ZHENG Guijuan, LUO Jianqun, NAN Zhandong, et al. Preparation of Compound Selenium-enriched Plant Solid Beverage and Its Biological Activities[J]. Science and Technology of Food Industry, 2023, 44(24): 341−348. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023020216.
Citation: ZHENG Guijuan, LUO Jianqun, NAN Zhandong, et al. Preparation of Compound Selenium-enriched Plant Solid Beverage and Its Biological Activities[J]. Science and Technology of Food Industry, 2023, 44(24): 341−348. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023020216.

Preparation of Compound Selenium-enriched Plant Solid Beverage and Its Biological Activities

More Information
  • Received Date: February 21, 2023
  • Available Online: October 17, 2023
  • A functional compound selenium-enriched plant solid beverage was successfully developed by taking the selenium-enriched medicinal and edible plants Brassica oleracea, Pueraria lobata, Ampelopsis grossedentata, Polygonatum sibiricum, Chaenomeles sinensis, and tomato as the materials. At the meantime, its biological activities including antiproliferative, antioxidant, and analgesic activities were evaluated. The total selenium content of the compound solid beverage was determined by fluorescence spectrophotometry as 540±30.12 μg/kg. The biological results showed that the compound selenium-enriched plant solid beverage inhibited the proliferation of four cancerous cell lines A549, SMMC-7721, MCF-7, and SW480 with the inhibition values of 4.09%±1.36%, 19.48%±3.18%, 30.75%±1.45%, and 18.20%±1.12%, respectively, and had no cytotoxicity to the human normal lung epithelial cell BEAS-2B at a concentration of 100 μg/mL, indicating its antiproliferative effect against cancer cells in vitro. The compound solid beverage had a clearance ability of DPPH radical at a concentration-dependent manner with an IC50 value of 435.6±27.2 μg/mL. The compound solid beverage reduced the H2O2-induced oxidative damage and the intracellular reactive oxygen fluorescence intensity in LO2 cells, and presented a dose-effect relationship within a concentration of 5~20 μg/mL, revealing its obvious antioxidant activity (P<0.01). Additionally, the compound plant selenium solid beverage exhibited significant analgesic activity at the high-dose of 250 mg/kg with an inhibition rate of 92.3% (P<0.001), which was equivalent to that of the positive drug morphine (5 mg/kg). The research results could lay a foundation for further development of the compound selenium-rich plant solid drink.
  • [1]
    VINCETI M, FILIPPINI T, WISE L A. Environmental selenium and human health:An update[J]. Current Environmental Health Reports,2018,5(4):464−485. doi: 10.1007/s40572-018-0213-0
    [2]
    KIELISZEK M, BLAZEJAK S. Current knowledge on the importance of Selenium in food for living organisms:A review[J]. Molecules,2016,21(5):609. doi: 10.3390/molecules21050609
    [3]
    黄韬睿, 郑立新, 雷健, 等. 红心火龙果富硒红茶复合饮料加工工艺[J]. 食品工业,2022,43(5):25−28. [HUANG T R, ZHENG L X, LEI J, et al. The processing technology of compound beverage with red pitaya and Selenium enriched black tea[J]. The Food Industry,2022,43(5):25−28.]

    HUANG T R, ZHENG L X, LEI J, et al. The processing technology of compound beverage with red pitaya and Selenium enriched black tea[J]. The Food Industry, 2022, 43(5): 25−28.
    [4]
    张勇胜, 李仁兰, 刘妍, 等. 硒对人体健康作用的研究进展[J]. 内科,2018,13(4):623−625,662. [ZHANG Y S, LI R L, LIU Y, et al. Research progress on effects of selenium on human health[J]. Internal Medicine,2018,13(4):623−625,662.]

    ZHANG Y S, LI R L, LIU Y, et al. Research progress on effects of selenium on human health[J]. Internal Medicine, 2018, 13(4): 623−625,662.
    [5]
    房敏. 慢型克山病与扩张型心肌病患者血液微量元素测定研究[J]. 中西医结合心血管病电子杂志,2018,6(16):85. [FANG M. Blood trace element determination study in patients with chronic Creutzfeldt-Jakob disease and dilated cardiomyopathy[J]. Cardiovascular Disease Electronic Journal of Integrated Traditional Chinese and Western Medicine,2018,6(16):85.]

