Cancer Hospital of Dalian University of Technology, Shenyang 110042, China.
Faculty of Medicine, Liaoning Key Lab of Integrated Circuit and Biomedical Electronic System, Dalian University of Technology, Dalian 116024, China.
Biosensors (Basel). 2024 Oct 9;14(10):489. doi: 10.3390/bios14100489.
For rapid and convenient detection of living endothelial cells (ECs) specifically without immunostaining, we developed a biosensor based on turn-on fluorescent protein, named LV-EcpG. It includes a high-affinity peptide E12P obtained through phage display technology for specifically recognizing ECs and a turn-on EGFP fused with two linker peptides. The "on-off" switching mechanism of this genetically encoded fluorescent protein-based biosensor (FPB) ensured that fluorescence signals were activated only when binding with ECs, thus enabling these FPB characters for direct, visual, and non-invasive detection of ECs. Its specificity and multicolor imaging capability established LV-EcpG as a powerful tool for live EC research, with significant potential for diagnosing and treating cardiovascular diseases and tumor angiogenesis.
为了快速便捷地特异性检测活内皮细胞(EC)而无需免疫染色,我们开发了一种基于荧光蛋白开启的生物传感器,命名为 LV-EcpG。它包含一个通过噬菌体展示技术获得的高亲和力肽 E12P,用于特异性识别 EC,以及一个与两个连接肽融合的开启型 EGFP。这种基于基因编码荧光蛋白的生物传感器(FPB)的“开-关”转换机制确保只有与 EC 结合时才会激活荧光信号,从而使这些 FPB 特性能够直接、直观、非侵入性地检测 EC。其特异性和多色成像能力使 LV-EcpG 成为活 EC 研究的有力工具,对于诊断和治疗心血管疾病和肿瘤血管生成具有重要意义。