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Tracing the Bioavailability of Three-Dimensional Graphene Foam in Biological Tissues

机译:追踪三维石墨烯泡沫在生物组织中的生物利用度

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摘要

Graphene-based materials with a three-dimensional (3D) framework have been investigated for a variety of biomedical applications because of their 3D morphology, excellent physiochemical properties, volume stability, and their controllable degradation rate. Current knowledge on the toxicological implications and bioavailability of graphene foam (GF) has major uncertainties surrounding the fate and behavior of GF in exposed environments. Bioavailability, uptake, and partitioning could have potential effects on the behavior of GF in living organisms, which has not yet been investigated. Here, we report a pilot toxicology study on 3D GF in common carps. Our results showed that GF did not show any noticeable toxicity in common carps, and the antioxidant enzymatic activities, biochemical and blood parameters persisted within the standard series. Further histological imaging revealed that GF remained within liver and kidney macrophages for 7 days without showing obvious toxicity. An in vivo study also demonstrated a direct interaction between GF and biological systems, verifying its eco-friendly nature and high biocompatibility.
机译:具有三维(3D)框架的石墨烯基材料因其3D形态,出色的理化特性,体积稳定性以及可控的降解速率而被研究用于各种生物医学应用。有关石墨烯泡沫(GF)的毒理学意义和生物利用度的当前知识,围绕GF在暴露环境中的命运和行为存在重大不确定性。生物利用度,吸收和分配可能会对GF在生物体中的行为产生潜在影响,但尚未进行研究。在这里,我们报告了对常见鲤鱼3D GF的毒理学试验研究。我们的结果表明,GF在普通鲤鱼中没有显示任何明显的毒性,并且抗氧化剂的酶活性,生化和血液参数在标准系列中仍然存在。进一步的组织学成像显示,GF在肝和肾巨噬细胞中保留了7天,而未显示出明显的毒性。一项体内研究还证明了GF与生物系统之间的直接相互作用,证明了其环保性质和高度的生物相容性。

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