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Monodisperse aqueous microspheres encapsulating high concentration of l-ascorbic acid: insights of preparation and stability evaluation from straight-through microchannel emulsification

机译:包封高浓度l-抗坏血酸的单分散水性微球:通过直接微通道乳化制备和稳定性评估的见解

摘要

Stabilization of l-ascorbic acid (⌊-AA) is a challenging task for food and pharmaceutical industries. The study was conducted to prepare monodisperse aqueous microspheres containing enhanced concentrations of ⌊-AA by using microchannel emulsification (MCE). The asymmetric straight-through microchannel (MC) array used here constitutes 11 × 104 μm microslots connected to a 10 μm circular microholes. 5-30% (w/w) ⌊-AA was added to a Milli-Q water solution containing 2% (w/w) sodium alginate and 1% (w/w) magnesium sulfate, while the continuous phase constitutes 5% (w/w) tetraglycerol condensed ricinoleate in water-saturated decane. Monodisperse aqueous microspheres with average diameters (dav) of 18.7-20.7 μm and coefficients of variation (CVs) below 6% were successfully prepared via MCE regardless of the ⌊-AA concentrations applied. The collected microspheres were physically stable in terms of their dav and CV for >10 days of storage at 40°C. The aqueous microspheres exhibited ⌊-AA encapsulation efficiency exceeding 70% during the storage.
机译:对食品和制药行业来说,稳定l-抗坏血酸(α-AA)是一项艰巨的任务。进行了研究,以通过使用微通道乳化(MCE)制备浓度提高的α-AA的单分散水性微球。此处使用的非对称直通微通道(MC)阵列构成了连接到10μm圆形微孔的11 x 104μm微缝隙。将5-30%(w / w)的⌊-AA添加到含有2%(w / w)海藻酸钠和1%(w / w)硫酸镁的Milli-Q水溶液中,而连续相则占5%( w / w)在水饱和癸烷中的四甘油缩合蓖麻油酸酯。无论使用哪种⌊-AA浓度,均可以通过MCE成功制备平均直径(dav)为18.7-20.7μm,变异系数(CVs)低于6%的单分散水微球。收集到的微球的dav和CV在40°C储存> 10天时在物理上是稳定的。在贮存过程中,含水微球的β-AA包封率超过70%。

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