能由于分子间缔合而形成的纠缠复合颗粒的解离,窄尺寸分数(1×107 –6×107在FlFFF分离过程中收集了和> 6×107 MW)的NaHA分子,然后进行了热处理。热处理后,随后对收集的馏分进行FI-AFlFFF / MALS分析表明,NaHA的超高分子量区域(> 107 Da)可能是由大分子聚集形成的超分子结构造成的。

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