首页> 外文期刊>Biomaterials >Yang, K.a , Gong, H.a , Shi, X.a , Wan, J.b , Zhang, Y.b , Liu, Z.a In vivo biodistribution and toxicology of functionalized nano-graphene oxide in mice after oral and intraperitoneal administration
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Yang, K.a , Gong, H.a , Shi, X.a , Wan, J.b , Zhang, Y.b , Liu, Z.a In vivo biodistribution and toxicology of functionalized nano-graphene oxide in mice after oral and intraperitoneal administration

机译:杨开,龚,华,施,盛,万,b,张,b,刘,a口服和腹膜内给药后功能化纳米氧化石墨烯在小鼠体内的生物分布和毒理学

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Graphene oxide (GO) and its functionalized derivatives have attracted great attention in biomedicine in recent years. A number of groups including ours have studied the in vivo behaviors of functionalized nano-graphene after intravenous injection or inhalation, and uncovered the surface coating & size dependent biodistribution and toxicology profiles for this type of nanomaterials. However, the fate of GO derivatives in animals after oral feeding and intraperitoneal (i.p.) injection, which are two other major drug administration routes, remain unclear. Therefore, in this work, we sought to systematically investigate in vivo biodistribution and potential toxicity of as-made GO and a number of polyethylene glycol (PEG) functionalized GO derivatives with different sizes and surface coatings, after oral and intraperitoneal administration at high doses. It is found that 125I labeled PEGylated GO derivatives show no obvious tissue uptake via oral administration, indicating the rather limited intestinal adsorption of those nanomaterials. In contrast, high accumulation of PEGyalted GO derivatives, but not as-made GO, in the reticuloendothelial (RES) system including liver and spleen is observed after i.p. injection. Further investigations based on histological examination of organ slices and hematological analysis discover that although GO and PEGylated GO derivatives would retain in the mouse body over a long period of time after i.p. injection, their toxicity to the treated animals is insignificant. Our work is an important fundamental study that offers a deeper understanding of in vivo behaviors and toxicology of functionalized nano-graphene in animals, depending on their different administration routes.
机译:近年来,氧化石墨烯(GO)及其功能化衍生物在生物医学中引起了极大的关注。包括我们在内的许多研究小组都研究了功能化纳米石墨烯在静脉内注射或吸入后的体内行为,并揭示了此类纳米材料的表面涂层和尺寸依赖性生物分布及毒理学特征。但是,口服喂食和腹膜内(i.p.)注射后动物中GO衍生物的命运仍不清楚,这是另外两种主要的给药途径。因此,在这项工作中,我们试图系统地研究高剂量口服和腹膜内给药后GO和许多具有不同尺寸和表面涂层的聚乙二醇(PEG)功能化GO衍生物在体内的生物分布和潜在毒性。发现125I标记的PEG化的GO衍生物通过口服给药没有显示出明显的组织吸收,表明这些纳米材料在肠内的吸收相当有限。相反,在腹腔镜手术后,观察到在包括肝和脾在内的网状内皮(RES)系统中聚乙二醇化的GO衍生物而不是原状GO的大量积累。注射。根据器官切片的组织学检查和血液学分析进行的进一步研究发现,尽管GO和PEG化的GO衍生物在腹腔镜手术后很长一段时间内仍会保留在小鼠体内。注射后,它们对治疗动物的毒性微不足道。我们的工作是一项重要的基础研究,可根据动物的不同给药途径,对动物中功能化纳米石墨烯的体内行为和毒理学提供更深入的了解。

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