表位
分子印迹聚合物
分子印迹
肽
化学
半胱氨酸
烯醇化酶
选择性
组氨酸
印记(心理学)
结合选择性
分子识别
组合化学
生物化学
分子
抗原
生物
有机化学
氨基酸
免疫组织化学
基因
酶
遗传学
催化作用
免疫学
作者
Raoul Tchinda,Anna Tutsch,Bianca Schmid,Roderich D. Süßmuth,Zeynep Altıntaş
标识
DOI:10.1016/j.bios.2018.09.010
摘要
This research aims to engineer molecularly imprinted polymer (MIP)-based synthetic receptors for the molecular recognition of neuron specific enolase (NSE) biomarker. The synthetic peptide derived from the NSE was synthesized along with its cysteine and histidine modified versions. The modified peptides were utilized as templates for molecular imprinting, which was achieved by combination of epitope- and electrochemical surface imprinting strategy. The subsequently generated imprinted cavities were used for the detection of the NSE derived peptide and NSE. The imprints created with cysteine (CME) and histidine modified epitopes (HME) could detect the peptide in a concentration range of 2-128 µM and 15.6 nM to 128 µM, respectively. The recognition of NSE was achieved by the same imprints in a linear range of 1-64 ng mL-1 (CME) and 0.25-64 ng mL-1 (HME), respectively. The target molecules bound to the control polymer very weakly, confirming the high selectivity of the MIP cavities. Selectivity studies resulted in imprinting factors of 8.8 and 11 for the CME and HME imprints, respectively. The affinity analyses provided dissociation constants of 2.3 × 10-10 M and 3 × 10-11 M for NSE recognition using the corresponding epitope imprints. Cross-reactivity studies with non-specific molecules proved high specificity of the artificial receptors for the targets.
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