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首页> 外文期刊>European Polymer Journal >Synthesis of amphiphilic Janus dendrimer and its application in improvement of hydrophobic drugs solubility in aqueous media
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Synthesis of amphiphilic Janus dendrimer and its application in improvement of hydrophobic drugs solubility in aqueous media

机译:两亲janus dendrimer的合成及其在水性介质中改进疏水药物溶解度的应用

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摘要

Classic dendrimers are not used in many specific applications such as simultaneous loading of different drugs due to the existence of identical end groups. The possibility of designing the structure in dendrimers paves the way to synthesize more complicated dendrimers. This includes the creation of various types of peripheral groups on the surface of dendrimers to synthesize for example Janus dendrimers. Nowadays, three main methods are proposed for the synthesis of Janus dendrimers in which the high amount of conventional dendrimers is produced. The goal of this work is to develop a new method for synthesis of Janus dendrimers without production of conventional dendrimers. The present method has three main stages for the synthesis of Janus dendrimers including synthesis of 5th generation PPI dendrimer with cystamine core and hydrophobic surface, conversion of disulfide bonds to thiol group using a structure scission approach, and the formation of PAMAM hydrophilic dendrons with amine end groups. Different analyses including FT-IR, NMR, DLS, and GPC are used to prove the success of the synthesis route. Also, due to application of dendrimers in drug delivery including solubility improvement of hydrophobic drugs, Janus dendrimers are used to improve solubility of tetracycline and dexamethasone in presence of different generations of Janus dendrimers. Since the Janus dendrimers have both hydrophilic and hydrophobic ends, as well as having numerous terminal groups and numerous internal cavities, they have resulted in significant improvements in drug solubility. Also, solubility of the two hydrophobic drugs in water was increased by increasing concentration and generation of dendrimer.
机译:由于存在相同的结束组,许多特定应用中不使用经典的树枝状仪,例如同时加载不同的药物。设计树枝状大分子结构结构的可能性铺平了合成更复杂的树枝状大分子的方法。这包括在树枝状大分子表面上产生各种类型的外围基团,以合成例如Janus树枝状大分子。如今,提出了三种主要方法,用于合成Janus树枝状大分子,其中产生了大量的常规树枝状夹。这项工作的目标是开发一种新方法,用于合成Janus Dendrimers而不产生常规树枝状大分子。本方法具有三个主要阶段,用于合成Janus Dendimers,包括具有胱胺核和疏水表面的第5代PPI树枝状聚合物的合成,使用结构易碎方法将二硫键与硫醇组的转化,以及用胺结束的帕姆亲水性树枝状团体。不同的分析包括FT-IR,NMR,DLS和GPC用于证明合成途径的成功。此外,由于在药物递送中施用树枝状体,包括疏水性药物的溶解性改善,Janus树枝状大分子用于改善四环素和地塞米松的溶解度在不同几代Janus树枝状大分子的存在下。由于Janus树枝状大分子具有亲水和疏水末端,并且具有许多末端基团和许多内腔,因此它们导致药物溶解度的显着改善。而且,通过增加树枝状聚合物的浓度和产生,增加了两种疏水性药物在水中的溶解度。

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