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Synthesis and characterization of versatile amphiphilic dendrimers peripherally decorated with positively charged amino acids

机译:具有带正电荷氨基酸外周装饰的通络两亲性树枝状大分子的合成与表征

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Dendrimers are nanostructured architectural motifs' with a well-tailored polymeric structure, symmetric tree-like shape and the presence of several functional groups and inner cavities, and are of eminent interest in many biomedical applications such as drug delivery, gene transfection and imaging. In the work reported, reliable protocols for the synthesis of polyester-based, hydrolysable, amphiphilic polycationic dendrimers were developed. A C-18 hydrocarbon chain provided by a biocompatible fatty acid, stearic acid, and second- and third-generation dendrons based on 2,2-bis(hydroxymethyl)propionic acid were built on 2,2-bis(hydroxymethyl)propanol and pentaerythritol as core molecules. N-BOC-N-'-(NO2)-l-arginine alone, mixed with N,N-E-di-BOC-l-lysine or also with N,N-dimethylglycine and N-BOC-methylglycine were successfully bound to the prepared polyester neutral scaffolds and, after the removal of protecting groups, five cationic dendrimers were obtained. Their structure was confirmed using NMR analysis and experimental molecular weight. Their buffer capacity, comparable to that of polyethyleneimines, was optimal, high viability percentage values were obtained from cytotoxicity assays and zeta potential and mean particle size were in the desired ranges. The synthesized nanostructured compounds that harmonize a multifunctional polycationic shell, a biodegradable uncharged polyester matrix and a C-18 hydrophobic portion helpful for an improved hydrophilic-lipophilic balance in their structure embody all the fundamental features to be suitable for biomedical applications. (c) 2018 Society of Chemical Industry
机译:树枝状大分子是纳米结构型建筑图案'具有良好定制的聚合物结构,对称的树状形状和几个官能团和内腔的存在,并且在许多生物医学应用中具有显着的兴趣,例如药物递送,基因转染和成像。在报告的工作中,开发了可靠的聚酯基,可水解,两亲型聚阳离子树枝状过分器的合成方案。基于2,2-双甲基)丙酸的生物相容性脂肪酸,硬脂酸和基于2,2-双(羟甲基)丙醇和季戊四醇,基于生物相容性脂肪酸,硬脂酸和第三代树形提供的C-18烃基链作为核心分子。单独的N-Boc-N-'-(NO 2)-1-精氨酸,与N,NE-DI-BOC-L-赖氨酸混合或与N,N-二甲基甘氨酸和N-BOC-甲基甘氨酸混合,与制备的聚酯中性支架,并在除去保护基团之后,获得了五个阳离子树枝状大分子。使用NMR分析和实验分子量来确认它们的结构。它们与聚乙烯菊花相当的缓冲能力是最佳的,从细胞毒性测定中获得高可活力百分比值,并且Zeta电位和平均粒度在所需的范围内。合成的纳米结构化合物,使多功能聚酯壳,可生物降解的不带电聚酯基质和C-18疏水性部分有助于改善其结构的亲水性 - 亲脂性平衡,其体现了适合生物医学应用的所有基本特征。 (c)2018化学工业协会

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