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首页> 外文期刊>Journal of separation science. >Flow field-flow fractionation and multiangle light scattering for ultrahigh molecular weight sodium hyaluronate characterization
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Flow field-flow fractionation and multiangle light scattering for ultrahigh molecular weight sodium hyaluronate characterization

机译:流场-流分馏和多角度光散射用于超高分子量透明质酸钠的表征

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This review describes the utility of flow field-flow fractionation coupled with multiangle light scattering and differential refractive index (FlFFF-MALS-DRI) detection methods for the separation of ultrahigh molecular weight sodium hyaluronate (NaHA) materials and for the characterization of molecular weight distribution as well as structural determination. The sodium salt of hyaluronic acid (HA), NaHA, is a water-soluble polysaccharide with a broad range of molecular weights (10~5-10~8) found in various naturally occurring fluids and tissues. Basic principles of FlFFF-MALS using field programming for the separation of the degraded products of NaHA prepared by treating raw materials with depolymerization or degradation processes such as membrane filtration, enzymatic degradation, ultrasonic degradation, alkaline reaction, irradiation by γ-rays, and thermal treatment for the development of pharmaceutical applications are introduced. Changes in molecular weight distribution and conformation of NaHA materials due to external stimuli are also discussed.
机译:这篇综述描述了流场-流分馏与多角度光散射和微分折射率(FlFFF-MALS-DRI)检测方法的结合,用于分离超高分子量透明质酸钠(NaHA)材料和表征分子量分布以及结构上的决心透明质酸(HA)的钠盐是一种水溶性多糖,其分子量范围很广(10〜5-10〜8),存在于各种天然液体和组织中。 FlFFF-MALS的基本原理,使用现场编程来分离NaHA的降解产物,该降解产物是通过解聚或降解过程(例如膜过滤,酶促降解,超声降解,碱反应,γ射线辐照和热)处理原材料而制备的介绍了用于药物应用开发的治疗方法。还讨论了由于外部刺激而引起的NaHA材料分子量分布和构象的变化。

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