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Effect Of Complexation Conditions On Xanthan-chitosan Polyelectrolyte Complex Gels

机译:络合条件对黄原-壳聚糖聚电解质复合凝胶的影响

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摘要

Polyelectrolyte hydrogels formed by xanthan gum and chitosan can be used for encapsulation and controlled release of food ingredients, cells, enzymes, and therapeutic agents. In this study, xanthan-chitosan microcapsules were formed by complex coacervation. The effects of initial polymer concentration and chitosan solution pH on the crosslinking density of xanthan-chitosan network were investigated by swelling studies and modulated differential scanning calorimetry (MDSC) analysis. The crosslinking density was found to be less dependent on chitosan solution concentration than xanthan solution concentration and chitosan pH. The capsules were completely crosslinked at all conditions studied when initial xanthan solution concentration was 1.5% (w/v). The changes in the conformation of chitosan chains as chitosan pH approaches 6.2 were found to be important in achieving capsule network structures with different crosslinking densities. These findings indicate that the parameters studied cannot be viewed as independent parameters, as their effects on the degree of swelling are interdependent.
机译:由黄原胶和壳聚糖形成的聚电解质水凝胶可用于包封和控制释放食品成分,细胞,酶和治疗剂。在这项研究中,黄原胶-壳聚糖微胶囊是通过复杂凝聚形成的。通过溶胀研究和调制差示扫描量热法(MDSC)分析研究了初始聚合物浓度和壳聚糖溶液pH对黄原胶-壳聚糖网络交联密度的影响。发现交联密度对壳聚糖溶液浓度的依赖性小于黄原胶溶液浓度和壳聚糖pH。当最初的黄原胶溶液浓度为1.5%(w / v)时,在所有研究的条件下,胶囊都完全交联。已发现,随着壳聚糖pH值接近6.2,壳聚糖链构象的变化对于获得具有不同交联密度的胶囊网络结构很重要。这些发现表明,所研究的参数不能视为独立的参数,因为它们对膨胀程度的影响是相互依赖的。

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