A kind of high-performance liquid chromatography method for determination of dihydroartemisinin content
A high-performance liquid chromatography and dihydroartemisinin technology, applied in the direction of measuring devices, instruments, scientific instruments, etc., to achieve the effects of stable sum of double peak areas, good reproducibility, and improved accuracy and reliability
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Embodiment 1
[0028] Precisely weigh 25.22mg of dihydroartemisinin reference substance, put it in a 25ml measuring bottle, add an appropriate amount of acetonitrile-water (60:40), dissolve it by ultrasonic treatment, dilute to the mark, shake well, and use it as the test solution; Inject 20 μl into the liquid chromatograph and record the chromatogram. Octadecylsilane bonded silica gel (CAPCELL PAK C18MGⅡ, 100mm×4.6mm, 3μm) was used as filler; acetonitrile-water (60︰40) was used as mobile phase; detection wavelength was 216nm; flow rate was 0.6ml / min. The chromatographic peak area of dihydroartemisinin was measured at 0min, 10min, and 20min respectively, and the high-performance liquid chromatogram is as follows Figure 1~3 shown. The chromatographic peaks of dihydroartemisinin all showed double peaks. according to Figure 1~3 Calculate the RSD% of the sum of the chromatographic peak areas and the RSD% of the ratio of the chromatographic peak areas, and the results are shown in Table 1....
Embodiment 2
[0032] Accurately weigh 40.12 mg of dihydroartemisinin reference substance, put it in a 10ml measuring bottle, add an appropriate amount of dimethyl sulfoxide, shake to dissolve, dilute to the mark, shake well, and use it as the test solution; accurately measure 5 μl of injection solution Phase chromatograph, record the chromatogram. Octadecylsilane bonded silica gel (CAPCELL PAK C18MGⅡ, 100mm×4.6mm, 3μm) was used as filler; acetonitrile-water (60︰40) was used as mobile phase; detection wavelength was 216nm; flow rate was 0.6ml / min. The chromatographic peak area of dihydroartemisinin was measured at 0min, 10min, and 20min respectively, and the high-performance liquid chromatogram is as follows Figure 4~6 shown. The chromatographic peak of dihydroartemisinin was doublet. according to Figure 4~6 Calculate the RSD% of the sum of the chromatographic peak areas and the RSD% of the ratio of the chromatographic peak areas, and the results are shown in Table 2. It can be seen ...
Embodiment 3
[0036] Accurately weigh 40.33 mg of dihydroartemisinin raw material drug sample, put it in a 10ml measuring bottle, add an appropriate amount of dimethyl sulfoxide, shake to dissolve, dilute to the mark, shake well, and use it as a test solution; accurately measure 5 μl Inject into the liquid chromatograph and record the chromatogram. Octadecylsilane bonded silica gel (EC100 / 4.6NUCLEOSIL100-3C18, 3μm, 4.6×100mm) was used as filler; acetonitrile-water (60︰40) was used as mobile phase; detection wavelength was 216nm; flow rate was 0.6ml / min. Samples were injected at 0 min, 10 min, and 20 min to measure the chromatographic peak area of dihydroartemisinin. The chromatographic peak of dihydroartemisinin was double-peaked, and the sum of the peak areas was stable. The calculated RSD% of the chromatographic peak area was 0.45 %.
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