Division of Cardiology, The Children's Hospital of Philadelphia, Philadelphia, PA 19104-4318, USA.
FASEB J. 2013 Jun;27(6):2198-206. doi: 10.1096/fj.12-224659. Epub 2013 Feb 13.
Gene therapeutic strategies have shown promise in treating vascular disease. However, their translation into clinical use requires pharmaceutical carriers enabling effective, site-specific delivery as well as providing sustained transgene expression in blood vessels. While replication-deficient adenovirus (Ad) offers several important advantages as a vector for vascular gene therapy, its clinical applicability is limited by rapid inactivation, suboptimal transduction efficiency in vascular cells, and serious systemic adverse effects. We hypothesized that novel zinc oleate-based magnetic nanoparticles (MNPs) loaded with Ad would enable effective arterial cell transduction by shifting vector processing to an alternative pathway, protect Ad from inactivation by neutralizing factors, and allow site-specific gene transfer to arteries treated with stent angioplasty using a 2-source magnetic guidance strategy. Ad-loaded MNPs effectively transduced cultured endothelial and smooth muscle cells under magnetic conditions compared to controls and retained capacity for gene transfer after exposure to neutralizing antibodies and lithium iodide, a lytic agent causing disruption of free Ad. Localized arterial gene expression significantly stronger than in control animal groups was demonstrated after magnetically guided MNP delivery in a rat stenting model 2 and 9 d post-treatment, confirming feasibility of using Ad-loaded MNPs to achieve site-specific transduction in stented blood vessels. In conclusion, Ad-loaded MNPs formed by controlled precipitation of zinc oleate represent a novel delivery system, well-suited for efficient, magnetically targeted vascular gene transfer.
基因治疗策略在治疗血管疾病方面显示出了潜力。然而,将它们转化为临床应用需要药物载体,以实现有效的、特异性的递药,同时在血管中提供持续的转基因表达。虽然复制缺陷型腺病毒(Ad)作为血管基因治疗的载体具有几个重要的优势,但由于其快速失活、在血管细胞中的转导效率不理想以及严重的全身不良反应,其临床应用受到限制。我们假设,新型油酸锌基磁性纳米颗粒(MNPs)负载的 Ad 通过将载体处理转移到替代途径,可以实现有效的动脉细胞转导,通过中和因子来保护 Ad 免受失活,并允许使用支架血管成形术治疗的动脉进行特异性基因转移通过 2 源磁引导策略。与对照组相比,负载 Ad 的 MNPs 在磁条件下有效地转导培养的内皮和平滑肌细胞,并且在暴露于中和抗体和碘化锂(一种导致游离 Ad 破坏的溶酶剂)后仍保持基因转移的能力。在支架置入大鼠模型中,在治疗后 2 和 9 天,通过磁引导 MNPs 递送后,局部动脉基因表达明显强于对照组,证实了负载 Ad 的 MNPs 用于实现支架血管内特异性转导的可行性。总之,通过油酸锌的控制沉淀形成的负载 Ad 的 MNPs 代表了一种新型的递送系统,非常适合高效、磁性靶向的血管基因转移。