Percival Benita C, Grootveld Martin, Gibson Miles, Osman Yasan, Molinari Marco, Jafari Fereshteh, Sahota Tarsem, Martin Mark, Casanova Federico, Mather Melissa L, Edgar Mark, Masania Jinit, Wilson Philippe B
Leicester School of Pharmacy, De Montfort University, The Gateway, Leicester LE1 9BH, UK.
Department of Chemical Sciences, University of Huddersfield, Queensgate, Huddersfield HD1 3DH, UK.
High Throughput. 2018 Dec 27;8(1):2. doi: 10.3390/ht8010002.
Novel sensing technologies for liquid biopsies offer promising prospects for the early detection of metabolic conditions through omics techniques. Indeed, high-field nuclear magnetic resonance (NMR) facilities are routinely used for metabolomics investigations on a range of biofluids in order to rapidly recognise unusual metabolic patterns in patients suffering from a range of diseases. However, these techniques are restricted by the prohibitively large size and cost of such facilities, suggesting a possible role for smaller, low-field NMR instruments in biofluid analysis. Herein we describe selected biomolecule validation on a low-field benchtop NMR spectrometer (60 MHz), and present an associated protocol for the analysis of biofluids on compact NMR instruments. We successfully detect common markers of diabetic control at low-to-medium concentrations through optimised experiments, including α-glucose (≤2.8 mmol/L) and acetone (25 µmol/L), and additionally in readily accessible biofluids, particularly human urine. We present a combined protocol for the analysis of these biofluids with low-field NMR spectrometers for metabolomics applications, and offer a perspective on the future of this technique appealing to 'point-of-care' applications.
用于液体活检的新型传感技术通过组学技术为代谢状况的早期检测提供了广阔前景。实际上,高场核磁共振(NMR)设备经常用于对一系列生物流体进行代谢组学研究,以便快速识别患有多种疾病的患者中异常的代谢模式。然而,这些技术受到此类设备体积过大和成本过高的限制,这表明小型、低场NMR仪器在生物流体分析中可能发挥作用。在此,我们描述了在低场台式NMR光谱仪(60 MHz)上对选定生物分子的验证,并介绍了一种在紧凑型NMR仪器上分析生物流体的相关方案。我们通过优化实验成功检测到了低至中等浓度的糖尿病控制常见标志物,包括α-葡萄糖(≤2.8 mmol/L)和丙酮(25 µmol/L),此外还能在易于获取的生物流体中检测到,尤其是人类尿液。我们提出了一种结合低场NMR光谱仪分析这些生物流体用于代谢组学应用的综合方案,并对该技术在“即时检测”应用方面的未来发展前景发表了看法。