首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Increased ROS Scavenging and Antioxidant Efficiency of Chlorogenic Acid Compound Delivered via a Chitosan Nanoparticulate System for Efficient In Vitro Visualization and Accumulation in Human Renal Adenocarcinoma Cells
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Increased ROS Scavenging and Antioxidant Efficiency of Chlorogenic Acid Compound Delivered via a Chitosan Nanoparticulate System for Efficient In Vitro Visualization and Accumulation in Human Renal Adenocarcinoma Cells

机译:通过壳聚糖纳米颗粒系统递送的绿原酸化合物的ROS清除和抗氧化效率提高可在人肾腺癌细胞中高效地可视化和积累。

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摘要

Naturally existing Chlorogenic acid (CGA) is an antioxidant-rich compound reported to act a chemopreventive agent by scavenging free radicals and suppressing cancer-causing mechanisms. Conversely, the compound’s poor thermal and pH (neutral and basic) stability, poor solubility, and low cellular permeability have been a huge hindrance for it to exhibit its efficacy as a nutraceutical compound. Supposedly, encapsulation of CGA in chitosan nanoparticles (CNP), nano-sized colloidal delivery vector, could possibly assist in enhancing its antioxidant properties, in vitro cellular accumulation, and increase chemopreventive efficacy at a lower concentration. Hence, in this study, a stable, monodispersed, non-toxic CNP synthesized via ionic gelation method at an optimum parameter (600 µL of 0.5 mg/mL of chitosan and 200 µL of 0.7 mg/mL of tripolyphosphate), denoted as CNP°, was used to encapsulate CGA. Sequence of physicochemical analyses and morphological studies were performed to discern the successful formation of the CNP°-CGA hybrid. Antioxidant property (studied via DPPH (1,1-diphenyl-2-picrylhydrazyl) assay), in vitro antiproliferative activity of CNP°-CGA, and in vitro accumulation of fluorescently labeled (FITC) CNP°-CGA in cancer cells were evaluated. Findings revealed that successful formation of CNP°-CGA hybrid was reveled through an increase in particle size 134.44 ± 18.29 nm (polydispersity index (PDI) 0.29 ± 0.03) as compared to empty CNP°, 80.89 ± 5.16 nm (PDI 0.26 ± 0.01) with a maximal of 12.04 μM CGA loaded per unit weight of CNP° using 20 µM of CGA. This result correlated with Fourier-Transform Infrared (FTIR) spectroscopic analysis, transmission Electron Microscopy (TEM) and field emission scanning (FESEM) electron microscopy, and ImageJ evaluation. The scavenging activity of CNP°-CGA (IC50 5.2 ± 0.10 µM) were conserved and slightly higher than CNP° (IC50 6.4±0.78 µM). An enhanced cellular accumulation of fluorescently labeled CNP°-CGA in the human renal cancer cells (786-O) as early as 30 min and increased time-dependently were observed through fluorescent microscopic visualization and flow cytometric assessment. A significant concentration-dependent antiproliferation activity of encapsulated CGA was achieved at IC50 of 16.20 µM as compared to CGA itself (unable to determine from the cell proliferative assay), implying that the competent delivery vector, chitosan nanoparticle, is able to enhance the intracellular accumulation, antiproliferative activity, and antioxidant properties of CGA at lower concentration as compared to CGA alone.
机译:天然存在的绿原酸(CGA)是一种富含抗氧化剂的化合物,据报道可通过清除自由基和抑制致癌机制来发挥化学预防剂的作用。相反,该化合物差的热稳定性和pH值(中性和碱性)稳定性,较差的溶解度和较低的细胞通透性一直是阻碍其显示出作为营养化合物的功效的巨大障碍。据推测,CGA封装在壳聚糖纳米颗粒(CNP),纳米级胶体递送载体中,可能有助于增强其抗氧化性能,体外细胞蓄积并在较低浓度下提高化学预防功效。因此,在本研究中,通过离子凝胶法在最佳参数(0.5 µg / mL的壳聚糖600 µL和0.7mg / mL的三聚磷酸盐200 µL的最佳参数)下合成了稳定,单分散,无毒的CNP,表示为CNP°用来封装CGA。进行了理化分析和形态学研究的序列,以识别CNP°-CGA杂种的成功形成。评估了抗氧化性能(通过DPPH(1,1-二苯基-2-吡啶基肼基)分析研究),CNP°-CGA的体外抗增殖活性以及荧光标记(FITC)CNP°-CGA在癌细胞中的体外蓄积。研究结果表明,与空的CNP°相比,增加了134.44±18.29 nm(多分散指数(PDI)0.29±0.03),而增加了134.44±18.29 nm(多分散指数(PDI)0.29±0.013)(PDI 0.26±0.01)使用20 µM CGA时,每单位重量CNP°装载的最大CGA为12.04 µM CGA。该结果与傅立叶变换红外(FTIR)光谱分析,透射电子显微镜(TEM)和场发射扫描(FESEM)电子显微镜以及ImageJ评估相关。保留了CNP°-CGA的清除活性(IC50 5.2±0.10 µM),略高于CNP°(IC50 6.4±0.78 µM)。通过荧光显微镜观察和流式细胞术评估,最早在30分钟时,荧光标记的CNP°-CGA在人肾癌细胞(786-O)中的细胞蓄积增强,并且时间依赖性增加。与CGA本身相比,IC50为16.20 µM时,封装的CGA具有显着的浓度依赖性抗增殖活性(无法通过细胞增殖测定确定),这表明有效的递送载体壳聚糖纳米颗粒能够增强细胞内积累。与单独的CGA相比,CGA的浓度,抗增殖活性和抗氧化性能较低。

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