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Potential Nanomedicine Applications of Multifunctional Carbon Nanoparticles Developed Using Green Technology

机译:使用绿色技术开发的多功能碳纳米粒子的潜在纳米胺应用

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Carbon nanonmaterial development through green technology is gaining pace owing to their biocompatibility, inertness, modifiability, and photoluminescence. These smart nanomaterials are much sought after and have great potential in bioimaging and drug delivery. In this study, we focused on the preparation of carbon nanoparticles (CNPs) using edible yogurt drink (lassi) by microwave irradiation. The physicochemical properties of synthesized CNPs were extensively studied. Results demonstrated that CNPs had average size of 12.58 +/- 0.60 nm with a zeta potential of -24.62 +/- 0.15 mV. The cytocompatibility of CNPs assessed using L929 and rat primary vascular smooth muscle cells (VSMCs) demonstrated enhanced viability after 48 h of incubation. At lower concentrations of CNP, intracellular calcium levels remain unaffected in VSMCs. Doxorubicin (Dox) was used as model molecule to evaluate sythesized CNPs for their efficacy in drug delivery. Dox-loaded CNPs (Dox-CNPs) showed pH-dependent (pH 4.6 and 7.4) drug release. Toxicity of Dox-CNPs assessed with MCF-7 and SAS cell lines indicated IC50 values at 0.25 mu g/mL. Cell cycle arrest, elevation of reactive oxygen species, and loss of inner mitochondrial membrane potential corroborated efficient delivery of Dox to the nuclei with enhanced activity. The successful delivery of drug into the nuclei and its subsequent pH-dependent release project CNPs as promising drug delivery vehicles for nanomedicine.
机译:由于其生物相容性,惰性,变性性和光致发光,通过绿色技术通过绿色技术进行碳纳米材料。这些智能纳米材料被追捧,并具有巨大的生物体和药物递送。在这项研究中,我们专注于通过微波辐射使用可食用酸奶饮料(Lassi)的碳纳米颗粒(CNP)的制备。广泛研究了合成的CNP的物理化学特性。结果表明,CNP的平均尺寸为12.58 +/- 0.60nm,Zeta电位为-24.62 +/- 0.15 mV。使用L929和大鼠原发性血管平滑肌细胞(VSMCs)评估CNP的细胞偶联性表现出48小时后的增强的活力。在较低浓度的CNP中,细胞内钙水平在VSMC中仍未受到影响。多柔比星(DOX)用作模型分子,以评估Sythesized CNP的药物递送疗效。 DOX加载的CNPS(DOX-CNP)显示pH依赖性(pH 4.6和7.4)药物释放。用MCF-7和SAS细胞系评估DOX-CNP的毒性,指示0.25μg/ ml的IC 50值。细胞周期停滞,反应性氧物种的升高,以及内部线粒体膜的损失与增强活性的核心有效地递送DOX。将药物的成功递送到核中,其随后的pH依赖性释放项目CNPS作为纳米医生的有希望的药物递送载体。

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