http://www.chemistrymag.org/cji/2005/07b076ne.htm |
Nov. 25, 2005 Vol.7 No.11 P.76 Copyright |
2. RESULTS AND DISCUSSION
2.1 Detection wavelength
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Fig 1
Chromatogram of standard compounds |
Fig 2
Chromatogram of the sample |
2.3 System suitability
System suitability tests were performed and chromatographic parameters were calculated
from experimental data, such as the number of theoretical plate and the resolution. The
number of theoretical plate for resorcinol was 2500 and the resolution was 3.3 between
resorcinol and the unknown compound according to the chromatogram of the sample.
2.4 Optimization of the sample preparation
Some components such as fluocinonide and borneolum syntheticum in the sample also had
ultraviolet absorption at 225nm and it interfered with the detection of the phenolic
compounds .To eliminate the interferences in the detection, the sample preparation was
optimized. The sample solution was initially only extracted with 2.0ml petroleum ether and
filtered with a syringe filter before detection . It was observed that although the sample
preparation step was simple, some components that interfered with the detection of the
phenolic compounds could not be eliminated and the reliability of the method could not be
checked. When 1.0ml distilled water was added into the solution that purified by petroleum
ether, the solution stratified evidently. The supernatant was discarded and the extracted
layer filtered. Before injected into the chromatographic system, the solutions were
diluted with mobile phase. Under the optimal chromatographic conditions, the components
that interfered with the detection were eliminated, and the concentrations of salicylic
acid, phenol and resorcinol were detected. The mechanism is likely that these phenolic
compounds are water-soluble compounds but other major components in the sample can only be
dissolved in water with the presence of other organic solvents and the addition of water
broke their capacity of dissolving in water. Thus the interferences of fluocinonide ,
borneolum syntheticum and other components in the sample solution could be eliminated.
2.5 Linear equations, correlation coefficients and detection limits
A series of working solutions were prepared by
diluting the stock solutions with mobile phase to the final concentrations and they were
detected under the optimized chromatographic conditions. The calibration graphs of the
standard compounds were found to be linear over the concentration range studied. The
linear equations and the detection limits of the three compounds are listed in Table 1.
(Y-peak area; X-the concentration of the detected compound)
Table 1 Linearity of the determination of three phenolic compounds
Components |
Linear equations |
Correlation |
Linear ranges |
Detection limits |
Salicylic acid |
Y=976.15+5930.42X |
0.9971 |
0.019-3.90 |
0.019 |
Table 2 Recoveries and assay precision
Components |
Added contents |
Determined contents |
Recoveries /% |
Mean /% |
Intra-day |
Inter-day |
Salicylic acid |
1.25 |
1.14 |
91.29 |
|||
1.57 |
1.45 |
92.25 |
92.09 |
3.34 |
2.76 |
|
1.88 |
1.74 |
92.75 |
||||
Phenol |
1.49 |
1.39 |
93.57 |
|||
1.86 |
1.73 |
93.16 |
92.84 |
0.48 |
0.77 |
|
2.24 |
2.06 |
91.79 |
||||
Resorcinol |
0.52 |
0.47 |
93.65 |
|||
0.65 |
0.61 |
91.54 |
93.03 |
1.01 |
0.88 |
|
0.78 |
0.74 |
94.97 |
2.6 Recoveries and precision
The recoveries of the method were studied .
The stock solutions of different concentrations were added in the Compound Fluocinonide
Tincture solution . Then the sample solutions were prepared with the same method as
described in 1.4 and diluted with mobile phase before detection. The
concentrations of the phenolic compounds were examined and the recoveries could be
calculated according to the linear equation. The intra-day precision of the method was
determined by preparing the sample with the same method as described in 1.4 for each
analysis and the values were detected by 5 repeated analysis in a single day. The sample
solutions were fresh daily prepared for the determination of the inter-day precision of
the method which was checked by determining each phenolic compound during 5 days. The
results are given in Table 2.
2.7 The determination of the sample
The applicability of the method for the simultaneous determination of salicylic acid,
phenol and resorcinol was verified by the determination of them in the Compound
Fluocinonide Tincture. The sample solution was prepared with the same method as described
in 1.4. Then the sample solution was diluted 40,000 times, 40
times, 200,000 times respectively with mobile phase before detection and the
concentrations of salicylic acid, phenol and resorcinol were determined by 5 repeated
analysis. The results are given in Table 3. The chromatogram of the sample is shown in Fig
2.
Table 3 Results of the determination of the sample
Components |
Marked content /% |
Average determined content /% |
Salicylic acid |
- |
4.54 |
3. CONCLUSION
REFERENCES
[1] Guo Xingjie, Zhou Mi. Chinese Journal of Chromatography (Se Pu), 1998, 16 (6) :
532-533.
[2] Yang Yaofang, Qi Jingli,He Beili et al. China
Hospital Pharmaceutical Journal (ZhongguoYiyuan Yaoxue Zazhi) ,2000,20 (9): 568-569.
[3] Pirker R, Huck CW, Popp M et al. Journal of Chromatography (B), Analytical
Technologies in the Biomedical and Life Sciences, 2004, 809 (2): 257-264.
[4] Xing Rong,Deng Ziyu,Chen Gende. China Hospital Pharmaceutical Journal (ZhongguoYiyuan
Yaoxue Zazhi),2005, 25 (3): 227-229.
[5] Franeta J T, Agbaba D, Eric S et al. IL Farmaco, 2002, 57 : 709-713.
[6] Gomez, Maria R, Olsina et al. Talanta, 2003, 61 (2): 233-238.
[7] Engelberth J, Schmelz E A, Alborn H T et al. Anal.Biochem., 2003, 312: 242.