Lin Chung-Yin, Tsai Sheng-Hung, Tai Dar-Fu
Medical Imaging Research Center, Institute for Radiological Research, Chang Gung University/Chang Gung Memorial Hospital, Taoyuan, Taiwan.
Department of Nephrology, Division of Clinical Toxicology, Chang Gung Memorial Hospital, Lin-Kou Medical Center, Taoyuan, Taiwan.
J Pept Sci. 2019 Mar;25(3):e3150. doi: 10.1002/psc.3150. Epub 2019 Feb 5.
The cystine-bridged cyclic peptide hormones (CBCPHs) represent signature structural feature as well as unique biological activity. In this study, three CBCPHs have been identified and characterized, namely, oxytocin, atrial natriuretic peptides (ANPs), and brain natriuretic peptides (BNPs). Because research has shown that ANPs and BNPs are powerful diagnostic biomarkers for heart disease, a highly laudable endeavor would be to develop a novel sensor for detecting ANP or BNP levels. Therefore, an amphiphilic monomer Acr-His-NHNH-Fmoc was synthesized to form molecularly imprinted polymers (MIPs) for targeted CBCPH detection. First, oxytocin, a cardiovascular hormone and a CBCPH, was used as a template to fabricate MIPs on quartz crystal microbalance (QCM) chips. On the other hand, fabricated selected ANP segment or BNP segment as an epitope is able to construct epitope-mediated MIPs (EMIPs) for ANP or BNP. The developed oxytocin or ANP sensor reached a detection limitation of 0.1nM with the dissociation constants being 30pM for oxytocin and 20pM for ANP. Moreover, BNP sensor achieved a detection limitation of 2.89pM with an even lower K value as 2pM. Compared with the performance of EMIPs, the imprinted films showed high affinity and selectivity in special binding to CBCPHs. The developed MIPs-QCM biosensors thus provide an improved sensing platform using an amphiphilic monomer and may be useful for applications toward cyclotides, cystine knot motifs, or insulin-like peptides.
胱氨酸桥联环肽激素(CBCPHs)具有标志性的结构特征以及独特的生物活性。在本研究中,已鉴定并表征了三种CBCPHs,即催产素、心房利钠肽(ANPs)和脑利钠肽(BNPs)。由于研究表明ANPs和BNPs是心脏病的有力诊断生物标志物,因此开发一种用于检测ANP或BNP水平的新型传感器将是一项非常值得称赞的努力。因此,合成了一种两亲性单体Acr-His-NHNH-Fmoc,以形成用于靶向CBCPH检测的分子印迹聚合物(MIPs)。首先,将心血管激素催产素(一种CBCPH)用作模板,在石英晶体微天平(QCM)芯片上制备MIPs。另一方面,将制备的选定ANP片段或BNP片段作为表位能够构建用于ANP或BNP的表位介导的MIPs(EMIPs)。所开发的催产素或ANP传感器的检测限达到0.1nM,催产素的解离常数为30pM,ANP的解离常数为20pM。此外,BNP传感器的检测限达到2.89pM,K值甚至更低,为2pM。与EMIPs的性能相比,印迹膜在与CBCPHs的特异性结合中表现出高亲和力和选择性。因此,所开发的MIPs-QCM生物传感器使用两亲性单体提供了一个改进的传感平台,可能对环肽、胱氨酸结基序或胰岛素样肽的应用有用。