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首页> 外文期刊>Nanotechnology >Not nanocarbon but dispersant induced abnormality in lysosome in macrophages in vivo
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Not nanocarbon but dispersant induced abnormality in lysosome in macrophages in vivo

机译:不是纳米碳,而是分散剂在体内诱导巨噬细胞溶酶体异常

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The properties of nanocarbons change from hydrophobic to hydrophilic as a result of coating them with dispersants, typically phospholipid polyethylene glycols, for biological studies. It has been shown that the dispersants remain attached to the nanocarbons when they are injected in mice and influence the nanocarbons' biodistribution in vivo. We show in this report that the effects of dispersants also appear at the subcellular level in vivo. Carbon nanohorns (CNHs), a type of nanocarbon, were dispersed with ceramide polyethylene glycol (CPEG) and intravenously injected in mice. Histological observations and electron microscopy with energy dispersive x-ray analysis revealed that, in liver and spleen, the lysosome membranes were damaged, and the nanohorns formed a complex with hemosiderin in the lysosomes of the macrophages. It is inferred that the lysosomal membrane was damaged by sphigosine generated as a result of CPEG decomposition, which changed the intra lysosomal conditions, inducing the formation of the CPEG-CNH and hemosiderin complex. For comparison, when glucose was used instead of CPEG, neither the nanohorn-hemosiderin complex nor lysosomal membrane damage was found. Our results suggest that surface functionalization can control the behavior of nancarbons in cells in vivo and thereby improve their suitability for medical applications.
机译:纳米碳的性质从疏水性变为亲水性,这是因为用分散剂(通常是磷脂聚乙二醇)涂覆了纳米碳用于生物学研究。已经显示出,当分散剂被注射到小鼠中时,分散剂保持附着在纳米碳上,并影响纳米碳在体内的生物分布。我们在这份报告中表明,分散剂的作用还出现在体内的亚细胞水​​平。碳纳米角(CNHs)是一种纳米碳,与神经酰胺聚乙二醇(CPEG)分散在一起并静脉内注射到小鼠中。组织学观察和具有能量色散X射线分析的电子显微镜显示,在肝和脾中,溶酶体膜被破坏,并且纳米角在巨噬细胞的溶酶体中与含铁血黄素形成了复合物。可以推断,溶酶体膜被CPEG分解产生的天花碱破坏,改变了溶酶体内的条件,诱导了CPEG-CNH和含铁血黄素复合物的形成。为了比较,当使用葡萄糖代替CPEG时,既没有发现纳米角-血铁蛋白复合物也没有发现溶酶体膜损伤。我们的结果表明,表面功能化可以控制体内细胞中纳米碳的行为,从而提高其在医疗应用中的适用性。

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