不同化学成分碳点的体内外毒性研究。

0 MATERIALS SCIENCE, MULTIDISCIPLINARY Discover nano Pub Date : 2023-09-08 DOI:10.1186/s11671-023-03891-9
Halyna Kuznietsova, Alain Géloën, Nataliia Dziubenko, Alexander Zaderko, Sergei Alekseev, Vladimir Lysenko, Valeriy Skryshevsky
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引用次数: 1

摘要

碳点(CDs)是一种易于获得且具有广泛生物活性的纳米颗粒;然而,对其长期接触后的毒性研究甚少。因此,研究表面含有羟基化烃链和亚甲基(CD_GE)、羧基和酚基含氮(CD_3011)、三氟甲基(CDF19)或甲苯胺和苯胺基(CDN19)的CDs的体内外毒性。孵育24 h后对A549细胞进行体外毒性评估(实时细胞阻抗分析,荧光显微镜),未观察到细胞活力和形态的变化。多次给药(5 mg/kg皮下注射)14 d后,观察cd对C57Bl6小鼠的体内毒性。CDN19和CD_3011组在不同给药天数的致死率高达50%,CD_3011组有毒性体征。除尿素(CDF19和CD_3011组升高)外,血清生化指标无明显变化,肾、肝、脾无明显损伤。对各脏器影响最大的也是CD_3011和CDF19,造成肾小管损伤和肝脏血供破坏。因此,表面富含含氧和含氮官能团的cd在多次每日给药后可能是有毒的,但对存活动物的内脏没有明显损害。
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In vitro and in vivo toxicity of carbon dots with different chemical compositions.

Carbon dots (CDs) are easy-obtained nanoparticles with wide range of biological activity; however, their toxicity after prolonged exposure is poorly investigated. So, in vitro and in vivo toxicity of CDs with the surfaces enriched with hydroxylated hydrocarbon chains and methylene groups (CD_GE), carboxyl and phenol groups accompanied with nitrogen (CD_3011), trifluoromethyl (CDF19) or toluidine and aniline groups (CDN19) were aimed to be discovered. CDs' in vitro toxicity was assessed on A549 cells (real-time cell analysis of impedance, fluorescence microscopy) after 24 h of incubation, and we observed no changes in cell viability and morphology. CDs' in vivo toxicity was assessed on C57Bl6 mice after multiple dosages (5 mg/kg subcutaneously) for 14 days. Lethality (up to 50%) was observed in CDN19 and CD_3011 groups on different days of dosing, accompanied by toxicity signs in case of CD_3011. There were no changes in serum biochemical parameters except Urea (increased in CDF19 and CD_3011 groups), nor substantial kidney, liver, and spleen injuries. The most impactful for all organs were also CD_3011 and CDF19, causing renal tubule injury and liver blood supply violation. Thus, CDs with a surface enriched with oxygen- and nitrogen-containing functional groups might be toxic after multiple everyday dosing, without, however, significant damages of internal organs in survived animals.

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