Analysis of Quality Value Transmitting of Volatile Oil in Bran-processed Atractylodes lancea and Its Standard Decoction with Different Physicochemical Forms
|更新时间:2023-05-16
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Analysis of Quality Value Transmitting of Volatile Oil in Bran-processed Atractylodes lancea and Its Standard Decoction with Different Physicochemical Forms
增强出版
Chinese Journal of Experimental Traditional Medical FormulaeVol. 29, Issue 12, Pages: 168-174(2023)
GUO Xiuli,SONG Chengcheng,XIAO Yangxin,et al.Analysis of Quality Value Transmitting of Volatile Oil in Bran-processed Atractylodes lancea and Its Standard Decoction with Different Physicochemical Forms[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(12):168-174.
GUO Xiuli,SONG Chengcheng,XIAO Yangxin,et al.Analysis of Quality Value Transmitting of Volatile Oil in Bran-processed Atractylodes lancea and Its Standard Decoction with Different Physicochemical Forms[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(12):168-174. DOI: 10.13422/j.cnki.syfjx.20221247.
Analysis of Quality Value Transmitting of Volatile Oil in Bran-processed Atractylodes lancea and Its Standard Decoction with Different Physicochemical Forms增强出版
To study the differences in volatile oil content of bran-processed
Atractylodes lancea
and its standard decoction concentrate and freeze-dried powder, as well as the differences in the types and contents of chemical components in volatile oil, and to clarify the quality value transmitting.
Method
2
Ten batches of
A. lancea
rhizoma were collected and prepared into raw products and bran-processed products of
A. lancea
, standard decoction concentrate and freeze-dried powder of bran-processed
A. lancea
in order to extract the volatile oil, and the transfer rate of volatile oil in each sample was calculated. Quantitative analysis of the main chemical components(
β
-eudesmol, atractylon, atractylodin) in each volatile oil was performed by gas chromatography(GC) on the HP-5 quartz capillary column(0.32 mm×30 m, 0.25 μm) with a flame ionization detector(FID), a split ratio of 10∶1 and a temperature program(initial temperature at 80 ℃, hold for 1 min, rise to 150 ℃ at 10 ℃·min
-1
, hold for 10 min, rise to 155 ℃ at 0.5 ℃·min
-1
, hold for 5 min, rise to 240 ℃ at 8.5 ℃·min
-1
, hold for 8 min). Cluster analysis and principal component analysis(PCA) were used to explore the overall differences in types and contents of chemical components between the standard decoction concentrate and freeze-dried powder.
Result
2
The transfer rates of volatile oil in the bran-processed products, standard decoction concentrate and freeze-dried powder were 70.51%, 1.57% and 40.90%, respectively. The average transfer rates of
β
-eudesmol, atractylon and atractylodin in the volatile oil of bran-processed
A. lancea
were 58.45%, 48.49% and 55.64%, respectively. In the standard decoction concentrate, only
β
-eudesmol and atractylodin were detected, and their average transfer rates were 0.22% and 0.10%, respectively. And only
β
-eudesmol was detected in the freeze-dried powder with the average transfer rate of 8.37%. The results of cluster analysis and PCA showed that there are obvious differences in the types and contents of chemical components between the standard decoction concentrate and freeze-dried powder.
Conclusion
2
The quality value transmitting between bran-processed
A. lancea
and its standard decoction concentrate and freeze-dried powder is stable, and if the freeze-dried powder is selected as the reference material of dispensing granules, appropriate amount of volatile oil should be added back to make it consistent with the quality of the standard decoction concentrate.
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DONG Y , ZHANG X , YAO C , et al . Atractylodin attenuates the expression of MUC5AC and extracellular matrix in lipopolysaccharide-induced airway inflammation by inhibiting the NF- κ B pathway [J]. Environ Toxicol , 2021 , 36 ( 9 ): 1911 - 1922 .
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Related Author
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Related Institution
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