Zentralinstitut für Medizintechnik (IMETUM), TU München , München 85748, Germany.
Institute of Experimental Oncology and Therapy Research, TU München , München 81675, Germany.
ACS Nano. 2016 Jan 26;10(1):369-76. doi: 10.1021/acsnano.5b04996. Epub 2016 Jan 6.
Cardiovascular disease is often caused by endothelial cell (EC) dysfunction and atherosclerotic plaque formation at predilection sites. Also surgical procedures of plaque removal cause irreversible damage to the EC layer, inducing impairment of vascular function and restenosis. In the current study we have examined a potentially curative approach by radially symmetric re-endothelialization of vessels after their mechanical denudation. For this purpose a combination of nanotechnology with gene and cell therapy was applied to site-specifically re-endothelialize and restore vascular function. We have used complexes of lentiviral vectors and magnetic nanoparticles (MNPs) to overexpress the vasoprotective gene endothelial nitric oxide synthase (eNOS) in ECs. The MNP-loaded and eNOS-overexpressing cells were magnetic, and by magnetic fields they could be positioned at the vascular wall in a radially symmetric fashion even under flow conditions. We demonstrate that the treated vessels displayed enhanced eNOS expression and activity. Moreover, isometric force measurements revealed that EC replacement with eNOS-overexpressing cells restored endothelial function after vascular injury in eNOS(-/-) mice ex and in vivo. Thus, the combination of MNP-based gene and cell therapy with custom-made magnetic fields enables circumferential re-endothelialization of vessels and improvement of vascular function.
心血管疾病通常是由内皮细胞 (EC) 功能障碍和动脉粥样硬化斑块在易患部位形成引起的。此外,斑块切除的手术会对 EC 层造成不可逆转的损伤,导致血管功能受损和再狭窄。在目前的研究中,我们研究了一种潜在的治疗方法,即在血管机械剥脱后进行径向对称的再内皮化。为此,我们将纳米技术与基因和细胞治疗相结合,以实现血管的特异性再内皮化和恢复血管功能。我们使用慢病毒载体和磁性纳米颗粒 (MNP) 的复合物在 EC 中过表达血管保护基因内皮型一氧化氮合酶 (eNOS)。负载 MNP 和过表达 eNOS 的细胞具有磁性,并且通过磁场,即使在流动条件下,它们也可以以径向对称的方式定位在血管壁上。我们证明,处理过的血管显示出增强的 eNOS 表达和活性。此外,等长力测量显示,用过表达 eNOS 的细胞替代 EC 可恢复 eNOS(-/-) 小鼠体内和体外血管损伤后的内皮功能。因此,基于 MNP 的基因和细胞治疗与定制磁场的结合能够实现血管的圆周再内皮化和血管功能的改善。