a Bioengineering Division , Hacettepe University , Ankara , Turkey.
b Chemical Engineering Department , Hacettepe University , Ankara , Turkey.
Artif Cells Nanomed Biotechnol. 2018 Feb;46(1):178-184. doi: 10.1080/21691401.2017.1304404. Epub 2017 Mar 22.
Monodisperse silica microspheres with bimodal pore-size distribution were proposed as a high performance sorbent for DNA isolation in batch fashion under equilibrium conditions. The proposed sorbent including both macroporous and mesoporous compartments was synthesized 5.1 μm in-size, by a "staged shape templated hydrolysis and condensation method". Hydrophilic polymer based sorbents were also obtained in the form of monodisperse-macroporous microspheres ca 5.5 μm in size, with different functionalities, by a developed "multi-stage microsuspension copolymerization" technique. The batch DNA isolation performance of proposed material was comparatively investigated using polymer based sorbents with similar morphologies. Among all sorbents tried, the best DNA isolation performance was achieved with the monodisperse silica microspheres with bimodal pore size distribution. The collocation of interconnected mesoporous and macroporous compartments within the monodisperse silica microspheres provided a high surface area and reduced the intraparticular mass transfer resistance and made easier both the adsorption and desorption of DNA. Among the polymer based sorbents, higher DNA isolation yields were achieved with the monodisperse-macroporous polymer microspheres carrying trimethoxysilyl and quaternary ammonium functionalities. However, batch DNA isolation performances of polymer based sorbents were significantly lower with respect to the silica microspheres.
具有双模态孔径分布的单分散二氧化硅微球被提议作为一种高性能的吸附剂,用于在平衡条件下以批量方式分离 DNA。所提出的吸附剂包括大孔和介孔隔室,通过“分阶段形状模板水解和缩合方法”合成 5.1 μm 大小。还通过开发的“多阶段微悬浮共聚”技术,以类似的形态获得了具有不同官能团的单分散大孔微球形式的亲水性聚合物基吸附剂。使用具有相似形态的聚合物基吸附剂比较了所提出材料的批量 DNA 分离性能。在所尝试的所有吸附剂中,具有双模态孔径分布的单分散二氧化硅微球实现了最佳的 DNA 分离性能。单分散二氧化硅微球内的互连介孔和大孔隔室的配置提供了高表面积并降低了颗粒内传质阻力,使 DNA 的吸附和解吸更加容易。在聚合物基吸附剂中,带有三甲氧基硅烷基和季铵官能团的单分散大孔聚合物微球实现了更高的 DNA 分离产率。然而,相对于二氧化硅微球,聚合物基吸附剂的批量 DNA 分离性能显著降低。