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首页> 外文期刊>Iranian polymer journal >Sustained drug release using supramolecular hydrogels composed of cyclodextrin inclusion complexes with PCL/PEG multiple block copolymers
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Sustained drug release using supramolecular hydrogels composed of cyclodextrin inclusion complexes with PCL/PEG multiple block copolymers

机译:使用由环糊精包合物与PCL / PEG多嵌段共聚物组成的超分子水凝胶持续释放药物

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摘要

Methadone hydrochloride is a narcotic drag used to relieve chronic pain and control withdrawal symptoms in people undergoing detoxification for opiate addiction, but poses some limits. To reduce the limits and increase the drag's effectiveness, supramolecular hydrogels composed of α-CD (α-cyclodextrin) and PCL/PEG (poly-caprolactone/polyethylene glycol) copolymers, which gained attention due to their advantages, were chosen in this study as controlled-release formulations. PCL/PEG/PCL and PCL/PEG copolymers were synthesized by a microwave-assisted method and then supramolecular hydrogels were prepared by mixing the solutions of copolymers/drug and α-CD to make a methadone hydrochloride sustained-release system. Effects of the drag, copolymer, and α-CD concentrations and copolymer structure on gelation time were also investigated. The systems had rheological properties that depended on copolymer construction and component concentrations. The microwave-assisted method provides an accelerated synthesis of the copolymers with yield of 57 % and low level of impurities. The supramolecular hydrogels demonstrated shear thinning and thixo-tropic behavior and regained their networks quickly after passing through a fine needle. Due to the porous construction of supramolecular hydrogels, they swell in the presence of fluids and absorb large quantities of water, thereby making the system comprehensively biocompatible. In this study, supramolecular hydrogels composed of α-CD with tri- and di-block copolymers were investigated and found to have rheological properties that depended on copolymer construction and component concentrations. Changing one parameter alone like copolymer or α-CD concentration or the length of blocks could not significantly affect on the drug release, but combination of these factors was efficient. Results of the present study indicated that supramolecular hydrogels composed of α-CD and PCL/PEG copolymers are appropriate drag delivery systems that can release methadone hydrochloride in a sustained manner.
机译:盐酸美沙酮是一种麻醉药,可缓解因鸦片成瘾而接受排毒的人的慢性疼痛和控制戒断症状,​​但存在一定的局限性。为了减少限制并增加药物的有效性,本研究选择了由α-CD(α-环糊精)和PCL / PEG(聚己内酯/聚乙二醇)共聚物组成的超分子水凝胶,由于其优势,引起了人们的关注。控释制剂。采用微波辅助的方法合成了PCL / PEG / PCL和PCL / PEG共聚物,然后将共聚物/药物与α-CD的溶液混合制成盐酸美沙酮缓释体系,制备了超分子水凝胶。还研究了阻力,共聚物,α-CD浓度和共聚物结构对胶凝时间的影响。该体系的流变性能取决于共聚物的结构和组分的浓度。微波辅助方法可加速共聚物的合成,产率为57%,杂质含量低。超分子水凝胶显示出剪切稀化和触变性,并在通过细针后迅速恢复其网络。由于超分子水凝胶的多孔结构,它们在存在液体时会溶胀并吸收大量水,从而使该系统具有全面的生物相容性。在这项研究中,研究了由α-CD与三嵌段和二嵌段共聚物组成的超分子水凝胶,发现其流变性质取决于共聚物的结构和组分的浓度。单独更改一个参数(例如共聚物或α-CD浓度或嵌段的长度)不会显着影响药物释放,但是将这些因素组合在一起是有效的。本研究结果表明,由α-CD和PCL / PEG共聚物组成的超分子水凝胶是合适的药物递送系统,可以持续释放盐酸美沙酮。

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