    FANG M. Blood trace element determination study in patients with chronic Creutzfeldt-Jakob disease and dilated cardiomyopathy[J]. Cardiovascular Disease Electronic Journal of Integrated Traditional Chinese and Western Medicine, 2018, 6(16): 85.
    [6]
    慧香, 吕晓超, 封雪. 富硒食品中硒元素测定方法对比和创新研究[J]. 食品安全导刊,2022,343(14):178−180. [HUI X, LÜ X C, FENG X. Comparative and innovative study on determination methods of selenium in selenium rich foods[J]. China Food Safety Magazine,2022,343(14):178−180.]

    HUI X, LÜ X C, FENG X. Comparative and innovative study on determination methods of selenium in selenium rich foods[J]. China Food Safety Magazine, 2022, 343(14): 178−180.
    [7]
    EBRAHIMI N, HARTIKAINEN H, HAJIBOLAND R, et al. Uptake and remobilization of selenium in Brassica napus L. plants supplied with selenate or selenium-enriched plant residues[J]. Journal of Plant Nutrition Soil Science,2018,182(2):196−202.
    [8]
    黄亚涛, 雷宁宇, 范蓓, 等. 硒对农产品营养品质的影响[J]. 农产品质量与安全,2021,110(2):80−87. [HUANG Y T, LEI N Y, FAN B, et al. Effect of selenium on nutrient quality of agricultural products[J]. Quality and Safety of Agro-Products,2021,110(2):80−87.]

    HUANG Y T, LEI N Y, FAN B, et al. Effect of selenium on nutrient quality of agricultural products[J]. Quality and Safety of Agro-Products, 2021, 110(2): 80−87.
    [9]
    陈洋洋, 程水源. 世界硒都—湖北恩施硒加工企业发展现状与对策研究[J]. 科技促进发展,2021,17(10):1851−1857. [CHEN Y Y, CHEN S Y. Research on the development status and countermeasures of Selenium processing enterprises in Enshi perfecture (Known as the selenium capital of the world), Hubei province[J]. Science & Technology for Development,2021,17(10):1851−1857.]

    CHEN Y Y, CHEN S Y. Research on the development status and countermeasures of Selenium processing enterprises in Enshi perfecture (Known as the selenium capital of the world), Hubei province[J]. Science & Technology for Development, 2021, 17(10): 1851−1857.
    [10]
    王宏达, 孙萍, 李晓丹, 等. 西兰花热风干燥特性及品质研究[J]. 食品安全质量检测学报,2022,13(1):182−189. [WANG H D, SUN P, LI X D, et al. Study on hot air drying characteristics and quality of Brassica oleracea L. var italica Planch[J]. Journal of Food Safety & Quality,2022,13(1):182−189.]

    WANG H D, SUN P, LI X D, et al. Study on hot air drying characteristics and quality of Brassica oleracea L. var italica Planch[J]. Journal of Food Safety & Quality, 2022, 13(1): 182−189.
    [11]
    南占东, 于斌武, 赵静, 等. 恩施富硒西兰花产品营养成分分析[J]. 中国果蔬,2020,40(9):46−48,55. [NAN Z D, YU B W, ZHAO J, et al. Nutrient analysis of products develop with selenium-rich broccoli in Enshi[J]. China Fruit & Vegetable,2020,40(9):46−48,55.]

    NAN Z D, YU B W, ZHAO J, et al. Nutrient analysis of products develop with selenium-rich broccoli in Enshi[J]. China Fruit & Vegetable, 2020, 40(9): 46−48,55.
    [12]
    南占东, 赵静, 杨新旋, 等. 葛的有效成分及功能食品开发探讨[J]. 南方农业,2021,15(1):12−15. [NAN Z D, ZHAO J, YANG X X, et al. Discussion on the effctive ingredients and functional food of Pueraria lobate[J]. South China Agriculture,2021,15(1):12−15.]

