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An SEC/MALS study of alternan degradation during size-exclusion chromatographic analysis

机译:尺寸排阻色谱分析中交替蛋白降解的SEC / MALS研究

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Ultrahigh-molar-mass (M) polymers such as DNA, cellulose, and polyolefins are routinely analyzed using size-exclusion chromatography (SEC) to obtain molar mass averages, distributions, and architectural information. It has long been contended that high-M polymers can degrade during SEC analysis; if true, the inaccurate molar mass information obtained can adversely affect decisions regarding processing and end-use properties of the macromolecules. However, most evidence to the effect of degradation has been circumstantial and open to alternative interpretation. For example, the shift in SEC elution volume as a function of increased chromatographic flow rate, observed using only a concentration-sensitive detector, may be the result of degradation or of elution via a nondegradatory slalom chromatography mechanism. Here, using both concentration-sensitive and multiangle static light-scattering detection, we provide unambiguous evidence that the polysaccharide alternan actually degrades during SEC analysis. The decrease in molar mass and size of alternan with increasing flow rate, measured using light scattering, allows ruling out an SC mode of elution and can only be interpreted as due to degradation. These findings demonstrate the extreme fragility of ultrahigh-M polymers and the care that must be taken for accurate characterization.
机译:常规使用尺寸排阻色谱(SEC)对超高分子量(M)聚合物(例如DNA,纤维素和聚烯烃)进行分析,以获得摩尔质量平均值,分布和建筑信息。长期以来,人们一直认为高M聚合物会在SEC分析过程中降解。如果为真,则获得的不正确的摩尔质量信息可能会对有关大分子的加工和最终用途特性的决策产生不利影响。但是,大多数有关降解影响的证据都是间接的,并且可以选择其他解释。例如,仅使用浓度敏感的检测器观察到,SEC洗脱体积随色谱流速增加而变化的原因可能是降解或通过非降解平流回旋色谱机理洗脱的结果。在这里,使用浓度敏感和多角度静态光散射检测,我们提供了明确的证据,即多糖奥特那在SEC分析过程中实际上降解了。使用光散射测量,随着流速的增加,交替糖的摩尔质量和大小的降低,可以排除洗脱的SC模式,并且只能解释为降解。这些发现证明了超高M聚合物的极易碎性,以及为准确表征必须采取的谨慎措施。

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