首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Synthesis of Starch-Poly(Sodium Acrylate-co-Acrylamide)Superabsorbent Hydrogel with Salt and pH-Responsiveness Properties as a Drug Delivery System
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Synthesis of Starch-Poly(Sodium Acrylate-co-Acrylamide)Superabsorbent Hydrogel with Salt and pH-Responsiveness Properties as a Drug Delivery System

机译:具有盐和pH响应特性的淀粉-聚(丙烯酸钠-共丙烯酰胺)超吸收性水凝胶的合成作为药物递送系统

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The synthesis and swelling behavior of a superabsorbent hydrogel based on starch(St)and polyacrylonitrile(PAN)were investigated.The physical mixture of St and PAN was hydrolyzed with NaOH solution to yield St-poly(sodium acrylate-eo-acrylamide)superabsorbent hydrogels.The nitrile groups of PAN were completely converted to a mixture of hydrophilic carboxamide and carboxylate groups during the basic hydrolysis followed by in situ crosslinking of the PAN chains by the starch alkoxide ions.A mechanism for hydrogel formation was proposed and the structure of the product was established using FTIR spectroscopy.The effect of reaction variables,such as,base concentration,hydrolysis time,and temperature were systematically optimized to achieve a hydrogel with swelling capacity as high as possible.The optimized swelling capacity in distilled water was found to be>500g/g.The absorbency of the hydrogels indicated that the swelling ratios decreased with ionic strength increases.The St-poly(sodium acrylate-co-acrylamide)hydrogel exhibited a pH-responsive swelling-deswelling behavior at pH's 2 and 8.This on-off switching behavior provides the hydrogel with the potential to control delivery of bioactive agents.Release profiles of ibuprofen(IBU),a poor water-soluble drug,from the hydrogels were studied under both simulated gastric and intestinal pH conditions.The release was much quicker at pH 7.4 than at pH 1.2.The swelling rates of the hydrogels with various particle sizes were investigated as well.
机译:研究了淀粉(St)和聚丙烯腈(PAN)为基的超吸收性水凝胶的合成和溶胀行为。用NaOH溶液水解St和PAN的物理混合物,得到St-聚丙烯酸钠-eo-丙烯酰胺超吸收性水凝胶。在碱性水解过程中,PAN的腈基完全转化为亲水性羧酰胺基团和羧酸酯基团的混合物,然后通过淀粉醇盐离子原位交联PAN链。提出了形成水凝胶的机理和产物的结构利用傅立叶变换红外光谱(FTIR)技术建立了反应体系,优化了碱浓度,水解时间和温度等反应变量的影响,以实现尽可能高的溶胀度的水凝胶。 500g / g。水凝胶的吸收性表明溶胀率随离子强度的增加而降低。丙烯酸酯-共-丙烯酰胺)水凝胶在pH为2和8时表现出pH响应的溶胀-消溶行为。这种开-关转换行为使水凝胶具有控制生物活性剂递送的潜力。布洛芬(IBU),a在模拟的胃和肠pH条件下研究了水凝胶中的水溶性较差的药物。在pH 7.4时的释放比在pH 1.2时的释放要快得多,并且还研究了各种粒径的水凝胶的溶胀速率。

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