Kazura Evan, Lubbers Brad R, Dawson Elliott, Phillips John A, Baudenbacher Franz
Department of Biomedical Engineering, Vanderbilt University, 5824 Stevenson Center, Nashville, TN, 37235, USA.
BioVentures Inc., 1435 Kensington Square Court, Murfreesboro, TN, 37130, USA.
Biomed Microdevices. 2017 Sep;19(3):50. doi: 10.1007/s10544-017-0181-4.
Point of care (POC) diagnostics represents one of the fastest growing health care technology segments. Developments in microfabrication have led to the development of highly-sensitive nanocalorimeters ideal for directly measuring heat generated in POC biosensors. Here we present a novel nano-calorimeter-based biosensor design with differential sensing to eliminate common mode noise and capillary microfluidic channels for sample delivery to the thermoelectric sensor. The calorimeter has a resolution of 1.4 ± 0.2 nJ/(Hz) utilizing a 27 junction bismuth/titanium thermopile, with a total Seebeck coefficient of 2160 μV/K. Sample is wicked to the calorimeter through a capillary channel making it suitable for monitoring blood obtained through a finger prick (<1 μL sample required). We demonstrate device performance in a model assay using catalase, achieving a threshold for hydrogen peroxide quantification of 50 μM. The potential for our device as a POC blood test for metabolic diseases is shown through the quantification of phenylalanine (Phe) in serum, an unmet necessary service in the management of Phenylketonuria (PKU). Pegylated phenylalanine ammonia-lyase (PEG-PAL) was utilized to react with Phe, but reliable detection was limited to <5 mM due to low enzymatic activity. The POC biosensor concept can be multiplexed and adapted to a large number of metabolic diseases utilizing different immobilized enzymes.
即时检测(POC)诊断是增长最快的医疗技术领域之一。微纳制造技术的发展催生了高灵敏度纳米量热计,这是直接测量POC生物传感器中产生热量的理想工具。在此,我们展示了一种基于新型纳米量热计的生物传感器设计,该设计采用差分传感来消除共模噪声,并使用毛细管微流控通道将样品输送到热电传感器。该量热计采用27结铋/钛热电堆,分辨率为1.4±0.2 nJ/(Hz),总塞贝克系数为2160 μV/K。样品通过毛细管通道被吸到量热计中,使其适用于监测通过手指针刺采集的血液(所需样品量<1 μL)。我们在使用过氧化氢酶的模型检测中展示了该设备的性能,实现了50 μM过氧化氢定量的阈值。通过对血清中苯丙氨酸(Phe)的定量,展示了我们的设备作为代谢疾病POC血液检测的潜力,这是苯丙酮尿症(PKU)管理中一项未得到满足的必要服务。聚乙二醇化苯丙氨酸解氨酶(PEG-PAL)用于与Phe反应,但由于酶活性低,可靠检测仅限于<5 mM。POC生物传感器概念可以通过使用不同的固定化酶进行多路复用,并适用于大量代谢疾病。