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首页> 外文期刊>Molecular pharmaceutics >Augmented anticancer activity of a targeted, intracellularly activatable, theranostic nanomedicine based on fluorescent and radiolabeled, methotrexate-folic acid-multiwalled carbon nanotube conjugate
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Augmented anticancer activity of a targeted, intracellularly activatable, theranostic nanomedicine based on fluorescent and radiolabeled, methotrexate-folic acid-multiwalled carbon nanotube conjugate

机译:基于荧光和放射性标记的甲氨蝶呤-叶酸-多壁碳纳米管共轭物的靶向,细胞内可活化的治疗性纳米药物的增强的抗癌活性

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The present study reports the design, synthesis, and biological evaluation of a novel, intravenously injectable, theranostic prodrug based on multiwalled carbon nanotubes (MWCNTs) concomitantly decorated with a fluorochrome (Alexa-fluor, AF488/647), radionucleide (Technitium-99m), tumor-targeting module (folic acid, FA), and anticancer agent (methotrexate, MTX). Specifically, MTX was conjugated to MWCNTs via a serum-stable yet intracellularly hydrolyzable ester linkage to ensure minimum drug loss in circulation. Cell uptake studies corroborated the selective internalization of AF-FA-MTX-MWCNTs (1) by folate receptor (FR) positive human lung (A549) and breast (MCF 7) cancer cells through FR mediated endocytosis. Lysosomal trafficking of 1 enabled the conjugate to exert higher anticancer activity as compared to its nontargeted counterpart that was mainly restricted to cytoplasm. Tumor-specific accumulation of 1 in Ehlrich Ascites Tumor (EAT) xenografted mice was almost 19 and 8.6 times higher than free MTX and FA-deprived MWCNTs. Subsequently, the conjugate 1 was shown to arrest tumor growth more effectively in chemically breast tumor induced rats, when compared to either free MTX or nontargeted controls. Interestingly, the anticancer activities of the ester-linked CNT-MTX conjugates (including the one deprived of FA) were significantly higher than their amide-linked counterpart, suggesting that cleavability of linkers between drug and multifunctional nanotubes critically influence their therapeutic performance. The results were also supported by in silico docking and ligand similarity analysis. Toxicity studies in mice confirmed that all CNT-MTX conjugates were devoid of any perceivable hepatotoxicity, cardiotoxicity, and nephrotoxicity. Overall, the delivery property of MWCNTs, high tumor binding avidity of FA, optical detectability of AF fluorochromes, and radio-traceability of 99mTc could be successfully integrated and partitioned on a single CNT-platform to augment the therapeutic efficacy of MTX against FR overexpressing cancer cells while allowing a real-time monitoring of treatment response through multimodal imaging.
机译:本研究报告了一种新型,静脉内注射,治疗性前药的设计,合成和生物学评估,该药物基于多壁碳纳米管(MWCNT)并用荧光染料(Alexa-fluor,AF488 / 647),放射性核素(Technitium-99m)装饰,肿瘤靶向模块(叶酸,FA)和抗癌剂(甲氨蝶呤,MTX)。具体而言,MTX通过血清稳定但可在细胞内水解的酯键与MWCNT偶联,以确保循环中的药物损失最小。细胞摄取研究证实了叶酸受体(FR)阳性人肺(A549)和乳腺癌(MCF 7)癌细胞通过FR介导的内吞作用对AF-FA-MTX-MWCNTs(1)的选择性内在化。溶酶体运输1使缀合物与其主要针对细胞质的非靶向对应物相比具有更高的抗癌活性。在Ehlrich腹水肿瘤(EAT)异种移植小鼠中,肿瘤特异性1的积累比游离MTX和FA剥夺的MWCNT高出近19倍和8.6倍。随后,当与游离MTX或非靶向对照相比时,显示缀合物1在化学乳腺肿瘤诱导的大鼠中更有效地阻止肿瘤生长。有趣的是,酯连接的CNT-MTX共轭物(包括被剥夺FA的那一种)的抗癌活性显着高于其酰胺连接的对应物,这表明药物与多功能纳米管之间的连接基的可裂解性严重影响了它们的治疗性能。计算机对接和配体相似性分析也支持了该结果。在小鼠中进行的毒性研究证实,所有CNT-MTX缀合物都没有任何可察觉的肝毒性,心脏毒性和肾毒性。总体而言,MWCNTs的传递特性,FA的高肿瘤结合亲和力,AF荧光染料的光学可检测性以及99mTc的放射性可追踪性可以成功整合并分配在单个CNT平台上,以增强MTX对抗FR过表达的癌症的治疗功效同时通过多模式成像实时监测治疗反应。

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