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A versatile salt-based method to immobilize glycosaminoglycans and create growth factor gradients

机译:一种基于盐的多功能方法可固定糖胺聚糖并创建生长因子梯度

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摘要

Glycosaminoglycans (GAGs) are known to play pivotal roles in physiological processes and pathological conditions. To study interactions of GAGs with proteins, immobilization of GAGs is often required. Current methodologies for immobilization involve modification of GAGs and/or surfaces, which can be time-consuming and may involve specialized equipment. Here, we use an efficient and low-cost method to immobilize GAGs without any (chemical) modification using highly concentrated salt solutions. A number of salts from the Hofmeister series were probed for their capacity to immobilize heparin and chondroitin-6-sulfate on microtiter plates applying single chain antibodies against GAGs for detection (ELISA). From all salts tested, the cosmotropic salt ammonium sulfate was most efficient, especially at high concentrations (80–100% (v/v) saturation). Immobilized GAGs were bioavailable as judged by their binding of FGF2 and VEGF, and by their susceptibility towards GAG lyases (heparinase I, II and III, chondroitinase ABC). Using 80% (v/v) saturated ammonium sulfate, block and continuous gradients of heparin were established and a gradient of FGF2 was created using a heparin block gradient as a template. In conclusion, high concentrations of ammonium sulfate are effective for immobilization of GAGs and for the establishment of gradients of both GAGs and GAG-binding molecules, which enables the study to the biological roles of GAGs.Electronic supplementary materialThe online version of this article (10.1007/s10719-019-09872-4) contains supplementary material, which is available to authorized users.
机译:糖胺聚糖(GAG)在生理过程和病理状况中起着关键作用。为了研究GAG与蛋白质的相互作用,通常需要固定GAG。当前的固定方法涉及GAG和/或表面的修饰,这可能是耗时的并且可能涉及专用设备。在这里,我们使用一种高效且低成本的方法来固定GAG,而无需使用高浓度盐溶液进行任何(化学)修饰。对霍夫迈斯特系列的许多盐进行了检测,以将肝素和6-硫酸软骨素固定在微量滴定板上,并使用针对GAG的单链抗体进行检测(ELISA)。从所有测试的盐中,同溶性盐硫酸铵是最有效的,尤其是在高浓度(饱和度为80–100%(v / v))时。固定化的GAG可以通过其与FGF2和VEGF的结合以及对GAG裂解酶(肝素酶I,II和III,软骨素酶ABC)的敏感性来判断其生物利用度。使用80%(v / v)的饱和硫酸铵,建立肝素的嵌段和连续梯度,并以肝素嵌段梯度为模板创建FGF2梯度。总之,高浓度的硫酸铵可有效地固定GAGs和建立GAGs和GAG结合分子的梯度,从而使人们能够研究GAGs的生物学作用。电子补充材料本文的在线版本(10.1007 / s10719-019-09872-4)包含补充材料,授权用户可以使用。

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