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Biostudy on Traditional Chinese Medicine Massa Medicata Fermentata

机译:在传统中国马萨马拉发酵的生物化

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Massa Medicata Fermentata (MMF) has been used for a long time by the Chinese. MMF is used widely in feed additives and human medicinal applications throughout the world; however, there have only been a few reports about the biostudy of its fermentation mechanism and medicinal ingredients. To safely use MMF, we observed the changes in the ingredients and amylase activity for several raw materials during the fermentation process of MMF. We are going to explore the basis of pharmacodynamic substances and the purpose of MMF to provide support for safe use in clinics. This biostudy data demonstrated that the ingredients such as amygdalin, benzaldehyde, and rutin were gradually degraded during the process of fermentation, and the fermented MMF did not contain amygdalin and benzaldehyde. The HPLC fingerprint of fermented MMF for 7 days is similar to the chemical composition of the original unfermented MMF with a similarity of only 0.106. Meanwhile, the activities of amylase in fermented MMF had gradually increased, and the content of organic acids also had increased. According to our biostudy, we found that the raw material chemical composition of MMF in the process of fermentation was affected by microorganisms and various substances. The conclusions of our study determined that the initial components of MMF are not identical to the pharmacodynamic components. We also conclude that amylase activity explains the pharmacological activity of MMF to a certain extent, but it is likely not the only factor. The implication not only provides the initial knowledge of MMF but also implies the further exploration of this popular traditional medicine.
机译:Massa Medicata Fermentata(MMF)已被中国人使用了很长时间。 MMF广泛用于全球饲料添加剂和人体药用应用中;然而,只有一些关于其发酵机制和药用成分的生物化的报道。为了安全使用MMF,我们在MMF发酵过程中观察了几种原料的成分和淀粉酶活性的变化。我们将探讨药效学物质的基础,以及MMF的目的,为诊所安全使用提供支持。这种生物数据证明,在发酵过程中杏仁蛋白,苯甲醛和芦丁等成分逐渐降解,发酵的MMF不含Amygdalin和苯甲醛。发酵MMF的HPLC指纹7天类似于原始未发酵MMF的化学成分,其相似仅为0.106。同时,发酵MMF中淀粉酶的活性逐渐增加,有机酸含量也增加。根据我们的生物致性,我们发现发酵过程中MMF的原料化学成分受微生物和各种物质的影响。我们的研究的结论确定了MMF的初始组分与药效学组件不相同。我们还得出结论,淀粉酶活性解释了MMF的药理活性在一定程度上,但可能不是唯一的因素。该含义不仅提供了MMF的初步知识,还意味着对这种流行的传统医学的进一步探索。

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