Department of Prosthodontics, School of Stomatology, Fourth Military Medical University, Xi'an, People's Republic of China.
Int J Nanomedicine. 2012;7:1091-100. doi: 10.2147/IJN.S28694. Epub 2012 Feb 23.
Infection and epithelial downgrowth are major problems associated with maxillofacial percutaneous implants. These complications are mainly due to the improper closure of the implant-skin interface. Therefore, designing a percutaneous implant that better promotes the formation of a stable soft tissue biologic seal around percutaneous sites is highly desirable. Additionally, the fibroblast has been proven to play an important role in the formation of biologic seals. In this study, titania nanotubes were filled with 11.2 kDa C-terminal CCN2 (connective tissue growth factor) fragment, which could exert full CCN2 activity to increase the biological functionality of fibroblasts. This drug delivery system was fabricated on a titanium implant surface. CCN2 was loaded into anodized titania nanotubes using a simplified lyophilization method and the loading efficiency was approximately 80%. Then, the release kinetics of CCN2 from these nanotubes was investigated. Furthermore, the influence of CCN2-loaded titania nanotubes on fibroblast functionality was examined. The results revealed increased fibroblast adhesion at 0.25, 0.5, 1, 2, 4, and 24 hours, increased fibroblast viability over the course of 5 days, as well as enhanced actin cytoskeleton organization on CCN2-loaded titania nanotubes surfaces compared to uncoated, unmodified counterparts. Therefore, the results from this in vitro study demonstrate that CCN2-loaded titania nanotubes have the ability to increase fibroblast functionality and should be further studied as a method of promoting the formation of a stable soft tissue biologic seal around percutaneous sites.
感染和上皮下生长是与颌面经皮植入物相关的主要问题。这些并发症主要是由于植入物-皮肤界面的不当闭合引起的。因此,设计一种更好地促进经皮部位周围形成稳定的软组织生物密封的经皮植入物是非常需要的。此外,已经证明成纤维细胞在生物密封的形成中起着重要作用。在这项研究中,将纳米管填充了 11.2 kDa C 末端 CCN2(结缔组织生长因子)片段,其可以发挥 CCN2 的全部活性,从而增加成纤维细胞的生物学功能。该药物输送系统被构建在钛植入物表面上。通过简化的冻干法将 CCN2 加载到氧化钛纳米管中,并且负载效率约为 80%。然后,研究了 CCN2 从这些纳米管中的释放动力学。此外,还研究了负载 CCN2 的氧化钛纳米管对成纤维细胞功能的影响。结果表明,与未涂覆、未改性的对照组相比,在 0.25、0.5、1、2、4 和 24 小时时,成纤维细胞的粘附增加,在 5 天的过程中成纤维细胞的活力增加,并且细胞骨架组织得到增强。因此,这项体外研究的结果表明,负载 CCN2 的氧化钛纳米管具有增强成纤维细胞功能的能力,应进一步研究作为促进经皮部位周围形成稳定的软组织生物密封的方法。