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首页> 外文期刊>International Journal of Pharmaceutics >Genipin-crosslinked casein hydrogels for controlled drug delivery.
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Genipin-crosslinked casein hydrogels for controlled drug delivery.

机译:Genipin交联的酪蛋白水凝胶可控制药物输送。

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Recent advances in hydrogel technology have focused on finding more biocompatible, non-toxic materials intended for pharmaceutical and biomedical applications. In this study, naturally occurring genipin was used for the first time to crosslink casein protein in aqueous system for the formation of novel hydrogel materials. For aqueous 8.0 wt% casein solution, its gelation in the presence of genipin was investigated by time sweep rheometric measurements. With the increase of genipin amount from 2.5 to 10.0 mmol/L, the gelation time decreased from 119.8. to 18.5 min when the reaction temperature was kept to be 35 degrees C. With the increase of the reaction temperature from 35 to 50 degrees C, the gelation time decreased from 44.7 to 27.6 min when genipin concentration was kept to be 5.0 mmol/L. The apparent activation energy was determined to be 28.6 kJ/mol according to the Arrhenius equation. Moreover, the mechanical strength of the crosslinked casein hydrogel could be tuned by the amount of genipin. (13)C NMR analyses confirmed the crosslinking reaction between casein and genipin. For the resultant casein hydrogels, their swelling characteristics and in vitro release profiles of bovine serum albumin (BSA) were studied in simulated gastrointestinal tract conditions (pH 1.2 and pH 7.4). At pH 1.2, the swelling ratio of the hydrogel and the release amount of the entrapped BSA were relatively low. However, high amounts of the swelling and BSA release could be observed at pH 7.4. The release behavior could be related to various crosslinking and swelling degrees of the hydrogel networks formed by various amounts of genipin. It is suggested that the genipin-crosslinked casein hydrogel might be a suitable polymeric carrier for protein drug delivery in the intestine.
机译:水凝胶技术的最新进展集中于寻找更多的生物相容性,无毒材料,旨在用于制药和生物医学应用。在这项研究中,首次使用天然的Genipin交联水系统中的酪蛋白,以形成新型水凝胶材料。对于8.0重量%的酪蛋白水溶液,通过时间扫描流变测定法研究了在存在京尼平的情况下其凝胶化。随着Genipin量从2.5增加到10.0 mmol / L,胶凝时间从119.8减少。当将反应温度保持在35℃时,凝胶化时间从18.5min降低至18.5min。随着将反应温度从35℃升高至50℃,当将genipin浓度保持为5.0mmol / L时,胶凝时间从44.7min降低至27.6min。根据Arrhenius方程确定表观活化能为28.6kJ / mol。而且,交联的酪蛋白水凝胶的机械强度可以通过genipin的量来调节。 (13)C NMR分析证实酪蛋白与京尼平之间的交联反应。对于所得的酪蛋白水凝胶,在模拟胃肠道条件(pH 1.2和pH 7.4)下研究了牛血清白蛋白(BSA)的溶胀特性和体外释放曲线。在pH 1.2时,水凝胶的溶胀率和捕获的BSA的释放量相对较低。但是,在pH 7.4下可以观察到大量的溶胀和BSA释放。释放行为可能与由各种量的京尼平形成的水凝胶网络的各种交联和溶胀度有关。有人指出,Genipin交联的酪蛋白水凝胶可能是合适的聚合物载体,可在肠道内输送蛋白质药物。

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