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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Biocorona formation on gold nanoparticles modulates human proximal tubule kidney cell uptake, cytotoxicity and gene expression
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Biocorona formation on gold nanoparticles modulates human proximal tubule kidney cell uptake, cytotoxicity and gene expression

机译:黄金纳米粒子的生物陶罗纳形成调节人近端小管肾细胞吸收,细胞毒性和基因表达

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摘要

Gold nanoparticles (AuNP) adsorb macromolecules to form a protein corona (PC) after systemic delivery, to which the kidney as the primary excretory organ is constantly exposed. The role of the PC on AuNP cell uptake and toxicity was investigated in vitro in human proximal tubule cells (HPTC) using 40 and 80 nm branched polyethylenimine (BPEI), lipoic acid (LA) and polyethylene glycol (PEG)coated AuNP with or without (bare) PCs composed of human plasma (HP) or human serum albumin (HSA) for 0.25 to 24 h. Time-dependent intracellular uptake, assessed by ICP-MS showed PC modulated cell uptake and cytotoxicity; with bare 40 nm BPEI-AuNP showing the greatest responses. All AuNP showed minimal to no cytokine release. At the nontoxic dose, 40 nm bare BPEI-AuNP significantly modified gene expression related to immunotoxicity, steatosis, and mitochondrial metabolism; while at the high dose, pathways of DNA damage and repair, apoptosis, fatty acid metabolism and heat shock response were modulated. HP corona BPEI-AuNP response was comparable to control. These studies clearly showed reduced uptake and cytotoxicity, as well as differentiated gene expression of AuNP with PCs, questioning the utility of in vitro studies using bare NP to assess in vivo effects. Significantly, only cationic bare BPEI-AuNP had HPTC uptake or cytotoxicity suggesting the relative safety of PEG and LA-AuNP as nanomedicine constructs.
机译:金纳米颗粒(AUNP)吸附大分子以在全身递送后形成蛋白质电晕(PC),肾脏作为初级排泄器官的肾脏不断暴露。使用40和80nm支化聚乙烯(BPEI),硫辛酸(LA)和聚乙二醇(PEG),具有或没有(裸)由人血浆(HP)或人血清白蛋白(HSA)组成的PC为0.25至24小时。通过ICP-MS评估的时间依赖性细胞内摄取显示了PC调节的细胞吸收和细胞毒性;裸露的40 nm bpei-aunp显示最大的回复。所有AUNP都显示出无细胞因子释放最小。在无毒剂量,40nm裸BPEI-AUNP明显修饰与免疫毒性,脂肪变性和线粒体代谢相关的基因表达;虽然在高剂量,DNA损伤的途径和修复,细胞凋亡,脂肪酸代谢和热休克反应被调节。 HP Corona BPEI-AUNP响应与对照相当。这些研究清楚地显示出降低的摄取和细胞毒性,以及具有PC的AUNP的分化基因表达,质疑使用裸NP的体外研究的效用进行体内效应。值得注意的是,只有阳离子裸BPEI-AUNP具有HPTC吸收或细胞毒性,表明PEG和LA-AUNP作为纳米胺类构建体的相对安全。

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