Nussbaum Robin, Robinson Kye J, Soda Yoshiki, Bakker Eric
Department of Inorganic and Analytical Chemistry, University of Geneva, Quai Ernest-Ansermet 30, CH-1211Geneva, Switzerland.
ACS Sens. 2022 Dec 23;7(12):3956-3962. doi: 10.1021/acssensors.2c02154. Epub 2022 Dec 2.
Point-of-care quantification of the anticoagulant heparin still remains a significant clinical challenge as the reference method (colorimetric anti-factor Xa assay) cannot be performed in whole blood. Our group recently put forth the novel optical nanosensing principle using an ionic solvatochromic dye as a signal transducer. These nanosensors demonstrated significantly improved selectivity and sensitivity compared to ion-exchange-type polyion nanosensors and enabled protamine/heparin quantification in blood plasma samples. However, because the readout is absorbance-based, they are still not suitable for whole blood measurements. To overcome the background absorbance of blood, the nanosensors were here embedded in an agarose hydrogel capable of filtering out red blood cells while allowing plasma components to diffuse into the gel. Calibration curves for both protamine and heparin were successfully obtained in buffer, undiluted plasma, and undiluted whole blood using different colorimetric image analysis methods and a simple experimental setup.
即时检测(POC)对抗凝剂肝素进行定量分析仍然是一项重大的临床挑战,因为参考方法(比色抗Xa因子测定法)无法在全血中进行。我们的团队最近提出了一种新型光学纳米传感原理,使用离子溶剂显色染料作为信号传感器。与离子交换型聚离子纳米传感器相比,这些纳米传感器的选择性和灵敏度有了显著提高,并能够对血浆样本中的鱼精蛋白/肝素进行定量分析。然而,由于读数基于吸光度,它们仍然不适合全血测量。为了克服血液的背景吸光度,这里将纳米传感器嵌入琼脂糖水凝胶中,该水凝胶能够滤除红细胞,同时允许血浆成分扩散到凝胶中。使用不同的比色图像分析方法和简单的实验装置,成功在缓冲液、未稀释血浆和未稀释全血中获得了鱼精蛋白和肝素的校准曲线。