    NAN Z D, ZHAO J, YANG X X, et al. Discussion on the effctive ingredients and functional food of Pueraria lobate[J]. South China Agriculture, 2021, 15(1): 12−15.
    [13]
    LI Y, KUMAR P S, TAN S Q, et al. Anticancer and antibacterial flavonoids from the callus of Ampelopsis grossedentata; A new weapon to mitigate the proliferation of cancer cells and bacteria[J]. RSC Advances,2022,12:24130−24138. doi: 10.1039/D2RA03437A
    [14]
    袁名远, 刘玉, 黄东海, 等. 响应面优化复合藤茶固体饮料研究[J]. 食品科技,2021,46(8):96−103. [YUAN M Y, LIU L, HUANG D H, et al. Optimization of compound Ampelopsis grossdendata solid beverage by response surfuce methodology[J]. Food Science and Technology,2021,46(8):96−103.]

    YUAN M Y, LIU L, HUANG D H, et al. Optimization of compound Ampelopsis grossdendata solid beverage by response surfuce methodology[J]. Food Science and Technology, 2021, 46(8): 96−103.
    [15]
    王丹丹. 西红柿黄瓜胡萝卜复合饮料的研制[J]. 太原师范学院学报(自然科学版),2019,18(4):93−96. [WANG D D. Preparation of compound beverage of tomato cucumber and carrot[J]. Journal of Taiyuan Normal University (Natural Science Edition),2019,18(4):93−96.]

    WANG D D. Preparation of compound beverage of tomato cucumber and carrot[J]. Journal of Taiyuan Normal University (Natural Science Edition), 2019, 18(4): 93−96.
    [16]
    彭祚全. 恩施州富有机硒食品现状及评价[J]. 微量元素与健康研究,2018,35(2):45−46,48. [PENG Z Q. Status and evaluation of selenium-rich foods in Enshi Prefecture[J]. Studies of Trace Elements and Health,2018,35(2):45−46,48.]

    PENG Z Q. Status and evaluation of selenium-rich foods in Enshi Prefecture[J]. Studies of Trace Elements and Health, 2018, 35(2): 45−46,48.
    [17]
    辛二旦, 张爱霞, 司昕蕾, 等. 植物饮品保健作用探究进展[J]. 中兽医医药杂志,2018,37(5):94−96. [XIN E D, ZHANG A X, SI X L, et al. Progressin research on health function of plant beverages[J]. Journal of Traditional Chinese Veterinary Medicine,2018,37(5):94−96.]

    XIN E D, ZHANG A X, SI X L, et al. Progressin research on health function of plant beverages[J]. Journal of Traditional Chinese Veterinary Medicine, 2018, 37(5): 94−96.
    [18]
    胡婷, 吴文良, 赵桂慎, 等. 我国富硒农产品及食品标准体系发展与展望[J]. 中国标准化,2019,547(11):136−144. [HU T, WU W L, ZHAO G S, et al. Development and prospect of selenium-enriched agricultural products and food standards in China[J]. China Standardization,2019,547(11):136−144.]

    HU T, WU W L, ZHAO G S, et al. Development and prospect of selenium-enriched agricultural products and food standards in China[J]. China Standardization, 2019, 547(11): 136−144.
    [19]
    中华人民共和国国家卫生和计划生育委员会, 国家食品药品监督管理总局. GB 4789.2-2016 食品安全国家标准 食品微生物学检验 菌落总数测定[S]. 北京:中国标准出版社, 2016. [National Health Commision of the People's Repulic of China, China Food and Drug Administration. GB 4789.2-2016 National food safety standard food microbiology test in detection of aerobic bacterial counts[S]. Beijing:Standards Press of China, 2016.]

    National Health Commision of the People's Repulic of China, China Food and Drug Administration. GB 4789.2-2016 National food safety standard food microbiology test in detection of aerobic bacterial counts[S]. Beijing: Standards Press of China, 2016.
    [20]
    中华人民共和国国家卫生和计划生育委员会, 国家食品药品监督管理总局. GB 4789.3-2016 食品安全国家标准 食品微生物学检验 大肠菌群计数[S]. 北京:中国标准出版社, 2016. [National Health Commision of the People's Repulic of China, China Food and Drug Administration. GB 4789.3-2016 National food safety standard food microbiology test in enumeration of coliforms[S]. Beijing:Standards Press of China, 2016.]

