Kjellin K G, Hallander L
J Neurol. 1979 Oct;221(4):235-44. doi: 10.1007/BF00314640.
Isotachophoresis in polyacrylamide gel tubes (PAG-ITP) and in capillary tubes (Tachophor, LKB) have previously been found by the authors, to be very promising high-separation methods for CSF and serum proteins, especially regarding the diagnosis of MS. PAG-ITP methods for analytical and preparative use have been described by the authors elsewhere, while in this paper proper cationic systems for ITP in capillary tubes for studying gammaglobulins in microliter amounts of CSF and serum are described, i.e. the albumin injection-clog problem is avoided and the preparation time can be forced. By using microdialysis of the CSF samples for desalting, with a technique easy to perform and with high reproducibility, microliter amounts of native CSF can be performed in less than half an hour. The method seems to be even more applicable for clinical and scientific use if the capillary isotachophoretic apparatus is connected to a synchronized equipment (LKB Tachophrac) with a cellulosa acetate strip onto which the separated fractions are ejected for further analysis by immunological tests. The analytical systems used have been especially directed to gammaglobulins in CSF and serum regarding further studies on demyelinating and infectious disorders of the nervous system.
作者先前发现,聚丙烯酰胺凝胶管等速电泳(PAG - ITP)和毛细管等速电泳(Tachophor,LKB)是用于脑脊液和血清蛋白的非常有前景的高分离方法,尤其是在多发性硬化症的诊断方面。作者已在其他地方描述了用于分析和制备的PAG - ITP方法,而本文描述了用于研究微升量脑脊液和血清中γ球蛋白的毛细管等速电泳的合适阳离子系统,即避免了白蛋白注射堵塞问题,且可缩短制备时间。通过使用易于操作且具有高重现性的脑脊液样品微透析技术进行脱盐,可在不到半小时内处理微升量的天然脑脊液。如果将毛细管等速电泳装置连接到带有醋酸纤维素条的同步设备(LKB Tachophrac)上,分离出的组分被喷射到该条上以便通过免疫测试进行进一步分析,那么该方法似乎更适用于临床和科研用途。所使用的分析系统特别针对脑脊液和血清中的γ球蛋白,用于神经系统脱髓鞘和感染性疾病的进一步研究。