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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Reduction-responsive monoolein cubic phase containing hydrophobically modified poly(ethylene imine) and dithiodipropionic acid
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Reduction-responsive monoolein cubic phase containing hydrophobically modified poly(ethylene imine) and dithiodipropionic acid

机译:含有疏水改性的聚亚乙基亚胺和二硫代二丙酸的还原反应型单油精立方相

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Reduction-responsive MO cubic phase was prepared by including hydrophobically modified poly(ethylene imine) (HmPEI) and dithiodipropionic acid(DTPA) in the water channel of cubic phase. HmPEI(1:2) and HmPEI(1:5) were synthesized by a condensation reaction using reaction mixtures whose hexanoyl chloride to PEI molar ratio was 1:2 and 1:5, respectively. On the H-1 NMR spectrum, the PEI to hexanoyl chloride molar ratio of HmPEI(1:2) and HmPEI(1:5) was evaluated to be 1:1.0 and 1:5.1, respectively. The light scattering intensity of PEI solution was negligible, but the light scattering intensity of HmPEI solution was significantly high, possibly due to the micellization. On the plot of concentration-dependent air/water interfacial tension, HmPEI with more hydrocarbon chains (HmPEI(1:5)) showed lower minimum interfacial tension and higher surface activity. MO cubic phases containing HmPEI and DTPA were prepared by hydrating MO melt with the mixture aqueous solution of HmPEI and DTPA. The cubic phases exhibited lamellar bilayers on TEM photos, and HmPEI and DTPA had little effect on the lamellar structure. The phase transition temperature of MO cubic phase, determined by polarized optical microscopy, was about 63.5 degrees C, and HmPEI and DTPA had no significant effect on the phase transition temperature. This was in accordance with the result obtained with differential scanning calorimetry. The release profiles of Auramine O loaded in MO cubic phase containing HmPEI and DTPA resembled 1st order release. The release degree increased upon the addition of dithiothreitol, possibly because the disulfide bond of DTPA was cleaved and the network of HmPEI and DTPA was broken down by the reducing agent. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过在立方相的水通道中包含疏水改性的聚亚乙基亚胺(HmPEI)和二硫代二丙酸(DTPA)来制备还原反应型MO立方相。通过缩合反应使用己酰氯与PEI摩尔比分别为1:2和1:5的反应混合物进行缩合反应合成HmPEI(1:2)和HmPEI(1:5)。在H-1 NMR光谱上,HmPEI(1:2)和HmPEI(1:5)的PEI与己酰氯的摩尔比分别为1:1.0和1:5.1。 PEI溶液的光散射强度可以忽略不计,但HmPEI溶液的光散射强度却很高,这可能是由于胶束作用。在浓度相关的空气/水界面张力图中,具有更多烃链的HmPEI(HmPEI(1:5))显示出较低的最小界面张力和较高的表面活性。通过用HmPEI和DTPA的混合水溶液水合MO熔体来制备含有HmPEI和DTPA的MO立方相。立方相在TEM照片上显示出层状双层,而HmPEI和DTPA对层状结构影响很小。通过偏振光学显微镜确定的MO立方相的相变温度为约63.5℃,并且HmPEI和DTPA对相变温度没有显着影响。这与通过差示扫描量热法获得的结果一致。负载在含有HmPEI和DTPA的MO立方相中的Auramine O的释放曲线类似于一阶释放。加入二硫苏糖醇可增加释放度,这可能是因为DTPA的二硫键断裂,HmPEI和DTPA的网络被还原剂破坏了。 (C)2016 Elsevier B.V.保留所有权利。

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