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Size determination of hyaluronan using a gas-phase electrophoretic mobility molecular analysis

机译:气相电泳迁移率分子分析法测定透明质酸的大小

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摘要

Hyaluronan (HA) is a linear non-sulfated polysaccharide mainly found in the extracellular matrix. The size of HA can vary from a few disaccharides up to at least 25,000 units, reaching molecular weights of 10 × 103 kDa. HA has many biological functions, and both its size and tissue concentration play an important role in many physiological and pathological processes. It is relatively easy to determine the HA concentration using enzyme-linked binding protein assays, but the molecular weight of HA has so far been shown to be a more challenging task to measure. Here, we present a method for size determination of HA using gas-phase electrophoretic mobility molecular analysis (GEMMA), which utilizes the electrophoretic mobility of molecules in air to estimate the molecular weight of the analyte. We show that this method gives reliable molecular weight estimations of HA in the range of 30–2400 kDa, which covers almost its whole biological range. The average measuring time for one GEMMA spectrum is between 5 and 10 min using only 6 pg of HA. In addition, the peak area in a GEMMA spectrum can be used to estimate the HA concentration in the sample. The high sensitivity and small sample volumes make GEMMA an excellent tool for both size determinations and estimation of concentration of samples with low HA concentration, as is the case for HA extracted from small tissue samples.
机译:透明质酸(HA)是一种主要在细胞外基质中发现的线性非硫酸化多糖。 HA的大小可以从几个二糖到至少25,000个单位不等,分子量达到10×10 3 kDa。 HA具有许多生物学功能,其大小和组织浓度在许多生理和病理过程中都起着重要作用。使用酶联结合蛋白测定法确定HA浓度相对容易,但是迄今为止,HA的分子量已被证明是更具挑战性的测量任务。在这里,我们介绍了一种使用气相电泳迁移率分子分析(GEMMA)来确定HA尺寸的方法,该方法利用了分子在空气中的电泳迁移率来估计分析物的分子量。我们表明,该方法可以在30–2400 kDa的范围内提供可靠的HA分子量估计,几乎涵盖了其整个生物学范围。仅使用6 pg的HA,一个GEMMA光谱的平均测量时间为5至10分钟。此外,GEMMA光谱中的峰面积可用于估计样品中的HA浓度。高灵敏度和小样本量使GEMMA成为大小确定和低HA浓度的样品浓度估算的绝佳工具,就像从小组织样本中提取的HA一样。

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  • 来源
    《Glycobiology》 |2012年第1期|p.7-11|共5页
  • 作者

    Göran Larsson;

  • 作者单位

    Heart Centre, Umeå University Hospital, Umeå University, @%@To whom correspondence should be addressed: Tel: +@%@;

    Fax: +@%@;

    e-mail: @%@ (G.L.) and Tel: +46-90-786-6723;

    Fax: +46-90-786-9795;

    e-mail:;

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