    National Health Commision of the People's Repulic of China, China Food and Drug Administration. GB 4789.3-2016 National food safety standard food microbiology test in enumeration of coliforms[S]. Beijing: Standards Press of China, 2016.
    [21]
    中华人民共和国国家卫生和计划生育委员会, 国家食品药品监督管理总局. GB 4789.4-2016 食品安全国家标准 食品微生物学检验 沙门氏菌检验[S]. 北京:中国标准出版社, 2016. [National Health Commision of the People's Repulic of China, China Food and Drug Administration. GB 4789.4-2016 National food safety standard microbiology test in food-Cronobacter testing[S]. Beijing:Standards Press of China, 2016.]

    National Health Commision of the People's Repulic of China, China Food and Drug Administration. GB 4789.4-2016 National food safety standard microbiology test in food-Cronobacter testing[S]. Beijing: Standards Press of China, 2016.
    [22]
    廖彪. 紫阳县双安镇玉米硒含量测定及安全性分析[J]. 陕西农业科学,2018,64(4):16−18. [LIAO B. Selenium content determination and safety analysis of maize in Shuangan Town of Ziyang County[J]. Shaanxi Journal of Agricultural Sciences,2018,64(4):16−18.]

    LIAO B. Selenium content determination and safety analysis of maize in Shuangan Town of Ziyang County[J]. Shaanxi Journal of Agricultural Sciences, 2018, 64(4): 16−18.
    [23]
    ZHENG G J, KADIR A, ZHENG X F, et al. Spirodesertols A and B, two highly modified spirocyclic diterpenoids with an unprecedented 6-isopropyl-3H-spiro[benzofuran-2,1ʹ-cyclohexane] motif from Salvia deserta[J]. Organic Chemistry Frontier,2020,7:3137−3145. doi: 10.1039/D0QO00735H
    [24]
    ZHENG X F, KADIR A, ZHENG G J, et al. Antiproliferative abietane quinone diterpenoids from the roots of Salvia deserta[J]. Bioorganic Chemistry,2020,104:104261. doi: 10.1016/j.bioorg.2020.104261
    [25]
    KADIR A, ZHENG G J, ZHENG X F, et al. Structurally diverse diterpenoids from the roots of Salvia deserta based on nine different skeletal types[J]. Journal of Natural Produts,2021,84:1442−1452. doi: 10.1021/acs.jnatprod.0c01180
    [26]
    ZHANG H Q, PENG X, ZHENG X F, et al. Lanostane triterpene glycosides from the flowers of Lyonia ovalifolia var. hebecarpa and their antiproliferative activities[J]. Bioorganic Chemistry,2020,96:103598. doi: 10.1016/j.bioorg.2020.103598
    [27]
    白莉, 王辉敏, 李冠文, 等. 参芪复合固体饮料工艺优化、质量评价及体外抗氧化活性研究[J]. 现代食品,2021(24):109−116,120. [BAI L, WANG H M, LI G W, et al. Study on optimization and quality evaluation of shenqi compound solid beverage and its antioxidant activities[J]. Modern Food,2021(24):109−116,120.]

    BAI L, WANG H M, LI G W, et al. Study on optimization and quality evaluation of shenqi compound solid beverage and its antioxidant activities[J]. Modern Food, 2021(24): 109−116,120.
    [28]
    蒋雨心, 邓岚, 范方宇. 鱼腥草根总黄酮超声辅助酶法提取工艺优化及其抗氧化活性研究[J]. 食品工业科技,2023,44(6):277−235. [JIANG Y X, DENG N, FAN F Y. Ultrasonic assisted extraction process of flavonoids from Houttuynia cordata Thund and its antioxidant activity[J]. Science and Technology of Food Industry,2023,44(6):277−235.]

    JIANG Y X, DENG N, FAN F Y. Ultrasonic assisted extraction process of flavonoids from Houttuynia cordata Thund and its antioxidant activity[J]. Science and Technology of Food Industry, 2023, 44(6): 277−235.
    [29]
    王碧雪, 祝雅雯, 何庆, 等. 袋鼠皮多肽对H2O2诱导人肝细胞LO2氧化损伤的影响[J]. 厦门大学学报(自然科学版),2019,58(5):701−706. [WANG B X, ZHU Y W, HE Q, et al. Effect of kangaroo skin peptide on the oxidative damage of human hepatocyte LO2 cells induced by H2O2[J]. Journal of Xiamen University(Natural Science),2019,58(5):701−706.]

