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Performance of TMC-g-PEG-VAPG/miRNA-145 complexes in electrospun membranes for target-regulating vascular SMCs

机译:用于靶调节血管SMC的Electrom Oper膜中TMC-G-PEG-VAPG / miRNA-145复合物的性能

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摘要

Restenosis is still one of the main challenges in small-diameter vascular regeneration, and effective modulation of vascular smooth muscle cells (SMCs) is essential to cope with the related issues. As one of microRNAs (miRNAs) in vascular systems, miRNA-145 can regulate SMCs in the normal contractile phenotype, and inhibit the excessive proliferation and intimal hyperplasia. Herein, VAPG peptide-modified trimethyl chitosan-g-poly (ethylene glycol) (TMC-g-PEG-VAPG) was developed specially for target-delivery of miRNA-145 to SMCs to fulfill the proper function. The TMC-g-PEG-VAPG/miRNA-145 complexes exhibited low cytotoxicity, and TMC-g-PEG-VAPG with relatively higher molecular weight of chitosan (50 kDa) could significantly enhance cellular uptake in SMCs. Moreover, loading with TMC-g-PEG-VAPG/miRNA-145 complexes, the electrospun membranes of poly(ethyleneglycol)-b-poly(L-lactide-co-epsilon-caprolactone) were capable of controlling SMCs at gene and protein levels on day 3 by targeting Kruppel-like factor 4 to increase the expression of myocardin and alpha-smooth muscle actin. Furthermore, miRNA-145 released from the electrospun membranes also showed in vitro bioactivity of modulating the contractile phenotype of SMCs in the prolonged duration, at least 56 days. The functional electrospun membranes containing TMC-g-PEG-VAPG/miRNA-145 complexes may have a great potential in the application of small-diameter blood vessel regeneration.
机译:再狭窄仍然是小直径血管再生中的主要挑战之一,有效调制血管平滑肌细胞(SMC)对于应对相关问题至关重要。作为血管系统中的MicroRNAS(miRNA)之一,MiRNA-145可以调节正常收缩表型的SMC,并抑制过量的增殖和内膜增生。这里,VAPG肽改性的三甲基壳聚糖-G-聚(乙二醇)(乙二醇)(TMC-G-PEG-VAPG)是专门用于靶向递送miRNA-145至SMC以满足适当的功能。 TMC-G-PEG-VAPG / miRNA-145络合物表现出低细胞毒性,具有相对较高的壳聚糖(50kDa)的TMC-G-PEG-VAPG可以显着增强SMC中的细胞摄取。此外,用TMC-G-PEG-VAPG / miRNA-145络合物加载,聚(乙二醇)-B-聚(L-丙交酯 - ε-己内酯)的电纺膜能够控制基因和蛋白质水平的SMC在第3天通过靶向Kruppel样因子4来增加心肌蛋白和α-平滑肌肌动蛋白的表达。此外,从电纺器膜中释放的miRNA-145还显示出在长期持续时间内调节SMC的收缩表型的体外生物活性,至少56天。含有TMC-G-PEG-VAPG / miRNA-145配合物的功能性电纺器膜可以具有巨大的潜力在施加小直径血管再生。

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