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Synthesis of nucleoside-boronic esters hydrophobic pro-drugs: A possible route to improve hydrophilic nucleoside drug loading into polymer nanoparticles

机译:核苷 - 硼酸酯疏水性备药的合成:一种改善亲水性核苷药物载入聚合物纳米颗粒的可能途径

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摘要

Nucleoside analogues are active therapeutic agents for different types of diseases e.g. Cancer and virus infections. However, they are associated with several side effects due to off-target accumulation. Particulate delivery systems such as nanoparticles (NP) may be able to selectively target drug into affected organs and lower or omit off-target accumulation. Hydrophilic nucleoside analogues are poorly incorporated into NP. This work has used boronic compounds to synthesize more hydrophobic biodegradable pro-drugs of hydrophilic nucleosides to improve drug loading into NP. Ribavirin (RV) was used as a model hydrophilic nucleoside to test our hypothesis. RV is a broad antiviral agent, active against both RNA and DNA viruses. RV accumulates into Red Blood Cells (RBCs) causing haemolytic anaemia that restricts its therapeutic benefits. RBCs are reported to have no endocytic mechanisms. So, NP delivery should be advantageous. Two hydrophobic pro-drugs of RV were synthesized namely, ribavirin conjugated to phenylboronic acid and ribavirin conjugated to 4-butoxy-3, 5-dimethylphenylboronic acid and were encapsulated into polymer NP. It was shown that the pro-drugs were incorporated more effectively into polymer nanoparticles with a 1700 fold improved RV loading. Polymer NP had been prepared with biocompatible and biodegradable polymers, Poly(glycerol adipate) and its more hydrophobic derivatives.
机译:核苷类似物是用于不同类型疾病的活性治疗剂。癌症和病毒感染。然而,由于偏离目标累积,它们与几个副作用相关联。颗粒状递送系统,例如纳米颗粒(NP)可以能够选择性地将药物靶向受影响的器官,降低或省略脱靶积累。亲水性核苷类似物掺入NP中。这项工作用硼化合物化合物合成了更疏水性的亲水核苷的可生物降解的药物,以改善药物载荷进入NP。利巴韦林(RV)用作型亲水性核苷以测试我们的假设。 RV是一种广泛的抗病毒剂,对抗RNA和DNA病毒有源。 RV积累成红细胞(RBC),引起溶血性贫血,限制其治疗益处。据报道RBCS没有内吞机制。因此,NP交付应该是有利的。将RV的两种疏水性药物合成,即与苯基硼酸和利巴韦林缀合至4-丁氧基-3,5-二甲基苯基硼酸的利巴韦林,并将其包封成聚合物NP。结果表明,将促药更有效地掺入聚合物纳米颗粒,其具有1700倍的RV载荷。聚合物NP已用生物相容性和可生物降解的聚合物制备,聚(甘油己二酸酯)及其更疏水的衍生物。

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