Nanoelectronics Laboratory, University of Cincinnati, Cincinnati, Ohio 45221-0030, USA.
ACS Appl Mater Interfaces. 2013 Aug 28;5(16):8241-5. doi: 10.1021/am402376c. Epub 2013 Aug 7.
A novel dual drug delivery system is presented using triaxial structured nanofibers, which provides different release profiles for model drugs separately loaded in either the sheath or the core of the fiber. Homogenous, coaxial and triaxial fibers containing a combination of materials (PCL, polycaprolactone; PVP, polyvinylpyrrolidone) were fabricated. The drug release profiles were simulated using two color dyes (KAB, keyacid blue; KAU, keyacid uranine), whose release in physiological solution was measured using optical absorption as a function of time. To reach the level of 80% release of encapsulated dye from core, triaxial fibers with a PCL intermediate layer exhibited a 24× slower release than that from coaxial fibers. At the same time, the hygroscopic sheath layer of the triaxial fibers provided an initial burst release ( 80% within an hour) of a second dye as high as that from conventional single and coaxial fibers. The triaxial fiber membrane provides both a quick release from the outer sheath layer for short-term treatment and a sustained release from the fiber core for long-term treatment. The intermediate layer between inner core and outer sheath acts as a barrier to prevent leaching from the core, which can be especially important when the membranes are used in wet application. The formation of tri/multiaxially electrospun nanofibrous membranes will be greatly beneficial for biomedical applications by enabling different release profiles of two different drugs from a membrane.
一种新型的双药物传递系统采用三轴结构纳米纤维,为分别装载在纤维鞘或芯中的模型药物提供不同的释放曲线。制备了含有组合材料(PCL,聚己内酯;PVP,聚乙烯吡咯烷酮)的均相、同轴和三轴纤维。使用两种颜色染料(KAB,关键酸蓝;KAU,关键酸尿嘧啶)模拟药物释放曲线,其在生理溶液中的释放通过随时间变化的光学吸收来测量。为了达到从芯部封装染料 80%释放的水平,具有 PCL 中间层的三轴纤维的释放速度比同轴纤维慢约 24 倍。同时,三轴纤维的吸湿鞘层提供了第二染料的初始突释(在 1 小时内约 80%),与传统的单轴和同轴纤维一样高。三轴纤维膜既能快速从外层鞘层释放,用于短期治疗,又能从纤维芯层持续释放,用于长期治疗。内芯和外鞘之间的中间层起到阻止芯部浸出的屏障作用,当膜用于湿应用时,这一点尤其重要。通过使膜具有两种不同药物的不同释放曲线,形成三/多轴电纺纳米纤维膜将极大地有益于生物医学应用。