Department of Chemical Engineering, Bioresource Processing Research Institute of Australia, Monash University, Clayton, VIC, 3800, Australia.
School of Chemistry, Monash University, Clayton, VIC, 3800, Australia.
Sci Rep. 2019 Aug 2;9(1):11221. doi: 10.1038/s41598-019-47646-y.
Safe blood transfusion requires compatibility testing of donor and recipient to prevent potentially fatal transfusion reactions. Detection of immunoglobulin G (IgG) antibodies requires incubation at 37 °C, often for up to 15 minutes. Current incubation technology predominantly relies on slow thermal-gradient dependent conduction. Here, we present rapid optical heating via laser, where targeted illumination of a blood-antibody sample in a diagnostic gel card is converted into heat, via photothermal absorption. Our laser-incubator heats the 75 µL blood-antibody sample to 37 °C in under 30 seconds. We show that red blood cells act as photothermal agents under near-infrared laser incubation, triggering rapid antigen-antibody binding. We detect no significant damage to the cells or antibodies for laser incubations of up to fifteen minutes. We demonstrate laser-incubated immunohaematological testing to be both faster and more sensitive than current best practice - with clearly positive results seen from laser incubations of just 40 seconds.
安全输血需要对供体和受体进行相容性测试,以防止潜在的致命输血反应。检测免疫球蛋白 G(IgG)抗体需要在 37°C 下孵育,通常长达 15 分钟。目前的孵育技术主要依赖于缓慢的温度梯度依赖传导。在这里,我们通过激光实现快速光学加热,通过光热吸收将诊断凝胶卡中血液-抗体样本的靶向照明转换为热量。我们的激光孵育器在不到 30 秒的时间内将 75µL 血液-抗体样本加热到 37°C。我们表明,在近红外激光孵育下,红细胞充当光热剂,引发快速抗原-抗体结合。我们没有发现细胞或抗体在长达 15 分钟的激光孵育中有明显损伤。我们证明,激光孵育的免疫血液学检测比目前的最佳实践更快、更灵敏——仅 40 秒的激光孵育就能得到明显的阳性结果。