Dextras Philip, Burg Thomas P, Manalis Scott R
Department of Biological Engineering, Massachusetts Institute of Technology, 20 Ames Street, Cambridge, Massachusetts 02139, USA.
Anal Chem. 2009 Jun 1;81(11):4517-23. doi: 10.1021/ac9005149.
Measurements of the mass and surface charge of microparticles are employed in the characterization of many types of colloidal dispersions. The suspended microchannel resonator (SMR) is capable of measuring individual particle masses with femtogram resolution. Here, we employ the high sensitivity of the SMR resonance frequency to changes in particle position, relative to the cantilever tip, to determine the electrophoretic mobility of discrete particles in an applied electric field. When a sinusoidal electric field is applied to the suspended microchannel, the transient resonance frequency shift corresponding to a particle transit can be analyzed by digital signal processing to extract both the buoyant mass and electrophoretic mobility of each particle. These parameters, together with the mean particle density, can be used to compute the size, absolute mass, and surface charge of discrete microspheres, leading to a true representation of the mean and polydispersity of these quantities for a population. We have applied this technique to an aqueous suspension of two types of polystyrene microspheres, to differentiate them based on their absolute mass and their surface charge. The integrated measurement of electrophoretic mobility using the SMR is determined to be quantitative, based on comparison with commercial instruments, and exhibits favorable scaling properties that will ultimately enable measurements from mammalian cells.
微粒的质量和表面电荷测量被用于多种类型胶体分散体的表征。悬浮微通道谐振器(SMR)能够以飞克分辨率测量单个颗粒的质量。在此,我们利用SMR共振频率对颗粒相对于悬臂尖端位置变化的高灵敏度,来确定离散颗粒在施加电场中的电泳迁移率。当向悬浮微通道施加正弦电场时,对应于颗粒通过的瞬态共振频率偏移可通过数字信号处理进行分析,以提取每个颗粒的浮力质量和电泳迁移率。这些参数,连同平均颗粒密度,可用于计算离散微球的尺寸、绝对质量和表面电荷,从而真实地表示这些量在群体中的平均值和多分散性。我们已将此技术应用于两种类型聚苯乙烯微球的水悬浮液,以根据它们的绝对质量和表面电荷对其进行区分。基于与商业仪器的比较,使用SMR进行的电泳迁移率综合测量被确定为定量的,并且具有良好的缩放特性,最终将能够对哺乳动物细胞进行测量。