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Dual covalent functionalization of single-walled carbon nanotubes for effective targeted cancer therapy

机译:单壁碳纳米管的双共价官能化有效靶向癌症治疗

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摘要

Chemotherapy is a mainstay strategy in the management of cancer. Regrettably, current chemotherapeutic agents are cytotoxic not only to cancer cells but also to healthy cells, resulting in dose-limiting serious side effects. Therefore, many researchers are eager to develop new drug delivery systems that may help to decrease the side effects and the target delivery of chemotherapy to cancer cells. One of the epochal drug delivery systems in this field is based on carbon nanotubes technology. The aim of this work is the dual covalent functionalization of single-walled carbon nanotubes (SWCNTs) with doxorubicin (DOX) connected with acid-labile linkage and mannose (Man) as a targeting agent. The characterization of the developed nano-drug by transmission electron microscopy showed good dispersibility of the functionalized SWCNTs with diameters (6-10) nm. Moreover, the percentage of functionalization was determined by thermogravimetric analysis showing 25% of functionalization in the case of SWNCTs-NHN-DOX (7) and 51% for SWCNTs-Man-NHN-DOX (11). The in vitro release profile of Dox from SWNCTs-NHN-DOX (7) showed 45% of the loaded drug was released over 18 h at pH 7.4 and almost complete release at pH 6.4 at 37 degrees C. However, the in vitro release profile of Dox from SWCNTs-Man-NHN-DOX (11) showed 75% of the loaded drug was released over 5 h at pH 6.4 at 37 degrees C. The cytotoxic effect of the compounds was studied on liver cancer cells (HepG2) at different concentrations and different pH conditions and was compared with DOX alone. The cytotoxicity of compounds SWCNTs-NHN-DOX (7) and SWCNTs-Man-NHN-DOX (11) was enhanced at pH 6.5, where the cell viability in both test compounds was significantly reduced by almost 50% compared to the cell viability at pH 7.4 for the same test compound Moreover, the pre-incubation of cells with different concentrations of mannose reduced the cytotoxicity of compound (11) by more than 50%, suggesting that the entry of this complex could be at least in part facilitated by mannose receptors, which imparts this complex a kind of selectivity for cancer cells that overexpress this type of receptors.
机译:化疗是治疗癌症的主要策略。遗憾的是,目前的化疗药物不仅对癌细胞有细胞毒性,而且对健康细胞也有细胞毒性,导致严重的剂量限制性副作用。因此,许多研究人员迫切希望开发新的药物递送系统,以帮助减少化疗的副作用和靶向递送到癌细胞。该领域划时代的药物递送系统之一是基于碳纳米管技术的。本研究的目的是将单壁碳纳米管(SWCNT)与连接有不耐酸键的阿霉素(DOX)和甘露糖(Man)作为靶向剂进行双共价功能化。通过透射电子显微镜对所开发的纳米药物进行表征,表明直径为(6-10)nm的功能化SWCNT具有良好的分散性。此外,通过热重分析确定了功能化的百分比,表明在SWNCT NHN DOX(7)和SWCNT Man NHN DOX(11)的情况下,功能化率分别为25%和51%。SWNCTs NHN Dox(7)中Dox的体外释放曲线显示,45%的载药在pH 7.4下释放超过18小时,在pH 6.4下37℃下几乎完全释放。然而,从SWCNTs-Man-NHN-Dox(11)获得的Dox体外释放曲线显示,75%的负载药物在37°C的pH 6.4下在5小时内释放。在不同浓度和不同pH条件下,研究了化合物对肝癌细胞(HepG2)的细胞毒作用,并与单独使用Dox进行了比较。化合物SWCNTs NHN DOX(7)和SWCNTs Man NHN DOX(11)的细胞毒性在pH 6.5下增强,与相同试验化合物在pH 7.4下的细胞活性相比,这两种试验化合物中的细胞活性显著降低了近50%。此外,不同浓度甘露糖预培养的细胞使化合物(11)的细胞毒性降低了50%以上,这表明甘露糖受体至少在一定程度上促进了这种复合物的进入,这使这种复合物对过度表达这种受体的癌细胞具有一种选择性。

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