一种新的细胞穿透肽-血管内皮生长因子小干扰核糖核酸复合物介导人脐静脉内皮细胞和离体小鼠主动脉环模型血管生成的抑制。

IF 8.1 Q1 ENGINEERING, BIOMEDICAL
Biomaterials research Pub Date : 2025-01-07 eCollection Date: 2025-01-01 DOI:10.34133/bmr.0120
Minseo Kim, Sangkyu Park, Soyi Kim, Jeongmin Seo, Sangho Roh
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引用次数: 0

摘要

血管生成是由血管内皮生长因子(VEGF)介导的,VEGF是一种在伤口愈合、炎症性疾病、心血管过程、眼部疾病和肿瘤生长中起关键作用的蛋白质。事实上,调节血管生成代表了一种治疗癌症的潜在方法,因此,针对VEGF及其受体的治疗方法已经被广泛研究,作为更广泛的治疗干预措施的一部分。同样,RNA干扰是治疗疾病的有力工具,但其作为疾病治疗的应用一直受到限制,部分原因是缺乏有效的小干扰RNA (siRNA)递送系统。本研究的目的是表征两亲性细胞穿透肽Ara27及其作为VEGF siRNA (siVEGF)偶联物的有效递送载体的潜力。在我们的研究中,我们证明了暴露于含有Ara27-siVEGF复合物的人脐静脉内皮细胞(HUVECs)不会导致细胞毒性,并且可以导致细胞中VEGF mRNA和蛋白水平的下调。此外,用Ara27-siVEGF复合物治疗可减弱HUVECs中VEGFR2、Akt和ERK的磷酸化,抑制其伤口愈合和管形成的能力,这两种能力都反映了血管生成的特征。此外,我们进行了一项离体研究,发现用Ara27-siVEGF复合物治疗可抑制主动脉环发芽。此外,该复合物对THP-1和RAW264.7细胞不产生免疫毒性。综上所述,我们的研究表明,Ara27-siVEGF偶联物可以有效地抑制HUVECs中的VEGF,从而抑制血管生成,而没有明显的细胞毒性和免疫毒性作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Cell-Penetrating Peptide-Vascular Endothelial Growth Factor Small Interfering Ribonucleic Acid Complex That Mediates the Inhibition of Angiogenesis by Human Umbilical Vein Endothelial Cells and in an Ex Vivo Mouse Aorta Ring Model.

Angiogenesis is mediated by vascular endothelial growth factor (VEGF), a protein that plays a key role in wound healing, inflammatory diseases, cardiovascular processes, ocular diseases, and tumor growth. Indeed, modulation of angiogenesis represents a potential approach to treating cancer and, as such, therapeutic approaches targeting VEGF and its receptors have been widely investigated as part of the broader search for curative interventions. Equally, RNA interference is a powerful tool for treating diseases, but its application as a disease treatment has been limited in part because of a lack of efficient small interfering RNA (siRNA) delivery systems. The purpose of this study was to characterize an amphipathic cell-penetrating peptide, Ara27, and its potential as an effective delivery vehicle as a conjugate with VEGF siRNA (siVEGF). In our study, we demonstrate that exposure of human umbilical vein endothelial cells (HUVECs) with Ara27-siVEGF complexes did not lead to cytotoxicity and can lead to down-regulation of cellular levels of both VEGF mRNA and protein. Moreover, treatment with the Ara27-siVEGF complex attenuates the phosphorylation of VEGFR2, Akt, and ERK in HUVECs and inhibits their capacity for wound healing and tube formation, both of which characteristics reflective of angiogenesis. In addition, we performed an ex vivo study to find that treatment with the Ara27-siVEGF complex inhibits aorta ring sprouting. Furthermore, the complex did not induce immunotoxicity in THP-1 and RAW264.7 cells. Taken together, our studies demonstrate that an Ara27-siVEGF conjugate is efficient for knockdown of VEGF in HUVECs to inhibit angiogenesis, without marked cytotoxic and immunotoxic effects.

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