JOURNAL OF LIGHT INDUSTRY

CN 41-1437/TS  ISSN 2096-1553

Volume 41 Issue 1
February 2026
Article Contents
LI Cuicui, WANG Yongguo, CHENG Lijuan, et al. Research progress on active components, health benefits and applications of Cornus officinalis in the food field[J]. Journal of Light Industry, 2026, 41(1): 34-46. doi: 10.12187/2026.01.004
Citation: LI Cuicui, WANG Yongguo, CHENG Lijuan, et al. Research progress on active components, health benefits and applications of Cornus officinalis in the food field[J]. Journal of Light Industry, 2026, 41(1): 34-46. doi: 10.12187/2026.01.004 shu

Research progress on active components, health benefits and applications of Cornus officinalis in the food field

  • Corresponding author: ZHANG Cuiyue, zhangcy@nyist.edu.cn
  • Received Date: 2025-03-11
    Accepted Date: 2025-04-22
  • Based on the medicinal and edible dual-purpose characteristics of Cornus officinalis, this review summarizes its main active components, health benefits and corresponding mechanisms of action, and further discusses the current research progress on its applications in health foods and common foods such as alcoholic beverages, beverages, and vinegar. The main active components of Cornus officinalis include polysaccharides, flavonoids, tannins, iridoids, triterpenoids, alcohols, organic acids and steroids, which exhibit various health benefits such as anti-tumor and hypoglycemic effects. Significant progress has been achieved in elucidating the mechanisms of the active components of Cornus officinalis, such as regulating the expression of tumor apoptotic factors, protecting pancreatic β cells, modulating inflammatory signaling pathways, and activating the activity of antioxidant enzymes. Although remarkable achievements have been made in the application research of Cornus officinalis in the food field, it is still confronted with numerous challenges, including the need for continuous exploration of active components, inadequate in-depth elucidation of mechanisms, lack of clinical data, insufficient product diversity, poor stability of active components, and uneven product quality. In the future, it is necessary to rely on modern technologies to systematically excavate the active components of Cornus officinalis, further investigate the efficacy mechanisms, and overcome the bioavailability bottleneck, so as to promote the further development and utilization of Cornus officinalis resources in China.
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    1. [1]

      TIAN W S,ZHAO J,LEE J H,et al.Neuroprotective effects of Cornus officinalis on stress-induced hippocampal deficits in rats and H2O2-induced neurotoxicity in SH-SY5Y neuroblastoma cells[J].Antioxidants,2020,9(1):27.

    2. [2]

      汪嘉俊,王泽萍,王雪莲,等.山茱萸化学成分和药理作用的研究进展[J].中草药,2025,56(3):1088-1103.
      WANG J J,WANG Z P,WANG X L,et al.Research progress on chemical composition and pharmacology of Cornus officinalis[J].Chinese Traditional and Herbal Drugs,2025,56(3):1088-1103.

    3. [3]

      国家药典委员会.中华人民共和国药典·三部:2020年版[M].北京:中国医药科技出版社,2020. National Pharmacopoeia Committee.Pharmacopoeia of the People’s republic of China·Volume Ⅲ:2020 edition[M].Beijing:China Medical Science and Technology Press,2020.

    4. [4]

      张立强,单国顺,洪艺丹,等.基于UPLC-Q-TOF-MS和UPLC-QqQ-MS/MS的山茱萸不同炮制品化学成分定性与定量分析[J].中国中药杂志,2025(8):2145-2158.ZHANG L Q,SHAN G S,HONG Y D,et al.Qualitative and quantitative analysis of chemical components in different processed products of Cornus officinalis based on UPLC-Q-TOF-MS and UPLC-QqQ-MS/MS[J].Chinese Journal of Traditional Chinese Medicine,2025
      (8):2145-2158.

    5. [5]

      国家市场监督管理总局. 党参等9种物质新增纳入食药物质目录[EB/OL]. (2023-11-15
      )[2025-12-08]. https://www.samr.gov.cn/xw/sj/art/2023/art_8d005589c2914083a4aa9442102babf8.html State Administration of market supervision and Administration. Codonopsis and 8 other substances newly added to the list of edible and medicinal materials[EB/OL]. (2023-11-15)[2025-12-08]. https://www.samr.gov.cn/xw/sj/art/2023/art_8d005589c2914083 a4aa9442102babf8.html

    6. [6]

      JIANG H,WANG Y Y,LI J,et al.Preparation of high-purity 1,2,3,6-tetragalloylglucose from Cornus officinalis Sieb.et Zucc.seeds[J].Natural Product Communications,2025,20:1934578X251316689.

    7. [7]

      WANG M Y,MENG M,YANG C C,et al.Cornel iridoid glycoside improves cognitive impairment induced by chronic cerebral hypoperfusion via activating PI3K/Akt/GSK-3β/CREB pathway in rats[J].Behavioural Brain Research,2020,379:112319.

