Khoshakhlagh Khadije, Koocheki Arash, Mohebbi Mohebbat, Allafchian Alireza
Department of Food Science and Technology, Ferdowsi University of Mashhad (FUM), PO Box: 91775-1163, Mashhad, Iran.
Department of Food Science and Technology, Ferdowsi University of Mashhad (FUM), PO Box: 91775-1163, Mashhad, Iran.
J Colloid Interface Sci. 2017 Mar 15;490:562-575. doi: 10.1016/j.jcis.2016.11.067. Epub 2016 Nov 21.
In this study, the feasibility of developing Alyssum homolocarpum seed gum (AHSG) nanocapsules containing d-limonene by electrospraying has been investigated. d-limonene emulsions with constant AHSG (0.5% w/w) and various flavor concentrations (10-30% based on gum weight) with 0.1% Tween 20 were electrosprayed at 20kV and 0.1ml/h of flow rate. The effects of key parameters of emulsions (rheological properties, droplet size, surface tension and electrical conductivity) on the morphology of structures have been studied. The morphology of nanocapsules had strong dependency on solution properties. The aggregated irregular shaped nanoparticles were obtained from electrospraying of AHSG solution. After incorporation of 10 and 20% d-limonene, spherical nanocapsules were yielded. However, morphology of nanocapsules changed to nanofibers by increasing the flavor content to 30%. The encapsulation efficiency for 10 and 20% d-limonene loaded nanocapsules was around 87-93%. Attenuated total reflectance-fourier transform infrared spectroscopy (ATR-FTIR), X-ray diffraction (XRD), differential scanning calorimetry (DSC), and thermogravimetric analysis (TGA) were also employed to study the physicochemical characteristics of nanocapsules. These experiments provided evidences that electrosprayed AHSG nanoparticles introduce a novel and efficient carrier for encapsulation of bioactive ingredients.
在本研究中,已对通过电喷雾法制备含d-柠檬烯的庭荠属种子胶(AHSG)纳米胶囊的可行性进行了研究。将含有恒定AHSG(0.5% w/w)、不同风味剂浓度(基于胶的重量为10%-30%)以及0.1%吐温20的d-柠檬烯乳液在20kV电压和0.1ml/h流速下进行电喷雾。研究了乳液的关键参数(流变学性质、液滴尺寸、表面张力和电导率)对结构形态的影响。纳米胶囊的形态强烈依赖于溶液性质。从AHSG溶液的电喷雾中获得了聚集的不规则形状纳米颗粒。加入10%和20%的d-柠檬烯后,得到了球形纳米胶囊。然而,当风味剂含量增加到30%时,纳米胶囊的形态变为纳米纤维。负载10%和20% d-柠檬烯的纳米胶囊的包封效率约为87%-93%。还采用衰减全反射傅里叶变换红外光谱(ATR-FTIR)、X射线衍射(XRD)、差示扫描量热法(DSC)和热重分析(TGA)来研究纳米胶囊的物理化学特性。这些实验证明,电喷雾AHSG纳米颗粒为生物活性成分的包封引入了一种新型高效载体。