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Controlled release mechanism of complex bio-polymeric emulsifiers made microspheres embedded in sodium alginate based films

机译:复杂生物聚合物乳化剂的控制释放机制使嵌入藻酸钠薄膜中的微球

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Sodium alginate (SA) bio-based films embedded with cinnamon essential oil (CEO) microspheres encapsulated in complex bio-polymeric emulsifiers (CBE) were fabricated and characterized. CBE were composed of gelatin (G(o))/gum acacia (A(0)), Go/carboxymethylcellulose sodium (C-o) and G(o)/A(o)/C-o, respectively, compared with single bio-polymeric emulsifier Go as control. Emulsion morphology results suggested substantial microspheres were formed in all emulsions, and particle distribution results showed that CBE had significant influence on D [3, 2] (P < 0.05) of emulsions compared with control. FTIR spectra indicated different electrostatic interactions formed among CBE compositions, and CEO retained unchanged. SEM photographs depicted that each resulting film had an asymmetric cross-section microstructure with compact polymer-rich phase on top side (T) and porous microsphere-rich phase on bottom side (B). The diffusion coefficient (D) representing release rate of CEO increased significantly with the decrease of electrostatic interaction force among CBE. Besides, Ds of CEO releasing through T were approximately one-fourth of that though B of all films, implying length of CEO release route was also a key factor in release control. With moderate mechanical properties having been tested, the obtained bio-based SA films embedded with CBE made microspheres could be potentially applied as active packaging controlling the release rates of the encapsulated CEO for the protection of food inside: (C) 2016 Elsevier Ltd. All rights reserved.
机译:嵌入含有肉桂基精油(CEO)微球的生物酸钠(SA)生物基薄膜被制成复杂生物聚合物乳化剂(CBE)中的微球。与单一生物聚合物乳化剂相比,CBE分别由明胶(G(O))/胶(A(0)),去/羧甲基纤维素钠(CO)和G(O)/ A(O)/ Co组成作为控制。乳液形态结果表明,在所有乳液中形成了大量微球,颗粒分布结果表明,与对照相比,CBE对D [3,2](P <0.05)的乳液产生显着影响。 FTIR光谱表明CBE组合物中形成的不同静电相互作用,CEO保持不变。所描绘的SEM照片,每个所得薄膜具有不对称的横截面微结构,其顶侧(T)和底部富侧(B)上的多孔微球的相位。代表CEO释放速率的扩散系数(D)随着CBE中的静电相互作用力的降低而显着增加。此外,CEO释放到T的DS大约是所有电影的B虽然B的B,但暗示CEO释放路线的长度也是释放控制的关键因素。经过研磨的中等机械性能,所获得的生物基SA薄膜嵌入CBE制造的微球体可以作为主动包装作为控制封装CEO的释放速率用于保护食物中的释放速率:(c)2016 Elsevier Ltd.所有权利保留。

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