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Drug-loading capacity and nuclear targeting of multiwalled carbon nanotubes grafted with anionic amphiphilic copolymers

机译:阴离子两亲共聚物接枝的多壁碳纳米管的载药量和核靶向

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摘要

In this study, three types of hybrid nanotubes (NTs), ie, oxidized multiwalled carbon NTs (COOH MWCNTs), heparin (Hep)-conjugated MWCNTs (Hep MWCNTs), and diblock copolymer polyglycolic acid (PGA)-co-heparin conjugated to MWCNTs (PGA MWCNTs), were synthesized with improved biocompatibility and drug-loading capacity. Hydrophilic Hep substituents on MWCNTs improved biocompatibility and acted as nucleus-sensitive segments on the CNT carrier, whereas the addition of PGA enhanced drug-loading capacity. In the PGA MWCNT system, the amphiphilic copolymer (PGA-Hep) formed micelles on the side walls of CNTs, as confirmed by electron microscopy. The PGA system encapsulated the hydrophobic drug with high efficiency compared to the COOH MWCNT and Hep MWCNT systems. This is because the drug was loaded onto the PGA MWCNTs through hydrophobic forces and onto the CNTs by π–π stacking interactions. Additionally, most of the current drug-carrier designs that target cancer cells release the drug in the lysosome or cytoplasm. However, nuclear-targeted drug release is expected to kill cancer cells more directly and efficiently. In our study, PGA MWCNT carriers effectively delivered the active anticancer drug doxorubicin into targeted nuclei. This study may provide an effective strategy for the development of carbon-based drug carriers for nuclear-targeted drug delivery.
机译:在这项研究中,三种类型的杂化纳米管(NTs),即氧化的多壁碳NTs(COOH MWCNTs),肝素(Hep)缀合的MWCNTs(Hep MWCNTs)和二嵌段共聚物聚乙醇酸(PGA)-共-肝素缀合到合成了具有改善的生物相容性和载药量的多壁碳纳米管(PGA MWCNT)。 MWCNTs上的亲水性Hep取代基改善了生物相容性,并充当CNT载体上的核敏感段,而PGA的添加增强了载药量。在PGA MWCNT系统中,两亲共聚物(PGA-Hep)在CNT的侧壁上形成胶束,这已通过电子显微镜证实。与COOH MWCNT和Hep MWCNT系统相比,PGA系统以高效率封装了疏水性药物。这是因为药物通过疏水力加载到PGA MWCNT上,并通过π–π堆积相互作用加载到CNT上。此外,目前大多数靶向癌细胞的药物载体设计都会在溶酶体或细胞质中释放药物。但是,核靶向药物的释放有望更直接,更有效地杀死癌细胞。在我们的研究中,PGA MWCNT载体将有效的抗癌药阿霉素有效地递送到了靶向核中。这项研究可能为开发用于核靶向药物的碳基药物载体提供有效策略。

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