Barnett Institute and Department of Chemistry and Chemical Biology, Northeastern University , Boston, Massachusetts 02115, United States.
Anal Chem. 2016 Oct 4;88(19):9669-9677. doi: 10.1021/acs.analchem.6b02517. Epub 2016 Sep 23.
Therapeutic proteins (TPs) are critical in modern medicine, yet shortage of TPs in disaster situations and remote areas remains a worldwide challenge. Manufacturing and real-time release of TPs on demand at the point-of-care is considered the key to this issue, which requires reliable and rapid analytics techniques for quality assurance. Herein we report a microfluidic platform that could be implemented in-line and at the point-of-care for real-time decision-making about the quality of a TP. The in vivo efficacy and duration of efficacy of TPs were assessed by the equilibrium and kinetics of TP and TP receptor (TPR) binding, using electrokinetic concentration (EC) and molecular charge modulation (MCM). EC can simultaneously concentrate and separate bound and unbound species in an assay based on electrical mobility, allowing for the quantification of binding. MCM enables the application of EC to arbitrary TPs by enhancing the mobility differences between TPs, TPRs, and TP-TPR complexes. This technology is homogeneous and overcomes many practical challenges of conventional heterogeneous assays. We developed various formats of assays for equilibrium and kinetic analysis and rapid determination of degradation of TPs, obtaining results comparable to state-of-the-art technologies with significantly less time (<1 h) and simpler setup. Finally, we demonstrated that the results of MCM-EC based assays correlated well with those from mass spectrometry and cell-based assay, which are the industrial standards for quality testing of TPs.
治疗性蛋白(therapeutic proteins,TPs)在现代医学中至关重要,但在灾难情况下和偏远地区治疗性蛋白的短缺仍然是一个全球性挑战。在医疗现场按需制造和实时释放治疗性蛋白被认为是解决这个问题的关键,这需要可靠和快速的分析技术来保证质量。在此,我们报告了一种微流控平台,可用于实时决策治疗性蛋白的质量,该平台可以在医疗现场进行在线实施。通过电动力学浓度(electrokinetic concentration,EC)和分子电荷调制(molecular charge modulation,MCM)来评估治疗性蛋白的体内疗效和疗效持续时间,即治疗性蛋白和治疗性蛋白受体(TPR)的结合平衡和动力学。EC 可以基于电迁移率同时浓缩和分离结合和未结合的物质,从而实现结合的定量。MCM 通过增强治疗性蛋白、TPR 和 TP-TPR 复合物之间的迁移率差异,使 EC 能够应用于任意治疗性蛋白。该技术是均相的,克服了传统非均相测定法的许多实际挑战。我们开发了各种平衡和动力学分析以及快速测定治疗性蛋白降解的测定格式,与最先进的技术相比,所需时间(<1 h)更短,设置更简单,获得了可比的结果。最后,我们证明了基于 MCM-EC 的测定结果与质谱和基于细胞的测定结果高度相关,这两种方法是治疗性蛋白质量检测的行业标准。