Institute for Chemical Biology & Biosensing, College of Life Sciences, Qingdao University, 308 Ningxia Road, Qingdao, 266071, China.
Institute for Chemical Biology & Biosensing, College of Life Sciences, Qingdao University, 308 Ningxia Road, Qingdao, 266071, China.
Anal Chim Acta. 2022 Sep 8;1225:340250. doi: 10.1016/j.aca.2022.340250. Epub 2022 Aug 12.
As a vascular growth regulator, vascular endothelial growth factor (VEGF) exerts significant biological roles through specific binding to its receptors on the vascular endothelial cells. VEGF165 is generally referenced as a potential therapeutic target of many malignant tumors. In this study, a negative pre-screening strategy with structurally analogous members of VEGF121, VEGFC and VEGFD was first proposed for VEGF165 biopanning, aiming at significantly improving the specificity of the selected phage monoclones. Indirect ELISA experiment showed that the phage monoclone expressing peptide SPFLLRM demonstrates excellent affinity and specificity. Then a VEGF165 electrochemical impedimetric spectroscopy (EIS) immunosensor was constructed by above specific phage modified electrode. After optimizing the experimental conditions, the as-explored EIS immunosensor had a linear range of 0.5-1000 pg/mL with the limit of detection of 0.15 pg/mL VEGF165. In addition, the developed phage-based EIS immunosensor was applied to satisfactorily detect VEGF165 in human serum samples. Considering its ultra-sensitivity, good selectivity, batch reproducibility and stability, the screened selective phage-based EIS sensor is envisioned potential application in diagnosis and therapy.
作为一种血管生长调节剂,血管内皮生长因子(VEGF)通过与血管内皮细胞上的特定受体结合,发挥重要的生物学作用。VEGF165 通常被认为是许多恶性肿瘤的潜在治疗靶点。在这项研究中,我们首先提出了一种基于结构类似物的阴性预筛选策略,利用 VEGF121、VEGFC 和 VEGFD 来对 VEGF165 进行生物淘选,旨在显著提高所选噬菌体单克隆的特异性。间接 ELISA 实验表明,表达肽 SPFLLRM 的噬菌体单克隆具有优异的亲和力和特异性。然后,我们通过上述特异性噬菌体修饰电极构建了 VEGF165 电化学阻抗谱(EIS)免疫传感器。在优化实验条件后,所探究的 EIS 免疫传感器在 0.5-1000 pg/mL 的线性范围内具有 0.15 pg/mL VEGF165 的检测限。此外,该开发的基于噬菌体的 EIS 免疫传感器成功地用于检测人血清样品中的 VEGF165。考虑到其超高灵敏度、良好的选择性、批间重现性和稳定性,所筛选的基于噬菌体的 EIS 传感器有望在诊断和治疗中得到应用。