首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Fabrication of alginate-based stimuli-responsive, non-cytotoxic, terpolymric semi-IPN hydrogel as a carrier for controlled release of bovine albumin serum and 5-amino salicylic acid
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Fabrication of alginate-based stimuli-responsive, non-cytotoxic, terpolymric semi-IPN hydrogel as a carrier for controlled release of bovine albumin serum and 5-amino salicylic acid

机译:制备藻酸盐的刺激,非细胞毒性,萜烯半IPN水凝胶作为牛白蛋白血清和5-氨基水杨酸的控制释放的载体

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摘要

Herein, we report a functionalized alginate(Alg)-based terpolymeric semi-interpenetrating (semi-IPN) hydrogel, synthesized via free radical polymerization for the delivery of bovine albumin serum (BSA) and 5-amino salicylic acid (5-ASA). To improve mechanical properties, and to modulate surface morphology of Pdg, 2-hydroxyethyl acrylate (HEA) was grafted on alginate and then crosslinked using poly(ethylene glycol) diacrylate (PEGDA). The probable structure and compositions of the synthesized semi-IPN terpolymer were identified by FTIR, H-1-HRMAS NMR, and TGA analyses. Achievement of equilibrium swelling state (ESS) and higher elastic modulus values confirmed terpolymer gel formation in aqueous media. Differences in the ESS of the prepared gel at pH 2.5 and 7.4 signify its stimuli-responsive behaviour. The influence of PEGDA on swelling, mechanical properties, surface morphology, cell viability and proliferation, and BSA and 5-ASA delivery were characterized. SEM images show that higher % PEGDA resulted in smaller sized pores in the gel network. Texture analyses demonstrate that hardness, adhesiveness and chewiness of the gel were enhanced at higher PEGDA concentrations. Increases in PEGDA concentration also induced increases in osteoblastic cell viability and higher rates of cell proliferation compared with gels containing lower concentrations of PEGDA. The release results indicate that the gels containing higher concentrations of PEGDA more sustainably release BSA and 5-ASA at 5 days and 30 h, respectively. The experimental data revealed that the synthesized terpolymeric semi-IPN hydrogel may have useful biomedical applications, especially as a carrier of protein (BSA), or 5-ASA (a therapeutic option for conditions of the colon such as Crohn's Disease and Ulcerative Colitis).
机译:在此,我们报告了基于官能化的藻酸盐(ALG)的三聚酯半渗透(半IPN)水凝胶,通过自由基聚合合成,用于递送牛白蛋白血清(BSA)和5-氨基水杨酸(5-ASA)。为了改善机械性能,并调节PDG的表面形态,丙烯酸酯(HEA)在藻酸盐上接枝,然后使用聚(乙二醇)二丙烯酸酯(PEGDA)交联。通过FTIR,H-1-Hrmas NMR和TGA分析鉴定了合成的半IPN三元共聚物的可能结构和组合物。均衡肿胀状态(ESS)和更高弹性模量值的成就证实了含水介质中的三元共聚物凝胶形成。 pH 2.5和7.4在pH 2.5和7.4的凝胶中的ESS差异表示其刺激响应性行为。特征在于,PEGDA对溶胀,机械性能,表面形态,细胞活力和增殖的影响,以及BSA和5-ASA递送。 SEM图像显示较高的%PEGDA导致凝胶网络中的较小尺寸孔隙。纹理分析表明,在更高的PEGDA浓度下,凝胶的硬度,粘附性和柔软性增强。与含有较低浓度PEGDA的凝胶相比,PEGDA浓度的增加还诱导了骨细胞细胞活力和更高的细胞增殖率。释放结果表明,含有较高浓度的PEGDA的凝胶,分别在5天和30小时的5天可持续地释放BSA和5-ASA。实验数据显示,合成的萜酰基半IPN水凝胶可以具有有用的生物医学应用,尤其是蛋白质(BSA)的载体,或5-ASA(治疗选择的结肠条件,例如CroHN病和溃疡性结肠炎)。

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