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通过与[14C]氰化物反应测定牛玻璃体液透明质酸上的还原端基。

Measurements of reducing end groups on bovine vitreous-humour hyaluronic acid by reaction with [14C]cyanide.

作者信息

Swann D A, Silver F H, Sotman S L, Hermann H

出版信息

Biochem J. 1982 Dec 1;207(3):409-14. doi: 10.1042/bj2070409.

Abstract

Bovine vitreous-humour sodium hyaluronate was purified by precipitation with cetylpyridinium chloride, CsCl-density-gradient sedimentation and gel-permeation chromatography. The number of reducing end groups in two similarly prepared hyaluronate samples was determined by reaction with K14CN, and measurements of intrinsic viscosity were performed to determine whether this reaction caused degradation of the hyaluronate. The intrinsic viscosity of one hyaluronate sample was 192ml/g, compared with a value of 187ml/g after reaction with [14C]cyanide, which indicates that the labelling reaction did not cause depolymerization of the hyaluronate. The Mr calculated from these viscosity values is approx. 60000. Fractionation of the [14C]cyanide-labelled hyaluronate by gel chromatography showed that it was composed of a polydisperse population of molecules with calculated chain lengths, based on the ratio of [14C]cyanide to uronic acid, ranging in molecular weight from 9000 to 264000, with an average Mr of 63200. On the basis of these measurements it is concluded that reaction with [14C]cyanide does not cause degradation of bovine vitreous-humour hyaluronate polysaccharide chains and that reaction with [14C]cyanide can be used to determine the molecular weight of this hyaluronate.

摘要

通过用十六烷基氯化吡啶沉淀、CsCl密度梯度沉降和凝胶渗透色谱法对牛玻璃体透明质酸钠进行纯化。通过与K14CN反应测定两个类似制备的透明质酸盐样品中还原端基的数量,并进行特性粘度测量以确定该反应是否导致透明质酸盐降解。一个透明质酸盐样品的特性粘度为192ml/g,与用[14C]氰化物反应后的187ml/g值相比,这表明标记反应未导致透明质酸盐解聚。根据这些粘度值计算出的Mr约为60000。通过凝胶色谱法对[14C]氰化物标记的透明质酸盐进行分级分离表明,它由多分散的分子群体组成,根据[14C]氰化物与糖醛酸的比例计算出的链长,分子量范围为9000至264000,平均Mr为63200。基于这些测量结果得出结论,与[14C]氰化物反应不会导致牛玻璃体透明质酸多糖链降解,并且与[14C]氰化物反应可用于测定该透明质酸盐的分子量。

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本文引用的文献

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A modified uronic acid carbazole reaction.一种改良的糖醛酸咔唑反应。
Anal Biochem. 1962 Oct;4:330-4. doi: 10.1016/0003-2697(62)90095-7.
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Form and dimensions of isolated hyaluronic acid.
Biochim Biophys Acta. 1956 Mar;19(3):480-9. doi: 10.1016/0006-3002(56)90471-1.

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