Tsai Lin-Wei, Lin Yu-Chung, Perevedentseva Elena, Lugovtsov Andrei, Priezzhev Alexander, Cheng Chia-Liang
Department of Physics, National Dong Hwa University, Hualien 97401, Taiwan.
International Laser Center, M.V. Lomonosov Moscow State University, Moscow 119991, Russia.
Int J Mol Sci. 2016 Jul 12;17(7):1111. doi: 10.3390/ijms17071111.
Nanodiamonds (ND) have emerged to be a widely-discussed nanomaterial for their applications in biological studies and for medical diagnostics and treatment. The potentials have been successfully demonstrated in cellular and tissue models in vitro. For medical applications, further in vivo studies on various applications become important. One of the most challenging possibilities of ND biomedical application is controllable drug delivery and tracing. That usually assumes ND interaction with the blood system. In this work, we study ND interaction with rat blood and analyze how the ND surface modification and coating can optimize the ND interaction with the blood. It was found that adsorption of a low concentration of ND does not affect the oxygenation state of red blood cells (RBC). The obtained in vivo results are compared to the results of in vitro studies of nanodiamond interaction with rat and human blood and blood components, such as red blood cells and blood plasma. An in vivo animal model shows ND injected in blood attach to the RBC membrane and circulate with blood for more than 30 min; and ND do not stimulate an immune response by measurement of proinflammatory cytokine TNF-α with ND injected into mice via the caudal vein. The results further confirm nanodiamonds' safety in organisms, as well as the possibility of their application without complicating the blood's physiological conditions.
纳米金刚石(ND)已成为一种在生物学研究、医学诊断和治疗应用中被广泛讨论的纳米材料。其潜力已在体外细胞和组织模型中得到成功证明。对于医学应用而言,进一步开展关于各种应用的体内研究变得至关重要。ND生物医学应用中最具挑战性的可能性之一是可控药物递送和追踪。这通常假定ND与血液系统相互作用。在这项工作中,我们研究了ND与大鼠血液的相互作用,并分析了ND的表面修饰和涂层如何能够优化ND与血液的相互作用。研究发现,低浓度ND的吸附不会影响红细胞(RBC)的氧合状态。将获得的体内结果与纳米金刚石与大鼠和人类血液以及血液成分(如红细胞和血浆)的体外研究结果进行了比较。一个体内动物模型显示,注入血液中的ND附着在RBC膜上,并随血液循环超过30分钟;通过尾静脉向小鼠注射ND后,通过测量促炎细胞因子TNF-α发现ND不会刺激免疫反应。这些结果进一步证实了纳米金刚石在生物体中的安全性,以及它们在不使血液生理状况复杂化的情况下应用的可能性。