首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Chip-based CE for rapid separation of 8-aminopyrene-1,3,6-trisulfonic acid (APTS) derivatized glycans.
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Chip-based CE for rapid separation of 8-aminopyrene-1,3,6-trisulfonic acid (APTS) derivatized glycans.

机译:基于芯片的CE,可快速分离8-氨基py-1,3,6-三磺酸(APTS)衍生的聚糖。

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摘要

Fluorescently labeled carbohydrates released from glycoproteins were separated using a commercially available microfluidic chip electrophoresis system. While the instrumentation was primarily designed for DNA analysis it was found that the application base can be easily expanded using the development software provided by the manufacturer. The carbohydrates were released by enzymatic digestion (PNGase F) from glycoproteins present in human plasma after boronic acid - lectin affinity enrichment. After fluorescent labeling with 8-aminopyrene-1,3,6-trisulfonic acid the carbohydrates were separated based on capillary gel electrophoresis mechanism and detected by a fluorescence detector using a blue (470 nm) LED. The separation was completed in 40 s in a microfluidic channel of 14 mm length. Glucose ladder carbohydrate oligomers differing by one glucose unit were baseline separated up to a 20-mer with the main limitation being the detection sensitivity. As expected, the observed resolution in these experiments did not approach that of standard CE with 20 times longer separation distance; however, the chip-based analysis excelled in the speed of the separation. Similar electrophoretic profiles of glycans released from plasma glycoproteins were obtained using a standard CE equipment with 35 cm separation length and microfluidic chips with a separation distance of only 14 mm.
机译:使用市售的微流控芯片电泳系统分离从糖蛋白释放的荧光标记碳水化合物。虽然该仪器主要是为DNA分析而设计的,但发现使用制造商提供的开发软件可以轻松扩展应用基础。硼酸-凝集素亲和力富集后,糖类通过酶消化(PNGase F)从人血浆中存在的糖蛋白中释放出来。用8-氨基py-1,3,6-三磺酸进行荧光标记后,根据毛细管凝胶电泳机理分离碳水化合物,并使用蓝色(470 nm)LED通过荧光检测器进行检测。分离在40秒钟内在14 mm长的微流体通道中完成。基线分离一个葡萄糖单位的葡萄糖梯状碳水化合物低聚物,将其基线分离至20-mer,主要限制是检测灵敏度。不出所料,在这些实验中观察到的分辨率无法达到标准CE的分辨率,而分离距离要长20倍。但是,基于芯片的分析在分离速度方面表现出色。使用具有35 cm分离长度的标准CE设备和仅14 mm分离距离的微流控芯片,可以获得从血浆糖蛋白释放的聚糖的类似电泳图谱。

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