[1]张亚昊,方永婷,崔小梅. 黑果枸杞化学成分和药理作用研究进展[J]. 当代化工研究,2020(16):3.
ZHANG Y H,FANG Y T,CUI X M. Research advance on chemical constituents and pharmacological activities of Lycium ruthenicum Murr.[J]. Modern Chemical Research.2020(16):3.
[2]ZHOU L Y,LIU Z Q,WANG W D,et al. Anthocyanins in black wolfberry(Lycium ruthenicum Murr. ):Chemical structure,composition,stability and biological activity[J/OL]. Food Reviews International,2025:1‐29(2025‐03‐25)[2025‐07‐05]. https://doi. org/10. 1080/87559129. 2025,2483812.
[3]LI D N,LI B,MA Y,et al. Polyphenols,anthocyanins,and flavonoids contents and the antioxidant capacity of various cultivars of highbush and half‐high blueberries[J]. Journal of Food Composition and Analysis,2017,62:84‐93.
[4]张琦,朱绚绚,熊佳丽,等. 枸杞营养功能特性及其产品开发现状[J]. 食品与发酵工业,2024,50(15):398‐408.
ZHANG Q,ZHU X X,XIONG J L,et al. Research progress of functional properties of wolfberry and development of its products[J]. Food and Fermentation Industries,2024,50(15):398‐408.
[5]兰天,段国珍,祁有朝,等. 黑果枸杞和黄果枸杞的广泛靶向代谢组学分析[J]. 食品科学,2024,45(12):
52‐58.
LAN T,DUAN G Z,QI Y C,et al. Widely targeted metabolomic analysis of Lycium ruthenicum Murr. and Lycium barbarum L. var. auranticarpum K. F. Ching fruits[J]. Food Science,2024,45(12):52‐58.
[6]LIU Z G,LIU B L,WEN H X,et al. Phytochemical profiles,nutritional constituents and antioxidant activity of black wolfberry(Lycium ruthenicum Murr.)[J].Industrial Crops and Products,2020,154:112692.
[7]DU Y W,MA H Y,LIU Y Y,et al. Major quality regulation network of flavonoid synthesis governing the bioactivity of black wolfberry[J]. New Phytologist,2024,242(2):558‐575.
[8]JIA X H,WU F M,LU A J,et al. Widely targeted metabolomics analysis of Dendrobium officinale at different altitudes[J]. Chemistry & Biodiversity,2023,20 (4):e202201082.
[9]庞新跃,张茵茵,李白茹,等. 广泛靶向代谢组学与转录组学联合分析胰蛋白酶对火龙果中抗氧化酶和饱和脂肪酸的调控[J]. 食品科学,2022,43(1):37‐47.
PANG X Y,ZHANG Y Y,LI B R,et al. Widely targeted metabolomic and transcriptomic analyses reveal the regulation of trypsin on antioxidant enzymes and saturated fatty acids in Hylocereus undatus fruit during storage[J]. Food Science,2022,43(1):37‐47.
[10]ZHANG G,CHEN S S,ZHOU W,et al. Rapid qualitative and quantitative analyses of eighteen phenolic compounds from Lycium ruthenicum Murr.by UPLC‐Q‐Orbitrap MS and their antioxidant activity[J].Food Chemistry,2018,269:150‐156.
[11]WORLEY B,POWERS R. PCA as a practical indicator of OPLS‐DA model reliability[J]. Current Metabolomics,2016,4(2):97‐103.
[12]CAO H,JI Y L,LI S C,et al. Extensive metabolic profiles of leaves and stems from the medicinal plant Dendrobium officinale kimura et migo[J]. Metabolites,2019,9(10):215.
[13]LI S P,CHEN Y,DUAN Y,et al. Widely targeted metabolomics analysis of different parts of Salsola collina pall[J]. Molecules,2021,26(4):1126.
[14]THÉVENOT E A,ROUX A,XU Y,et al. Analysis of the human adult urinary metabolome variations with age,body mass index,and gender by implementing a comprehensive workflow for univariate and OPLS statistical analyses[J].Journal of Proteome Research,2015,14(8):3322‐3335.
[15]FORMICA J V,REGELSON W. Review of the biology of quercetin and related bioflavonoids[J]. Food and Chemical Toxicology,1995,33(12):1061‐1080.
[16]YAMAMOTO T,YOSHIMURA M,YAMAGUCHI F,et al. Anti‐allergic activity of naringenin Chalcone from a tomato skin extract[J].Bioscience,Biotechnology,and Biochemistry,2004,68(8):1706‐1711.
[17]NIU H H,YUAN L,ZHOU H L,et al. Comparison of the effects of high pressure processing,pasteurization and high temperature short time on the physicochemical attributes,nutritional quality,aroma profile and sensory characteristics of passion fruit purée[J]. Foods,2022,11(5):632.
