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Removing Tannins from Medicinal Plant Extracts Using an Alkaline Ethanol Precipitation Process: A Case Study of Danshen Injection

机译:碱性乙醇沉淀法从药用植物提取物中去除单宁的研究:以丹参注射液为例

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摘要

The alkaline ethanol precipitation process is investigated as an example of a technique for the removal of tannins extracted from Salviae miltiorrhizae Radix et Rhizoma for the manufacture of Danshen injection. More than 90% of the tannins can be removed. However, the recoveries of danshensu, rosmarinic acid, and salvianolic acid B were less than 60%. Total tannin removal increased as the refrigeration temperature decreased or the amount of NaOH solution added increased. Phenolic compound recoveries increased as refrigeration temperature increased or the amount of NaOH solution added decreased. When operated at a low refrigeration temperature, a relative high separation selectivity can be realized. Phenolic compound losses and tannin removal were mainly caused by precipitation. The formation of phenol salts, whose solubility is small in the mixture of ethanol and water used, is probably the reason for the precipitation. A model considering dissociation equilibrium and dissolution equilibrium was established. Satisfactory correlation results were obtained for phenolic compound recoveries and total tannin removal. Two important parameters in the model, which are the water content and pH value of alkaline supernatant, are suggested to be monitored and controlled to obtain high batch-to-batch consistency.
机译:以碱性乙醇沉淀工艺为例,该工艺是去除丹参注射液中丹参提取的单宁的技术实例。可以去除90%以上的单宁。但是,丹参素,迷迭香酸和丹酚酸B的回收率低于60%。随着制冷温度的降低或NaOH溶液的添加量的增加,单宁的总去除量增加。酚类化合物的回收率随制冷温度的升高或NaOH溶液添加量的减少而增加。当在低制冷温度下操作时,可以实现较高的分离选择性。酚类化合物的损失和单宁的去除主要是由沉淀引起的。在所用乙醇和水的混合物中溶解度较小的酚盐的形成可能是沉淀的原因。建立了考虑解离平衡和溶出平衡的模型。酚类化合物的回收率和单宁总去除率均获得了令人满意的相关结果。建议监测和控制模型中的两个重要参数,即碱性上清液的水含量和pH值,以实现批次之间的高一致性。

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