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Modification of microbial polymers by thiol-ene click reaction: Nanoparticle formation and drug encapsulation

机译:通过硫醇 - 烯点击反应改性微生物聚合物:纳米颗粒形成和药物包封

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摘要

Comb-like amphiphilic polymers were obtained by grafting long paraffinic chains on microbial poly(¿,dl-glutamic acid) and poly(ß,l-malic acid) through two steps, i.e. allylation of the carboxylic side groups followed by UV-initiated thiol-ene click reaction with 1-alkanethiols bearing 8, 12 and 16 carbon atoms, and their characterization was accomplished by 1H NMR, GPC and DSC. The grafted polymers were capable of self-assembling in nanoparticles with diameters in the 80–240 nm range. Incubation in water under physiological conditions led to hydrolysis of the lateral ester bonds followed by scission of the polyamide or polyester main chain. The model drugs, Theophylline and Carbamazepine, were efficiently encapsulated in these systems with much better results attained for the later. Drug release from nanoparticles incubated under physiological conditions occurred with a burst effect and were completely discharged in 24 h. Release profiles recorded from drug-loaded films suggested that the drug was delivered in both cases through a diffusion process.
机译:梳状两亲聚合物是通过两个步骤将长链烷烃链接枝到微生物聚(?,dl-谷氨酸)和聚(β,1-苹果酸)上而获得的,即羧基侧基的烯丙基化,然后是紫外线引发的硫醇。与带有8、12和16个碳原子的1-链烷硫醇的α-烯点击反应,并通过1 H NMR,GPC和DSC对其进行表征。接枝的聚合物能够在直径为80-240 nm的纳米颗粒中自组装。在生理条件下在水中温育导致侧酯键水解,随后切断聚酰胺或聚酯主链。模型药物茶碱和卡马西平被有效地封装在这些系统中,随后获得了更好的结果。在生理条件下温育的纳米颗粒释放出的药物具有爆发效应,并在24小时内完全排出。从载有药物的薄膜记录的释放曲线表明,在两种情况下,药物都是通过扩散过程递送的。

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