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Elimination Pathways of Nanoparticles

机译:消除纳米颗粒的途径

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Understanding how nanoparticles are eliminated from the body is required for their successful clinical translation. Many promising nanoparticle formulations for in vivo medical applications are large (>5.5 nm) and nonbiodegradable, so they cannot be eliminated renally. A proposed pathway for these nanoparticles is hepatobiliary elimination, but their transport has not been well-studied. Here, we explored the barriers that determined the elimination of nanoparticles through the hepatobiliary route. The route of hepatobiliary elimination is usually through the following pathway: (1) liver sinusoid, (2) space of Disse, (3) hepatocytes, (4) bile ducts, (5) intestines, and (6) out of the body. We discovered that the interaction of nanoparticles with liver nonparenchymal cells (e.g., Kupffer cells and liver sinusoidal endothelial cells) determines the elimination fate. Each step in the route contains cells that can sequester and chemically or physically alter the nanoparticles, which influences their fecal elimination. We showed that the removal of Kupffer cells increased fecal elimination by >10 times. Combining our results with those of prior studies, we can start to build a systematic view of nanoparticle elimination pathways as it relates to particle size and other design parameters. This is critical to engineering medically useful and translatable nanotechnologies.
机译:理解他们的成功临床翻译需要如何从身体中淘汰纳米颗粒。用于体内医疗应用的许多有前途的纳米粒子制剂大(> 5.5nm)和非增生,因此它们不能弃种。这些纳米颗粒的提出途径是肝胆碱消除,但它们的运输尚未得到很好地研究。在这里,我们探讨了通过肝胆途径确定消除纳米颗粒的障碍。肝胆消除途径通常是通过以下途径:(1)肝窦,(2)疾病的空间,(3)肝细胞,(4)胆管,(5)肠道,和(6)脱离体内。我们发现纳米颗粒与肝脏非正良细胞的相互作用(例如,Kupffer细胞和肝窦内皮细胞)决定了消除命运。途径中的每一步都含有可以隔离和化学或物理改变纳米颗粒的细胞,这会影响其粪便消除。我们表明,除去Kupffer细胞的去除通过> 10次增加了粪便消除。将结果与先前研究的结果相结合,我们可以开始构建纳米粒子消除途径的系统视图,因为它涉及粒度和其他设计参数。这对工程学是有用和可翻译的纳米技术至关重要。

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