GE Global Research Center, One Research Circle, Niskayuna, New York 12309, USA.
ACS Nano. 2012 Aug 28;6(8):6650-8. doi: 10.1021/nn300928g. Epub 2012 Jul 25.
Tantalum oxide nanoparticles show great potential as the next generation of X-ray contrast media. Recently, we reported advances in tantalum oxide nanoparticles and identified improvements that were required for such particles to progress further. Namely, the viscosity of concentrated particles, the amount of retention in reticuloendothelial (RES) tissues, and the effect of large quantities of particles on the kidneys after administration were all identified as critical factors which needed further study, understanding, and development. Here, we report on a zwitterionic siloxane polymer nanoparticle coating that reduced the viscosity of concentrated solutions of particles by a factor of 5, decreased tissue retention of injected particles by a factor of 10, and, importantly, did not induce pathological responses in the kidneys.
氧化钽纳米颗粒作为下一代 X 射线对比介质具有巨大的潜力。最近,我们报告了氧化钽纳米颗粒的进展,并确定了此类颗粒进一步发展所需的改进。具体而言,浓缩颗粒的粘度、网状内皮(RES)组织中的保留量以及大量颗粒给药后对肾脏的影响均被认为是需要进一步研究、理解和开发的关键因素。在这里,我们报告了一种两性硅氧烷聚合物纳米颗粒涂层,该涂层可将颗粒浓缩溶液的粘度降低 5 倍,将注射颗粒在组织中的保留量降低 10 倍,并且重要的是,不会在肾脏中引起病理反应。