首页> 外文期刊>Nanotechnology, science and applications >Effects of Fluorescent Diamond Particles FDP-NV-800nm on Essential Biochemical Functions of Primary Human Umbilical Vein Cells and Human Hepatic Cell Line, HepG-2 in vitro (Part VI): Acute Biocompatibility Studies
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Effects of Fluorescent Diamond Particles FDP-NV-800nm on Essential Biochemical Functions of Primary Human Umbilical Vein Cells and Human Hepatic Cell Line, HepG-2 in vitro (Part VI): Acute Biocompatibility Studies

机译:荧光金刚石颗粒FDP-NV-800nm对原发性人脐细胞和人肝细胞系基本生化功能的影响,Hepg-2在体外(第VI部分):急性生物相容性研究

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Background: Recently, we reported the safety and biocompatibility of fluorescent diamond particles, FDP-NV-Z-800nm (FDP-NV) injected intravenously into rats, where no morbidity and mortality were noted over a period of 3 months. The acute effects of FDP-NV-800nm particles on cultured human endothelial and hepatic cells remain unexplored. Purpose: In this study, we aimed to explore select cellular and biochemical functions in cultured human umbilical endothelial cells (HUVEC) and a human hepatic cancer cell line (HepG-2) exposed to FDP-NV-800 in vitro at exposure levels within the pharmacokinetics (Cmax and the nadir) previously reported in vivo. Methods: Diverse cellular and biochemical functions were monitored, which cumulatively can provide insights into some vital cellular functions. Cell proliferation and migration were assessed by quantitative microscopy. Mitochondrial metabolic functions were tested by the MTT assay, and cytosolic esterase activity was studied by the calcein AM assay. Chaperons (CHOP), BiP and apoptosis (caspase-3 activation) were monitored by using Western blot (WB). MAPK Erk1/2 signaling was assessed by the detection of the phosphorylated form of the protein (P-Erk 1/2) and its translocation into the cell nucleus. Results: At all concentrations tested (0.001– 0.1mg/mL), FDP-NV did not affect any of the biomarkers of cell integrity of HepG2 cells. In contrast, the proliferation of HUVEC was affected at the highest concentration tested (0.1mg/mL, C max ). Exposure of HUVEC to (0.01 mg/mL) FDP-NV had a mild-moderate effect on cell proliferation as evident in the MTT assay and was absent when proliferation was assessed by direct cell counting or by using the calcein AM assays. In both cell types, exposure to the highest concentration (0.1 mg/mL) of FDP-NV did neither affect FBS-stimulated cell signaling (MAPK Erk1/2 phosphorylation) nor did it activate of Caspase 3. Conclusion: Our data suggest that FDP-NV-800nm are largely biocompatible with HepG-2 cells proliferation within the pharmacokinetic data reported previously. In contrast, HUVEC proliferation at the highest exposure dose (0.1 mg/mL) responded adversely with respect to several biomarkers of cell integrity. However, since the C max levels are very short-living, the risk for endothelial injury is likely minimal for slow rate cell proliferation such as endothelial cells.
机译:背景:最近,我们报道了荧光金刚石颗粒的安全性和生物相容性,静脉注射到大鼠中的FDP-NV-Z-800nm(FDP-NV),在3个月内未发现发病率和死亡率。 FDP-NV-800nm颗粒对培养人内皮和肝细胞的急性作用仍未探索。目的:在本研究中,我们的目标是探讨在培养的人脐细胞(HUVEC)中选择细胞和生化功能,以及在暴露于FDP-NV-800的人类肝癌细胞系(Hepg-2),在暴露水平内暴露于FDP-NV-800先前在体内报道的药代动力学(Cmax和Nadir)。方法:监测多种细胞和生化功能,累积地可以为某些重要的细胞功能提供见解。通过定量显微镜评估细胞增殖和迁移。通过MTT测定测试线粒体代谢功能,并通过Calcein AM测定法研究了细胞溶酶酯酶活性。通过使用Western印迹(WB)监测伴侣(Chec),BIP和凋亡(Caspase-3激活)。通过检测蛋白质(P-ERK 1/2)的磷酸化形式和易位来评估MAPK ERK1 / 2信号传导。结果:在测试的所有浓度(0.001-0.1mg / ml),FDP-NV不影响HepG2细胞的细胞完整性的任何生物标志物。相比之下,Huvec的增殖受到测试最高浓度(0.1mg / ml,C max)的影响。 Huvec至(0.01mg / ml)FDP-NV的暴露对细胞增殖的温和中等效应是在MTT测定中明显的,并且当通过直接细胞计数或通过使用Calcein AM测定来评估增殖时不存在。在两种细胞类型中,暴露于最高浓度(0.1mg / ml)的FDP-NV既不影响FBS刺激的细胞信号传导(MAPK ERK1 / 2磷酸化)也没有激活Caspase 3.结论:我们的数据表明FDP -NV-800NM在主要的药代动力学数据中主要是生物相容性的,在先前报道的药代动力学数据中含有Hepg-2细胞增殖。相反,最高曝光剂量(0.1mg / ml)的Huvec增殖相对于细胞完整性的几种生物标志物对若干生物标志物产生不利影响。然而,由于C最大水平非常短,因此对内皮细胞增殖如内皮细胞的慢速率细胞增殖可能最小。

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