School of Chemistry and Chemical Engineering, Qinghai University for Nationalities, Xining, Qinghai, 810007, P. R. China.
Key Laboratory of National Ethnic Affairs Commission of Resource Chemistry and Ecological Environment Protection on Qinghai-Tibet Plateau, Xining, Qinghai, 810007, P. R. China.
J Mater Chem B. 2024 Jul 31;12(30):7357-7366. doi: 10.1039/d4tb00322e.
In this study, a targeted graphene quantum dot-cationic polymer composite gene vector with endothelial cell-targeting CAG peptide was successfully designed and prepared. This vector could efficiently bind and deliver the therapeutic gene pZNF580 to endothelial cells (HUVECs). At a concentration of less than 40 μg mL, the results of the CCK-8 assay showed that the relative cell viability of each composite gene vector was greater than 80%, and the results of the flow cytometry assay showed that C-GQDs-PEI-PEG-CAG/pZNF580 (88.96%) and N-GQDs-PEI-PLGA-PEG-CAG/pZNF580 (87.70%) treated groups showed significantly higher cell viability than the positive control group Lip2000/pZNF580 (56.76%). The results of cell transfection and western blot experiments confirmed that the composite gene vector was able to deliver pZNF580 efficiently and enable the high expression of the ZNF580 protein in HUVECs. The results of the EdU assay, wound healing and Transwell experiments indicated that the composite gene vector/pZNF580 nanoparticles (NPs) could significantly promote the proliferation and migration. The results of the EdU method showed that the proliferative ability of C-GQDs-PEI-PLGA/pZNF580 (84.96 ± 1.99%) and N-GQDs-PEI-PLGA/pZNF580 (85.01 ± 1.31%) treatment groups for HUVECs was significantly higher than that of the positive control group Lip2000/pZNF580 (77.89 ± 2.18%). The results of the scratch assay showed that the cell migration rate of C-GQDs-PEI-PLGA-PEG-CAG/pZNF580 (93.08 ± 1.97%) and N-GQDs-PEI-PLGA-PEG-CAG/pZNF580 (91.99 ± 1.52%) groups was significantly higher than that of the positive control group Lip2000/pZNF580 (85.03 ± 2.21%). In addition, the results of the angiogenesis assay showed that the C-GQDs-PEI-PLGA-PEG-CAG/pZNF580 and N-GQDs-PEI-PLGA-PEG-CAG/pZNF580 groups had significantly higher angiogenesis-promoting ability than the positive control group, Lip2000/pZNF580.The present study provides a highly efficient and low-toxic method to promote endothelial cell migration in the field of regenerative medicine and a low-toxicity strategy to promote endothelial layer formation, which provides new possibilities for future vascular regeneration therapy.
在这项研究中,成功设计并制备了一种靶向具有内皮细胞靶向 CAG 肽的石墨烯量子点-阳离子聚合物复合基因载体。该载体可以有效地结合并递送达内皮细胞(HUVEC)的治疗基因 pZNF580。在浓度低于 40μg mL 的情况下,CCK-8 检测结果表明,每个复合基因载体的相对细胞活力均大于 80%,而流式细胞术检测结果表明,C-GQDs-PEI-PEG-CAG/pZNF580(88.96%)和 N-GQDs-PEI-PLGA-PEG-CAG/pZNF580(87.70%)处理组的细胞活力明显高于阳性对照 Lip2000/pZNF580(56.76%)。细胞转染和 Western blot 实验结果证实,复合基因载体能够有效地递送 pZNF580,并使 HUVEC 中 ZNF580 蛋白的高表达。EdU 测定、伤口愈合和 Transwell 实验的结果表明,复合基因载体/pZNF580 纳米颗粒(NPs)能够显著促进增殖和迁移。EdU 法的结果表明,C-GQDs-PEI-PLGA/pZNF580(84.96±1.99%)和 N-GQDs-PEI-PLGA/pZNF580(85.01±1.31%)处理组对 HUVEC 的增殖能力明显高于阳性对照 Lip2000/pZNF580(77.89±2.18%)。划痕实验的结果表明,C-GQDs-PEI-PLGA-PEG-CAG/pZNF580(93.08±1.97%)和 N-GQDs-PEI-PLGA-PEG-CAG/pZNF580(91.99±1.52%)组的细胞迁移率明显高于阳性对照 Lip2000/pZNF580(85.03±2.21%)。此外,血管生成测定的结果表明,C-GQDs-PEI-PLGA-PEG-CAG/pZNF580 和 N-GQDs-PEI-PLGA-PEG-CAG/pZNF580 组的促血管生成能力明显高于阳性对照 Lip2000/pZNF580。本研究为促进再生医学领域内皮细胞迁移提供了一种高效低毒的方法,为促进内皮层形成提供了一种低毒性策略,为未来的血管再生治疗提供了新的可能性。