    WANG B X, ZHU Y W, HE Q, et al. Effect of kangaroo skin peptide on the oxidative damage of human hepatocyte LO2 cells induced by H2O2[J]. Journal of Xiamen University(Natural Science), 2019, 58(5): 701−706.
    [30]
    胡海涛, 钱婷婷, 杨玲. 基于H2DCFDA荧光探针的植物活性氧检测方法[J]. 植物学报,2022,57(3):320−326. [HU H T, QIAN T T, YANG L. Detection of relative oxygen species using H2DCFDA probe in plant[J]. Chinese Bulletin of Botany,2022,57(3):320−326.]

    HU H T, QIAN T T, YANG L. Detection of relative oxygen species using H2DCFDA probe in plant[J]. Chinese Bulletin of Botany, 2022, 57(3): 320−326.
    [31]
    OPARKA M, WALCZAK J, MALINSKA D, et al. Quantifying ROS levels using CM-H2DCFDA and hyPer[J]. Methods,2016,109:3−11. doi: 10.1016/j.ymeth.2016.06.008
    [32]
    FENG Y Y, ZHA S Q, ZHANG H Q, et al. Rhodauricanol A, an analgesic diterpenoid with an unprecedented 5/6/5/7 tetracyclic system featuring a unique 16-oxa-tetracyclo [11.2. 1.01, 5. 07, 13] hexadecane core from Rhododendron dauricum[J]. Chinese Chemical Letters,2023,34:107742. doi: 10.1016/j.cclet.2022.107742
    [33]
    HUANG L, ZHENG G J, FENG Y Y, et al. Highly oxygenated dimeric grayanane diterpenoids as analgesics:TRPV1 and TRPA1 dual antagonists from Rhododendron molle[J]. Chinese Journal of Chemistry,2022,40:2285−2295. doi: 10.1002/cjoc.202200348
    [34]
    JIN P F, YUAN X H, MA X M, et al. Epoxymicranthols A−N, 5, 9-epoxygrayanane diterpenoids as potent analgesics from Rhododendron micranthum[J]. Chinese Journal of Chemistry,2021,39:1997−2008. doi: 10.1002/cjoc.202100077
    [35]
    FENG Y Y, ZHA S Q, GAO B, et al. Discovery of kalmane diterpenoids as potent analgesics from the flowers of Rhododendron dauricum[J]. Chinese Journal of Chemistry,2022,40:1019−1027.
    [36]
    胡然, 库宝善, 朱素君, 等. 贯叶连翘提取物和盐酸赖氨酸复方的镇痛作用研究[J]. 中国临床康复,2003,7(26):3600−3601. [HU R, KU B S, ZHU S J, et al. Study of analgesic effect of the complex of Hypericum perforatum L. extract and lydine hydrochloride[J]. Chinese Journal of Clinical Rehabilitation,2003,7(26):3600−3601.]

    HU R, KU B S, ZHU S J, et al. Study of analgesic effect of the complex of Hypericum perforatum L. extract and lydine hydrochloride[J]. Chinese Journal of Clinical Rehabilitation, 2003, 7(26): 3600−3601.
    [37]
    黄玉香, 徐先祥, 陈剑雄, 等. 七叶莲果实的抗炎镇痛作用研究[J]. 食品工业科技,2012,33(24):397−398,402. [HUANG Y X, XU X X, CHEN J X, et al. Anti-inflammatory and anti-nociceptive effect of the fruit of Scheffera arboricola Hayata in experimetal animal models[J]. Science and Technology of Food Industry,2012,33(24):397−398,402.]

    HUANG Y X, XU X X, CHEN J X, et al. Anti-inflammatory and anti-nociceptive effect of the fruit of Scheffera arboricola Hayata in experimetal animal models[J]. Science and Technology of Food Industry, 2012, 33(24): 397−398,402.
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