Department of Pharmaceutics and Biopharmaceutics, Philipps-Universität Marburg, Robert-Koch-Str. 4, 35037 Marburg, Germany.
Molecules. 2021 Jan 23;26(3):592. doi: 10.3390/molecules26030592.
Antioxidants are recommended to prevent and treat oxidative stress diseases. Plants are a balanced source of natural antioxidants, but the poor solubility of plant active molecules in aqueous media can be a problem for the formulation of pharmaceutical products. The potential of PlantCrystal technology is known to improve the extraction efficacy and antioxidant capacity (AOC) of different plants. However, it is not yet proved for plant waste. Black tea (BT) infusion is consumed worldwide and thus a huge amount of waste occurs as a result. Therefore, BT waste was recycled into PlantCrystals using small-scale bead milling. Their characteristics were compared with the bulk-materials and tea infusion, including particle size and antioxidant capacity (AOC) in-vitro. Waste PlantCrystals possessed a size of about 280 nm. Their AOC increased with decreasing size according to the DPPH (1,1-diphenyl-2-picrylhydrazyl) and ORAC (oxygen radical absorbance capacity) assays. The AOC of the waste increased about nine-fold upon nanonization, leading to a significantly higher AOC than the bulk-waste and showed no significant difference to the infusion and the used standard according to DPPH assay. Based on the results, it is confirmed that the PlantCrystal technology represents a natural, cost-effective plant-waste recycling method and presents an alternative source of antioxidant phenolic compounds.
抗氧化剂被推荐用于预防和治疗氧化应激相关疾病。植物是天然抗氧化剂的均衡来源,但植物活性分子在水介质中的溶解度差可能是药物制剂配方的一个问题。已知 PlantCrystal 技术能够提高不同植物的提取效率和抗氧化能力(AOC)。然而,对于植物废料是否适用还没有得到证实。红茶(BT) infusion 在全球范围内都有消费,因此会产生大量的废料。因此,采用小规模珠磨法将 BT 废料回收制成 PlantCrystals。将其与散装材料和茶 infusion 的特性进行了比较,包括体外粒径和抗氧化能力(AOC)。废料 PlantCrystals 的粒径约为 280nm。根据 DPPH(1,1-二苯基-2-苦基肼基)和 ORAC(氧自由基吸收能力)测定,其 AOC 随粒径减小而增加。废料的 AOC 在纳米化后增加了约九倍,导致其 AOC 明显高于散装废料,并且根据 DPPH 测定,与 infusion 和使用的标准品没有显著差异。基于这些结果,证实了 PlantCrystal 技术是一种天然的、具有成本效益的植物废料回收方法,为抗氧化酚类化合物提供了一种替代来源。