Liver protection compounds of the cyclohexenone type from antrodia camphorata
a technology of cyclohexenone and liver, which is applied in the field of liver protection compounds, can solve the problems of affecting the metabolism, making i>antrodia camphorata /i>growing inside the wild even rarer, and high price of antrodia camphorata, etc., and achieves the effects of reducing the levels of alanine aminotransferase (alt) and aspartate aminotransferase (as
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example 1
Isolation of 4-hydroxy-2,3-dimethoxy-6-methyl-5(3,7,11-trimethyl-dodeca-2,6,10-trienyl)-cyclohex-2-enone
[0026]One hundred grams of mycelia, fruiting bodies or mixture of both from Antrodia camphorata were placed into a flask. A proper amount of water and alcohol (70-100% alcohol solution) was added into the flask and were stirred at 20-25° C. for at least 1 hour. The solution was filtered through a filter and a 0.45 μm membrane and the filtrate was collected as the extract.
[0027]The filtrate of Antrodia camphorata was subjected to High Performance Liquid chromatography (HPLC) analysis. The separation was performed on a RP18 column, the mobile phase consisted of methanol (A) and 0.1-0.5% acetic acid (B), with the gradient conditions of 0-10 min in 95%˜20% B, 10-20 min in 20%˜10% B, 20-35 min in 10%˜10% B, 35-40 min in 10%˜95% B, at the flow rate of 1 ml / min. The column effluent was monitored with a UV-visible detector.
[0028]The fractions collected at 25-30 min were collected and conc...
example 2
[0029]Liver Protection Tests with Cyclohexenone of Antrodia camphorata
[0030]The main causes for liver disease include virus, alcohol and chemicals. Chemical induced liver injury in rats exhibits consistent features in pathological section of human liver injury. The liver protection assessment in this study is focused on chemical induced liver injury. The effects of cyclohexenone from Antrodia camphorata on chronic liver injury of rats were evaluated through the biochemical assays of liver injury and the liver tissue section based on the chronic liver injury model of rats induced by carbon tetrachloride. Carbon tetrachloride (CCl4) causes hepatocellular necrosis, further to fibrosis and cirrhosis if not be withdrawn. The toxicity of carbon tetrachloride is activated in the liver by the cytochrome P-450 system. The initial metabolite is the trichloromethyl radical (.CCl3), which binds with protein to inhibit the protein synthesis, induces imbalanced lipid metabolism with the outcome ...
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