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    Rapid identification of camellia oil mixed with four vegetable oils
    HUANG Geng-sheng, RUAN Mei, CHEN Xing-fa, BU Dan, MU Hong-tao
    HUBEI AGRICULTURAL SCIENCES    2022, 61 (21): 147-151.   DOI: 10.14088/j.cnki.issn0439-8114.2022.21.028
    Abstract708)      PDF (6245KB)(490)       Save
    In order to identify the adulteration of camellia oil, the fluorescence scanning of camellia oil mixed with four other vegetable oils was carried out based on the Front surface fluorescence technology. Different camellia oil samples were prepared with 5%, 10%, 20%, 30% and 40% as the volume gradient, respectively. The first four principal components were used to establish the discrimination model of camellia oil adulteration. The results showed that there were significant differences in fluorescence characteristics between camellia oil and the other four vegetable oils. Under the excitation wavelength of 250~380 nm and the emission wavelength of 260~550 nm, the principal component analysis was carried out by Front surface fluorescence. The total contribution rate of the first four principal components was more than 85%. Through further analysis of Fisher discriminant analysis, the adulteration recognition rate of camellia oil was as high as 100%. This method could realize the qualitative and quantitative analysis of camellia oil, and had high sensitivity and fast characteristics.
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    Establishment of quality standard for freeze-dried tablets of Polygonatum sibiricum Delar. ex Redoute and study on the anti-tumor activity of diosgenin
    XU Yu-sheng, GAO Ming-ju, ZHAO Ning-dong, HUANG Zai-qiang, TAIN Ying-qiu, HU Zhan-yu, YU Zheng-yong
    HUBEI AGRICULTURAL SCIENCES    2022, 61 (13): 133-137.   DOI: 10.14088/j.cnki.issn0439-8114.2022.13.025
    Abstract605)      PDF (2237KB)(554)       Save
    The freeze-dried powder samples of Polygonatum sibiricum Delar. ex Redoute from 4 different producing areas were used as materials, with reference to the quality standard of Polygonatum sibiricum Delar. ex Redoute in the 2020 edition of Chinese Pharmacopoeia. The total ash content was determined by the total ash determination method, the moisture content was determined by the drying method, the extract content was determined by the hot immersion method, the total sugar content was determined by the 0.2% anthrone-sulfuric acid method, and the diosgenin was determined by the HPLC method. The antitumor activities of diosgenin against A431 (human epidermal cancer cells), H1975 (human lung adenocarcinoma cells) and Ramos (human B lymphocyte tumor cells) were investigated by the MTT method. The results showed that the moisture content of the samples was 2.8%~4.7% (not more than 18.0%), the total ash content was 1.9%~3.4%(not more than 4.0%), the alcohol soluble extract was 72.99%~78.99%, (not less than 45.0%), and the total sugar was 7.95%~9.94% (not less than 7.0%). The lowest content of diosgenin was 0.18%, and diosgenin was significantly resistant to A431. The established content determination method was simple, accurate and reproducible.
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