Department of Electrical Engineering, National University of Kaohsiung, Kaohsiung 81148, Taiwan.
Department of Internal Medicine, Division of Cardiology, Zuoying Armed Forces General Hospital, Kaohsiung 81342, Taiwan.
Biosensors (Basel). 2024 Nov 4;14(11):533. doi: 10.3390/bios14110533.
B-type natriuretic peptides (BNP) are produced and secreted by the myocardium to reduce blood pressure and cardiac load. They cause vasodilation, natriuresis, growth suppression, and inhibition of the sympathetic nervous system and the renin-angiotensin-aldosterone system. The measurement of plasma BNP levels provides clinically useful information concerning the diagnosis and management of left ventricular dysfunction and heart failure, complementing other diagnostic testing procedures. In this work, three epitopes from the N-terminal (BNPnt), C-terminal (BNPct), and the cystine-bridged cyclic peptides (BNPr) of B-type natriuretic peptides were synthesized as templates for molecular imprinting. These peptides were doped into aniline (AN) and m-aminobenzenesulfonic acid (MSAN) for electropolymerization, thus forming epitope-imprinted poly(AN--MSAN) conductive films (EIPs). The monomer ratio was optimized using the electrochemical signals during polymerization. The optimized films were then characterized using a scanning electron microscope (SEM), atomic force microscope (AFM), and AC impedance. The electrochemical response of the films to the target peptides and to BNP was then measured. The sensing range of the EIPs-coated electrodes was from 0.001 to 1000 pg/mL for BNP. Finally, the BNP concentration in diluted serum samples was measured with the BNPrIP-coated electrode, giving 3.15 ± 0.07 pg/mL. By spiking the sample with known BNP concentrations, the accuracy was determined to be better than ±5%.
B 型利钠肽(BNP)由心肌产生和分泌,以降低血压和心脏负荷。它导致血管扩张、利钠、生长抑制以及抑制交感神经系统和肾素-血管紧张素-醛固酮系统。血浆 BNP 水平的测量为左心室功能障碍和心力衰竭的诊断和管理提供了临床有用的信息,补充了其他诊断测试程序。在这项工作中,B 型利钠肽的 N 端(BNPnt)、C 端(BNPct)和半胱氨酸桥环肽(BNPr)的三个表位被合成作为分子印迹的模板。这些肽被掺杂到苯胺(AN)和间氨基苯磺酸(MSAN)中进行电聚合,从而形成表位印迹的聚(AN--MSAN)导电膜(EIPs)。使用聚合过程中的电化学信号优化了单体比。然后使用扫描电子显微镜(SEM)、原子力显微镜(AFM)和交流阻抗对优化后的薄膜进行表征。然后测量了薄膜对目标肽和 BNP 的电化学响应。EIPs 涂层电极对 BNP 的检测范围为 0.001 至 1000 pg/mL。最后,使用 BNPrIP 涂层电极测量了稀释血清样品中的 BNP 浓度,得到 3.15±0.07 pg/mL。通过向样品中加入已知浓度的 BNP 进行加标,确定准确度优于±5%。