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Antioxidant activity evaluation of new dosage forms as vehicles for dehydrated vegetables.

机译:新剂型作为脱水蔬菜载体的抗氧化活性评估。

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A dehydrated vegetables mixture loaded in four pharmaceutical dosage forms as powder, effervescent granulate, sugar granulate and gumdrops were investigated for their antioxidant capacity using 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulphonic acid) radical scavenging capacity assay, oxygen radical absorbance capacity assay and ferric reducing antioxidant potential assay. Total phenolic content of dehydrated vegetables powder mixture was also measured by the Folin-Ciocalteu method, so as to evaluate its contribution to their total antioxidant function. The effect of different temperatures on stability of these systems after 90 days storage was also evaluated. These formulations presented strong antioxidant properties and high phenolic content (279 mg gallic acid equivalent/g of sample) and thus could be potential rich sources of natural antioxidants. Antioxidant properties differed significantly among selected formulations (p<0.05). Generally, the losses were lower in samples stored under refrigeration. To interpret the antioxidant properties a kinetic approach was performed. Degradation kinetics for the phenolic content and antioxidant capacity followed a zero-order function. Effervescent granulate was the formulation which underwent faster degradation. Contrary, sugar granulate and gumdrops were much more slowly. Time required to halve the initial amount of phenolic compounds was 589+or-45 days for samples stored at 4 degrees C, and 312+or-16 days for samples stored at room temperature. These developed dosage forms are new and innovative approach for vegetable intakes in population with special requirements providing an improvement in the administration of vegetables and fruits.
机译:使用2,2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸)自由基清除能力试验研究了以四种药物剂型(粉末,泡腾颗粒,糖颗粒和胶滴剂)装载的脱水蔬菜混合物的抗氧化能力,氧自由基吸收能力测定和还原性三氧化二铁电位测定。还通过Folin-Ciocalteu方法测量了脱水蔬菜粉混合物中的总酚含量,以评估其对总抗氧化功能的贡献。还评估了存储90天后不同温度对这些系统稳定性的影响。这些配方具有很强的抗氧化剂性能和较高的酚含量(279 mg没食子酸当量/ g样品),因此可能是天然抗氧化剂的潜在丰富来源。在选定的配方中,抗氧化性能差异显着(p <0.05)。通常,在冷藏下存储的样品中的损失较低。为了解释抗氧化剂性能,进行了动力学方法。酚含量和抗氧化能力的降解动力学遵循零级函数。泡腾颗粒是经历更快降解的制剂。相反,糖颗粒和胶滴要慢得多。将最初的酚类化合物量减半所需的时间对于在4摄氏度下存储的样品是589 + -45天,对于在室温下存储的样品是312+或-16天。这些开发的剂型是针对特殊人群中蔬菜摄入量的新的创新方法,可改善蔬菜和水果的管理。

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