Department of Analytical Chemistry, Physical Chemistry and Chemical Engineering, University of Alcala, Ctra. Madrid-Barcelona, Km. 33.600, 28871, Alcalá de Henares, Madrid, Spain.
Division of Neonatology, Child and Teenager Institute, San Carlos Clinic Hospital-IdISSC, Madrid, Spain.
Biosens Bioelectron. 2020 Jun 15;158:112156. doi: 10.1016/j.bios.2020.112156. Epub 2020 Mar 19.
Based on the exceptional and new opened biosensing possibilities of self-propelled micromotors, a micromotor-based immunoassay (MIm) has smartly been designed for C-reactive protein (CRP) determination in plasma of preterm infants with sepsis suspicion. The design of the micromotors involved the electrosynthesis of a carbon-based outer layer (for antibody functionalization), an intermediate Ni layer (for magnetic guidance and stopped flow operations) and PtNPs inner catalytic layer (for catalytic bubble propulsion). Micromotors biofunctionalization on the outer layer (using carbon black (CB), reduced graphene oxide (rGO) and multi-walled carbon nanotubes (MWCNTs), and biocompatible propulsion capabilities, were carefully studied. Magnetic rGO/Ni/PtNPs micromotors exhibited the most efficient and reproducible (CV = 9%) anti-CRP functionalization, controlled stopped-flow operations as well as efficient bubble propulsion (1% HO, 1,5% NaCh, speed 140 μm s). Analytical performance of MIm was excellent, allowing the direct (without dilution), sensitive (LOD = 0.80 μg/mL), and accurate CRP determination (E = 1%) in hardly available preterm babies' plasma samples with suspected sepsis using very low volumes (<10 μL) and in just 5 min of on-the-fly bioassay. Overall, the results obtained allowed the fast and reliable sepsis diagnostics in preterm babies' individuals with suspected sepsis, not only proving the usefulness of the approach as its potential utilization as point-of-care device for clinical analysis but drawing new horizons in extremely low sample volumes-based diagnostics.
基于自主推进微马达卓越的、新开辟的生物传感可能性,巧妙设计了一种基于微马达的免疫分析(MIm),用于检测疑似败血症的早产儿血浆中的 C 反应蛋白(CRP)。微马达的设计涉及碳基外层的电合成(用于抗体功能化)、中间 Ni 层(用于磁导向和停止流动操作)和 PtNPs 内催化层(用于催化气泡推进)。仔细研究了微马达外层的生物功能化(使用炭黑(CB)、还原氧化石墨烯(rGO)和多壁碳纳米管(MWCNTs)以及生物相容性推进能力)。磁性 rGO/Ni/PtNPs 微马达表现出最有效和可重复的(CV=9%)抗 CRP 功能化、控制停止流动操作以及高效气泡推进(1%HO、1.5%NaCh、速度 140μm/s)。MIm 的分析性能非常出色,允许直接(无需稀释)、灵敏(LOD=0.80μg/mL)和准确地测定 CRP,在怀疑患有败血症的早产儿血浆样本中,使用很少的体积(<10μL)和仅 5 分钟的实时生物分析即可进行。总的来说,这些结果允许快速可靠地对疑似败血症的早产儿进行败血症诊断,不仅证明了该方法的实用性及其作为临床分析即时护理设备的潜在利用价值,而且为基于极低样本量的诊断开辟了新的视野。