The First Affiliated Hospital of Nanchang University, Nanchang 330006, China.
Nanjing Medical University Affiliated Wuxi People's Hospital, Wuxi 214043, China.
Biosensors (Basel). 2022 Oct 24;12(11):916. doi: 10.3390/bios12110916.
As an emerging diabetes diagnostic indicator and a dynamic change index, HbA1c can not only reflect the average blood glucose level over a period of time but can also well predict the incidence of related microvascular complications. It is important to develop a detection method that can dynamically characterize HbA1c. Silicon nanowire (SiNW) devices were mass-produced using top-down sputtering technology, and a microdialyzer was installed in a SiNW field effect tube biosensor detection system. Finally, the detection system was used to detect HbA1c levels quantitatively and dynamically in experimental rabbits. Various measurements showed that mass-produced SiNW devices have ideal dimensions, stable structures, and good performance. A series of microscopy results showed that the SiNW surface can be functionalized for intermolecular interactions. The addition of a dialysis device can effectively overcome Debye shielding, making the blood test similar to the pure standard test. Finally, the dynamic detection of HbA1c within 40 h was realized. SiNW biosensors are capable of the dynamic detection of biomolecules, and dynamic observation of the interaction between blood glucose and HbA1c provides new ideas for the diagnosis and treatment of patients with diabetes. Therefore, the SiNW biosensor can reflect the dynamic changes in HbA1c in a shorter time, which has a certain potential value in the clinical treatment of diabetes.
作为一种新兴的糖尿病诊断指标和动态变化指标,HbA1c 不仅能反映一段时间内的平均血糖水平,还能很好地预测相关微血管并发症的发生。因此,开发一种能够动态描述 HbA1c 的检测方法非常重要。采用自上而下的溅射技术批量生产硅纳米线(SiNW)器件,并在 SiNW 场效应管生物传感器检测系统中安装微透析器。最后,使用检测系统对实验兔的 HbA1c 水平进行定量和动态检测。各种测量结果表明,批量生产的 SiNW 器件具有理想的尺寸、稳定的结构和良好的性能。一系列显微镜结果表明,SiNW 表面可以进行功能化以实现分子间相互作用。添加透析装置可以有效地克服德拜屏蔽效应,使血液检测类似于纯标准检测。最后,实现了 40 小时内 HbA1c 的动态检测。SiNW 生物传感器能够对生物分子进行动态检测,对血糖与 HbA1c 之间相互作用的动态观察为糖尿病患者的诊断和治疗提供了新的思路。因此,SiNW 生物传感器可以在更短的时间内反映 HbA1c 的动态变化,在糖尿病的临床治疗中具有一定的潜在价值。