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Hyaluronate Functionalized Multi-Wall Carbon Nanotubes Filled with Carboplatin as a Novel Drug Nanocarrier against Murine Lung Cancer Cells

机译:透明质酸功能化的多壁碳纳米管充满卡铂作为新型药物纳米载体对小鼠肺癌细胞的影响。

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摘要

Carbon nanotubes (CNTs) have emerged in recent years as a potential option for drug delivery, due to their high functionalization capacity. Biocompatibility and selectivity using tissue-specific biomolecules can optimize the specificity, pharmacokinetics and stability of the drug. In this study, we design, develop and characterize a drug nanovector (oxCNTs-HA-CPT) conjugating oxidated multi-wall carbon nanotubes (oxCNTs) with hyaluronate (HA) and carboplatin (CPT) as a treatment in a lung cancer model in vitro. Subsequently, we exposed TC–1 and NIH/3T3 cell lines to the nanovectors and measured cell uptake, cell viability, and oxidative stress induction. The characterization of oxCNTs-HA-CPT reveals that on their surface, they have HA. On the other hand, oxCNTs-HA-CPT were endocytosed in greater proportion by tumor cells than by fibroblasts, and likewise, the cytotoxic effect was significantly higher in tumor cells. These results show the therapeutic potential that nanovectors possess; however, future studies should be carried out to determine the death pathways involved, as well as their effect on in vivo models.
机译:近年来,由于碳纳米管的高功能化能力,它们已成为药物输送的潜在选择。使用组织特异性生物分子的生物相容性和选择性可以优化药物的特异性,药代动力学和稳定性。在这项研究中,我们设计,开发和表征结合透明质酸盐(HA)和卡铂(CPT)的氧化多壁碳纳米管(oxCNTs)的药物纳米载体(oxCNTs-HA-CPT),作为体外肺癌模型的治疗方法。随后,我们将TC-1和NIH / 3T3细胞系暴露于纳米载体,并测量了细胞摄取,细胞活力和氧化应激诱导。 oxCNTs-HA-CPT的特征表明,在其表面上具有HA。另一方面,oxCNTs-HA-CPT被肿瘤细胞内吞的比例高于成纤维细胞,同样,肿瘤细胞的细胞毒性作用也明显更高。这些结果表明纳米载体具有治疗潜力。然而,应该进行进一步的研究以确定所涉及的死亡途径及其对体内模型的影响。

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