Goetzinger W, Kotler L, Carrilho E, Ruiz-Martinez M C, Salas-Solano O, Karger B L
Barnett Institute and Department of Chemistry, Northeastern University, Boston, MA 02115, USA.
Electrophoresis. 1998 Feb;19(2):242-8. doi: 10.1002/elps.1150190217.
In a previous paper, a 2% w/w replaceable high molecular mass linear polyacrylamide solution (high molecular mass LPA) was used to achieve long read-lengths for DNA sequencing by capillary electrophoresis (E. Carrilho et al., Anal. Chem. 1996, 68, 3305-3313). In that work, the polymer was prepared by polymerization in water at 6% w/w, followed by dilution to 2% w/w. In this study, an improved method for preparation of high molecular mass LPA was developed, based on inverse emulsion polymerization. With this polymerization procedure, the LPA results in a molecular mass of approximately 9 MDa, with characteristics of a fine powder of high purity and practically unlimited shelf life. Using size exclusion chromatography (SEC) and viscosity measurements to characterize the polymer, good batch-to-batch reproducibility was found. It was observed that the viscous polymer solutions made from these high molecular mass polymers require careful preparation and handling because the method of dissolution could affect the molecular mass distribution and the resultant separation of DNA components. Solutions containing 2% w/w of LPA made by emulsion polymerization were simple to prepare, resulting in excellent performance as a replaceable matrix for DNA sequencing by capillary electrophoresis. The viscosity of the polymer decreased exponentially when pressure was applied, allowing easy replacement from a capillary using a syringe. With a properly prepared matrix, a read-length of more than 1000 bases in 80 min with an accuracy better than 97%, and better than 99% for the first 800 bases, could be achieved.
在之前的一篇论文中,使用了2% w/w的可替换高分子质量线性聚丙烯酰胺溶液(高分子质量LPA)来通过毛细管电泳实现DNA测序的长读长(E. Carrilho等人,《分析化学》,1996年,68卷,3305 - 3313页)。在那项工作中,聚合物是通过在水中以6% w/w的比例聚合制备的,随后稀释至2% w/w。在本研究中,基于反相乳液聚合开发了一种制备高分子质量LPA的改进方法。通过这种聚合程序,LPA的分子量约为9 MDa,具有高纯度细粉的特性且实际保质期无限。使用尺寸排阻色谱(SEC)和粘度测量来表征聚合物,发现批次间具有良好的重现性。据观察,由这些高分子质量聚合物制成的粘性聚合物溶液需要仔细制备和处理,因为溶解方法可能会影响分子量分布以及DNA组分的最终分离。通过乳液聚合制备的含2% w/w LPA的溶液易于制备,作为毛细管电泳DNA测序的可替换基质表现出色。当施加压力时,聚合物的粘度呈指数下降,便于使用注射器从毛细管中轻松替换。使用适当制备的基质,在80分钟内可以实现超过1000个碱基的读长,准确率优于97%,前800个碱基的准确率优于99%。