Department of Bioengineering, University of Washington , Seattle, Washington 98195, United States.
Anal Chem. 2016 Nov 1;88(21):10404-10410. doi: 10.1021/acs.analchem.6b01961. Epub 2016 Oct 14.
Magnetic microbeads exhibit rapid separation characteristics and are widely employed for biomolecule and cell isolations in research laboratories, clinical diagnostics assays, and cell therapy manufacturing. However, micrometer particle diameters compromise biomarker recognition, which leads to long incubation times and significant reagent demands. Here, a stimuli-responsive binary reagent system is presented that combines the nanoscale benefits of efficient biomarker recognition and the microscale benefits of rapid magnetic separation. This system comprises magnetic nanoparticles and polymer-antibody (Ab) conjugates that transition from hydrophilic nanoscale reagents to microscale aggregates in response to temperature stimuli. The binary reagent system was benchmarked against Ab-labeled Dynabeads in terms of biomarker isolation kinetics, assay speed, and reagent needs. Surface plasmon resonance (SPR) measurements showed that polymer conjugation did not significantly alter the Ab's binding affinity or kinetics. ELISA analysis showed that the unconjugated Ab, polymer-Ab conjugates, and Ab-labeled Dynabeads exhibited similar equilibrium dissociation constants (K), ∼2 nM. However, the binary reagent system isolated HIV p24 antigen from spiked serum specimens (150 pg/mL) much more quickly than Dynabeads, which resulted in shorter binding times by tens of minutes, or about 30-50% shorter overall assay times. The binary reagent system showed improved performance because the Ab molecules were not conjugated to large, solid microparticle surfaces. This stimuli-responsive binary reagent system illustrates the potential advantages of nanoscale reagents in molecule and cell isolations for both research and clinical applications.
磁性微球具有快速分离的特点,广泛应用于研究实验室中的生物分子和细胞分离、临床诊断分析和细胞治疗制造。然而,微米级的粒径会影响生物标志物的识别,导致孵育时间长和试剂需求大。在这里,我们提出了一种响应性二元试剂系统,它结合了高效生物标志物识别的纳米级优势和快速磁分离的微级优势。该系统由磁性纳米颗粒和聚合物-抗体(Ab)缀合物组成,这些纳米颗粒和聚合物-抗体缀合物在温度刺激下从亲水性纳米级试剂转变为微尺度聚集体。该二元试剂系统在生物标志物分离动力学、分析速度和试剂需求方面与 Ab 标记的 Dynabeads 进行了基准测试。表面等离子体共振(SPR)测量表明,聚合物缀合并没有显著改变 Ab 的结合亲和力或动力学。ELISA 分析表明,未缀合的 Ab、聚合物-Ab 缀合物和 Ab 标记的 Dynabeads 表现出相似的平衡解离常数(K),约为 2 nM。然而,二元试剂系统从加标血清标本(150 pg/mL)中快速分离 HIV p24 抗原,比 Dynabeads 快得多,这导致结合时间缩短了数十分钟,或总分析时间缩短了约 30-50%。二元试剂系统之所以表现出更好的性能,是因为 Ab 分子没有与大的固体微颗粒表面缀合。这种响应性二元试剂系统说明了纳米级试剂在研究和临床应用中的分子和细胞分离中的潜在优势。