[18]CAI D,ZHAO Z M,ZHAO L J,et al. The age‐accompanied and diet‐associated remodeling of the phospholipid,amino acid,and SCFA metabolism of healthy centenarians from a Chinese longevous region:A window into exceptional longevity[J]. Nutrients,2022,14(20):4420.
[19]MARSHALL A,MCGRATH J W,GRAHAM R,et al.Food for thought—The link between Clostridioides difficile metabolism and pathogenesis [J]. PLoS Pathogens,2023,19(1):e1011034.
[20]KIM J H,KIM T I,MA J Y. Synergistic effects of novel herbal decoctions from Panax ginseng and Morus alba on tyrosinase activity and melanogenesis in vitro[J].Heliyon,2022,8(2):e08866.
[21]LI L,ZHONG Y J,MA Z H,et al. Methyl ferulic acid exerts anti‐apoptotic effects on L‐02 cells via the ROS‐mediated signaling pathway[J]. International Journal of Oncology,2018,53(1):225‐236.
[22]SASAKI Y,ZHU J,SHI Y,et al. Nicotinic acid mononucleotide is an allosteric SARM1 inhibitor promoting axonal protection [J]. Experimental Neurology,2021,345:113842.
[23]MAO J F, LIU S Z. Mechanism of the DL‐alpha‐aminoadipic acid inhibitory effect on form‐deprived myopia in guinea pig[J]. International Journal of Ophthalmology,2013,6(1):19‐22.
[24]MAUGARD M,VIGNERON P A,BOLAÑOS J P,et al.L‐serine links metabolism with neurotransmission J].Progress in Neurobiology,2021,197:101896.
[25]杨雪萍,王惠国,冯宝民,等. 芥子中总芥子碱类成分的含量测定[J]. 大连大学学报,2009,30(6):53‐55.
YANG X P,WANG H G,FENG B M,et al. Determination of the total sinapinoids content in the seeds Sinapis alba L. and Brassica juncea[J]. Journal of Dalian University,2009,30(6):53‐55.
[26]LIU Z G,TANG X H,LIU C,et al. Ultrasonic extraction of anthocyanins from Lycium ruthenicum Murr. and its antioxidant activity[J]. Food Science & Nutrition,2020,8(6):2642‐2651.
[27]WANG H Q,LI J N,TAO W W,et al. Lycium ruthenicum studies:Molecular biology,phytochemistry and pharmacology[J]. Food Chemistry,2018,240:759‐766.
[28]BOROCHOV‐NEORI H,JUDEINSTEIN S,HARARI M,et al. Climate effects on anthocyanin accumulation and composition in the pomegranate(Punica granatum L.) fruit arils[J]. Journal of Agricultural and Food Chemistry,2011,59(10):5325‐5334.
[29]CHENG G,HE Y N,YUE T X,et al. Effects of climatic conditions and soil properties on Cabernet Sauvignon berry growth and anthocyanin profiles[J].Molecules,2014,19(9):13683‐13703.
[30]QIAN W U,ZHI YU L I,WEI FANG T. Chemical modification of flavones and biological activities of modified flavones[J]. Natural Product Research and Development,2008,20(3):557‐562.
[31]刘树勋,杨航宇,王绍阳,等. 野生蓝莓酒皮渣花色苷及其抗氧化活性研究[J].中国酿造,2016,35(2):115‐118.
LIU S X,YANG H Y,WANG S Y,et al. Anthocyanins of wildblueberry wine pomace and its antioxidant activity[J].China Brewing,2016,35(2):115‐118.
[32]MAZEWSKI C,KIM M S,DE MEJIA E G.Anthocyanins,delphinidin‐3‐O‐glucoside and cyanidin‐3‐O‐lucoside,inhibit immune checkpoints in human colorectal cancer cells in vitro and in silico[J].Scientific Reports,2019,9(1):11560.
[33]岳文秀,吴璐璐,韩富亮. 葡萄酒干物质和花色苷对人体肠道菌群的影响:基于体外模拟发酵法[J].食品科学,2022,43(11):121‐129.
YUE W X,WU L L,HAN F L. In vitro simulated fermentation evaluation of effects of dry matter and anthocyanins in red wine on intestinal microbiota[J].Food Science,2022,43(11):121‐129.
[34]朱运明,黄午阳,闵伟红,等. 锦葵色素葡萄糖苷和锦葵色素半乳糖苷抑制内皮细胞氧化应激作用[J].食品科学,2016,37(17):201‐206.
ZHU Y M,HUANG W Y,MIN W H,et al. Effects of malvidin glycosides on ang Ⅱ‐induced oxidative stress in endothelial cells[J]. Food Science,2016,37(17):201‐206.
|