| Literature DB >> 25587307 |
Xian Yang1, Shui-Ping Yang2, Xue Zhang3, Xiao-Dong Yu4, Qi-Yi He4, Bo-Chu Wang5.
Abstract
The aim of this paper is to develop a rapid and highly sensitive quantitative HPLC fingerprint method with multiple indicators by using the Compound Chinese Medicine Wuwei Changyanning granule and 5 herbs in the prescription. The quantitative fingerprint chromatogram with multiple indicators was investigated. і)6 compositions included rutin, gallic acid, chlorogenic acid, atractylenolide Ⅰ, pachymic acid and apigenin, which originated from 5 herbs respectively, were selected as quantitative compositions, and their contents were determined using HPLC from 11 batches granules and the corresponding 5 medicinal materials. ⅱ) The precision, stability and repeatability of fingerprinting were investigated. In addition, common peaks number, the percentage of non-common peaks and similarity were also studied. Among them, 21 common peaks in the granule could find the source of peaks from the 5 herbs, among of 10 peaks from Niuerfeng, 9 peaks from Laliao, 3 peaks from Baishu, 3 peaks from Fuling and 5 peaks from Guanghuoxiang. The results showed that the identification method of fingerprinting was reliable.Entities:
Keywords: Common peaks number; HPLC fingerprint; The multiple indicator; The percentage of non-common peaks and similarity.; Wuwei Changyanning granule
Year: 2014 PMID: 25587307 PMCID: PMC4232784
Source DB: PubMed Journal: Iran J Pharm Res ISSN: 1726-6882 Impact factor: 1.696
Origins of samples collected and WWCYNG
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| Niuerfeng | Laliao | Baishu | Fuling | Guanghuoxiang | ||
| Y1 | Guangxi | Chongqing | Hunan | Chongqing | Hainan | C1 |
| Y2 | Guangxi | Chongqing | Sichuan | Chongqing | Hainan | C2 |
| Y3 | Guangxi | Chengdu | Zhejiang | Chongqing | Chongqing | C3 |
| Y4 | Chongqing | Hainan | Jiangxi | Hunan | Guangdong | C4 |
| Y5 | Chongqing | Hainan | Yunnan | Hubei | Guangdong | C5 |
| Y6 | Chengdu | Hainan | Chongqing | Yunnan | Guangdong | C6 |
| Y7 | Hainan | Hainan | Chongqing | Guizhou | Guangdong | C7 |
| Y8 | Guangdong | Guangdong | Chongqing | Shanxi | Guangdong | C8 |
| Y9 | Jiangxi | Guangxi | Hubei | Sichuan | Guangdong | C9 |
| Y10 | Jiangxi | Guangxi | Jiangsu | Guangxi | Guangdong | C10 |
| Y11 | Jiangxi | Jiangxi | Guangdong | Anhui | Guangdong | C11 |
Note: 11 batches WWCYNG samples are made by according crude drug samples collected.
Figure 2Chromatogram of 3 kinds of gradient elution waies in 360 nm and 273 nm Wavelength (Note: The number of 1,3 and 5 were the WWCYNG chromatograms respectively corresponding to SI, SⅡ and SⅢ under 360 nm conditions. The number of 2, 4 and 6 were the WWCYNG chromatograms respectively corresponding to SI, SⅡand SⅢ under 273 nm conditions
The gradient of mobile phase
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| 0 | 13 | 0 | 13 | 0 | 13 | 0 | 9 |
| 5 | 13 | 10 | 13 | 5 | 13 | 8 | 9 |
| 25 | 55 | 35 | 45 | 20 | 25 | 20 | 14 |
| 50 | 70 | 45 | 45 | 25 | 25 | 40 | 20 |
| 60 | 90 | 60 | 65 | 45 | 40 | 50 | 45 |
| - | - | - | - | 55 | 60 | 65 | 80 |
| - | - | - | - | 78 | 60 | 88 | 80 |
Figure 3Chromatogram of the SⅣ gradient elution way in 360 nm and 273 nm Wavelength
Linearity and recovery of 6 control compositions
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| Gallic acid, | 0.00121-0.242 | Y=895909X-255.1 | r=0.9998 | 0.01581 | 0.05271 | 100.2 | 1.21 |
| Pachymic acid | 0.00702-1.404 | Y=287622X-1876.8 | r=0.9993 | 0.0007197 | 0.002399 | 99.85 | 1.35 |
| Chlorogenic acid | 0.00053-0.106 | Y=3.0×106X-479.5 | r=0.9997 | 0.0007923 | 0.02234 | 100.3 | 0.78 |
| Rutin | 0.00516-1.032 | Y=238127X+109.35 | r=0.9999 | 0.009235 | 0.02671 | 100.6 | 0.81 |
| Atractylenolide Ⅰ | 0.0051-1.02 | Y=558512X+1412.6 | r=0.9998 | 0.00312 | 0.00994 | 99.67 | 0.69 |
| Apigenin | 0.00048-0.096 | Y=2.0×106X-283.1 | r=0.9999 | 0.00117 | 0.03562 | 99.81 | 1.65 |
a In the regression equation y=kx+m, y refers to the peak area, x is concentration of the standard substances (µg/mL), r2 is the correlation coefficient of the equation
b Standard deviation is abbreviated as SD.
C LOD (the limit of detection, S/N= 3) and LOQ (limit of quantitation, S/N= 10) were expressed in concentration unit with injection volume 10 µL.
Figure 5Peak alignment of fingerprints of granule
Figure 6Peak alignment of fingerprints of Daphniphullum calucinum Benth
Figure 10Peak alignment of fingerprints of Pogostemon cablin(Blanco)Benth
Figure 11Percentage of unmutual peak area in the total peak area about 11 batches of granules and 5 raw herbs.
The source analysis of peaks between granule and 5 raw herbs
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| WWCYNG | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | 13 | 14 | 15 | 16 | 18 | 19 | 20 | 21 |
| Niuerfeng | 1 | - | - | - | 2 | 3 | - | - | 9 | 10 | 11 | 12 | 13 | 15 | - | - | - | - | - | 19 |
| Laliao | 1 | - | 3 | 4 | 5 | - | - | 6 | - | - | - | 7 | - | - | - | 10 | 11 | - | - | 15 |
| Baishu | - | 2 | - | - | - | - | - | - | - | - | - | - | - | - | - | - | - | 7 | - | 12 |
| Fuling | - | - | - | - | 1 | - | 4 | - | - | - | - | - | - | - | - | - | - | - | - | 7 |
| Guanghuoxiang | 2 | - | - | - | 3 | - | - | - | - | - | - | - | - | - | 8 | - | - | - | 12 | 13 |