Department of Interventional Radiology, The University of Texas MD Anderson Cancer Center, Houston, TX, 77030, USA.
College of Medicine, State University of New York Upstate Medical University, Syracuse, NY, 13210, USA.
Sci Rep. 2017 May 19;7(1):2147. doi: 10.1038/s41598-017-02508-3.
Failure to remove a retrievable inferior vena cava (IVC) filter can cause severe complications with high treatment costs. Polydioxanone (PPDO) has been shown to be a good candidate material for resorbable IVC filters. However, PPDO is radioluscent under conventional imaging modalities. Thus, the positioning and integrity of these PPDO filters cannot be monitored by computed tomography (CT) or x-ray. Here we report the development of radiopaque PPDO IVC filters based on gold nanoparticles (AuNPs). Commercially available PPDO sutures were infused with AuNPs. Scanning electron microscopy analysis confirmed the presence of AuNP on the surface of PPDO. Micro-CT and x-ray images of the AuNP-infused PPDO sutures showed significant signal enhancement compared to untreated PPDO sutures. Elemental analysis showed that gold loading exceeded 2000 ppm. Tensile strength and in vitro cytotoxicity showed no significant difference between AuNP-infused and untreated PPDO. In a 10-week stability study, neither the gold content nor the radiopacity of the infused PPDO sutures significantly changed in the first 6 weeks. The increased attenuation of AuNP-infused PPDO sutures indicates their major advantage as a radiopaque resorbable filter material, as the radiopacity allows monitoring of the position and integrity of the filter, thereby increasing its safety and efficacy.
未能取出可回收下腔静脉(IVC)滤器可能导致严重并发症和高昂的治疗费用。聚对二氧环己酮(PPDO)已被证明是可吸收 IVC 滤器的良好候选材料。然而,在常规成像方式下,PPDO 是不透射线的。因此,这些 PPDO 滤器的位置和完整性不能通过计算机断层扫描(CT)或 X 射线监测。在这里,我们报告了基于金纳米粒子(AuNP)的不透射线 PPDO IVC 滤器的开发。市售的 PPDO 缝线中注入了 AuNP。扫描电子显微镜分析证实了 PPDO 表面存在 AuNP。与未处理的 PPDO 缝线相比,注入 AuNP 的 PPDO 缝线的微计算机断层扫描和 X 射线图像显示出明显的信号增强。元素分析表明,金负载超过 2000ppm。拉伸强度和体外细胞毒性测试表明,注入 AuNP 的 PPDO 与未处理的 PPDO 之间没有显著差异。在为期 10 周的稳定性研究中,在最初的 6 周内,注入的 PPDO 缝线中的金含量和射线不透性均没有明显变化。注入 AuNP 的 PPDO 缝线衰减的增加表明其作为一种射线可吸收可吸收滤器材料的主要优势,因为射线不透性允许监测滤器的位置和完整性,从而提高其安全性和有效性。