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Effect of cationic side-chains on intracellular delivery and cytotoxicity of pH sensitive polymer-doxorubicin nanocarriers

机译:阳离子侧链对细胞的影响交付和pH敏感的细胞毒性polymer-doxorubicin人们

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摘要

Fine-tuning the design of polymer-doxorubicin conjugates permits optimization of an efficient nanocarrier to greatly increase intracellular uptake and cytotoxicity. Here, we report synthesis of a family of self-assembled polymer-doxorubicin nanoparticles and an evaluation of the effects of various types of side-chains on intracellular uptake and cytotoxicity of the nanocarriers for lymphoma cells. Monomers with three different cationic side-chains (CA) and pK_a's, i.e., a guanidinium group (Ag), an imidazole group (Im), and a tertiary amine group (Dm), were comparatively investigated. The cationic monomer, poly(ethylene glycol) (PEG), and doxorubicin (Dox) were reacted with l,4-(butanediol) diacrylate (BUDA) to prepare a poly(β-amino ester) (PBAE) polymer via Michael addition. All three polymer-Dox conjugates spontaneously formed nanoparticles (NP) through hydrophobic interactions between doxorubicin in aqueous solution, resulting in NP-Im/Dox, NP-Ag/Dox, and NP-Dm/Dox, with hydrodynamic sizes below 80 nm. Doxorubicin was linked to all 3 types of NPs with a hydrazone bond to assure selective release of doxorubicin only at acidic pH, as it occurs in the tumor microenvironment. Both NP-Im/Dox and NP-Ag/Dox exhibited much higher intracellular uptake by Ramos cells (Burkitt's lymphoma) than NP-Dm/Dox, suggesting that the type of side chain in the NPs determines the extent of intracellular uptake. As a result, NP-Im/Dox and NP-Ag/Dox showed cytotoxicity that was comparable to free Dox in vitro. Our findings suggest that the nature of surface cationic group on nanocarriers may profoundly influence their intracellular trafficking and resulting therapeutic efficacy. Thus, it is a crucial factor to be considered in the design of novel carriers for intracellular drug delivery.
机译:微调polymer-doxorubicin的设计配合允许高效的优化nanocarrier大大增加细胞内吸收和细胞毒性。自组装合成的一个家庭polymer-doxorubicin纳米粒子和一个评估各种类型的的影响侧链在细胞内吸收淋巴瘤细胞毒性的人们细胞。侧链(CA)和pK_a的,也就是说,胍盐集团(Ag)咪唑组(Im)和叔胺组(Dm),是相对的调查。乙二醇)(挂钩),阿霉素(阿霉素)反应与l, 4 -丁二醇丙烯酸(布达)制成准备一个聚β氨基酸酯)(PBAE)聚合物通过迈克尔加成。配合自发形成的纳米粒子通过疏水相互作用(NP)阿霉素在水溶液中,导致NP-Im Dox、NP-Ag / Dox和NP-Dm / Dox里,用水动力大小低于80海里。与所有3种NPs腙债券,以确保选择性释放阿霉素只有在酸性pH值,因为它发生在肿瘤微环境。表现出更高的细胞内吸收拉莫斯细胞(伯基特淋巴瘤)比NP-Dm /阿霉素,这表明在NPs侧链的类型确定细胞内吸收的程度。因此,NP-Im /阿霉素和NP-Ag /阿霉素是与自由阿霉素的细胞毒性体外。人们表面阳离子小组他们的细胞内产生深远的影响走私和产生的治疗效果。因此,它是一个至关重要的因素要考虑细胞内的新航母的设计药物输送。

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