    8. [8]

      刘昱.中药材山茱萸质量标志物和多糖研究[D].天津:天津科技大学,2022. LIU Y.Research on quality markers and polysaccharides of Chinese medicinal material Cornus officinalis[D].Tianjin:Tianjin University of Science and Technology,2022.

    9. [9]

      CAO B, ZENG M N, HAO F X, et al. Cornus officinalis Sieb. et Zucc. attenuates Aβ(25-35)-induced mitochondrial damage and neuroinflammation in mice by modulating the ERK pathway[J]. Phytomedicine, 2024, 129: 155709.

    10. [10]

      YANGY C, YU Y X, GAO J X, et al. Iridoid glycoside dimers from fruits of Cornus officinalis and their anti-inflammatory activity[J]. Frontiers in Chemistry, 2025, 13: 1558075.

    11. [11]

      周迎春,张廉洁,张燕丽.山茱萸化学成分及药理作用研究新进展[J].中医药信息,2020,37(1):114-120.
      ZHOU Y C,ZHANG L J,ZHANG Y L.New progress in chemical constituents and pharmacological action of Cornus officinalis[J].Information on Traditional Chinese Medicine,2020,37(1):114-120.

    12. [12]

      BRODYAK I,MOROZ A,BERNACKA K,et al.Alleviation of hyperglycaemia and oxidative stress by fruit extracts of different cultivars of the cornelian cherry (Cornus mas L.and Cornus mas×Cornus officinalis)in rats with diabetes mellitus[J].Food & Function,2025,16(5):2136-2155.

    13. [13]

      侯亚迪,尚子慧,陈培,等.山茱萸环烯醚萜苷的化学成分及生物活性研究进展[J].中华中医药学刊,2024,42(6):69-76.
      HOU Y D,SHANG Z H,CHEN P,et al.Research progress on chemical constituents and biological activities of iridoid glycosides from Cornus officinalis[J].Chinese Archives of Traditional Chinese Medicine,2024,42(6):69-76.

    14. [14]

      SUN X Y,XUE S J,CUI Y X,et al.Characterization and identification of chemical constituents in Corni Fructus and effect of storage using UHPLC-LTQ-Orbitrap-MS[J].Food Research International,2023,164:112330.

    15. [15]

      WANG L L,CHEN H,JIANG Y H,et al.Simultaneous determination of 11 high-polarity components from fructus corni:A quantitative LC-MS/MS method for improved quality control[J].Journal of Chromatographic Science,2018,56(1):56-64.

    16. [16]

      YE X S,HE J,CHENG Y C,et al.Cornusides A-O,bioactive iridoid glucoside dimers from the fruit of Cornus officinalis[J].Journal of Natural Products,2017,80(12):3103-3111.

    17. [17]

      ZHANG A N, HA B E, CHEN C, et al. Vacuum-steam pulsed blanching: An emerging method to enhance texture softening, drying behavior and physicochemical properties of Cornus officinalis[J]. Journal of Food Science, 2024, 89(1): 202-216.

    18. [18]

      LIU G L, WANG J J. Chemical and pharmacological studies of Cornus officinalis[J]. Cambridge Science Advance, 2024, 2024(4): 1-6.

    19. [19]

      范倩,陈雪冰,荣莉,等.山茱萸化学成分、生物活性、复方应用及质量控制研究进展[J].天然产物研究与开发,2020,32(7):1244-1258.
      FAN Q,CHEN X B,RONG L,et al.Research progress on chemical constituents,bioactivities,formula applications and quality control of Cornus officinalis[J].Natural Product Research and Development,2020,32(7):1244-1258.

    20. [20]

      HUANG J,ZHANG Y W,DONG L,et al.Ethnop-harmacology,phytochemistry,and pharmacology of Cornus officinalis Sieb.et Zucc.[J].Journal of Ethnopharmacology,2018,213:280-301.

    21. [21]

      TENUTA M C,DEGUIN B,LOIZZO M R,et al.An overview of traditional uses,phytochemical compositions and biological activities of edible fruits of European and Asian Cornus species[J].Foods,2022,11(9):1240.

    22. [22]

      潘雪格.中药山茱萸、丹参化学成分和生物活性的研究[D].北京:北京中医药大学,2018. PAN X G.Research on the chemical components and biological activities of traditional Chinese medicine Cornus officinalis and salvia miltiorrhiza[D].Beijing:Beijing University of Traditional Chinese Medicine,2018.

    23. [23]

      BADONI S, RAWAT D, MAHATO A K, et al. Therapeutic potential of Cornus genus: Navigating phytochemistry, pharmacology, clinical studies, and advanced delivery approaches[J]. Chemistry & Biodiversity, 2024, 21(8): e202301888.

    24. [24]

      李媛,孙锁锋.山茱萸多糖通过上调Klotho表达和抑制PI3K/AKT通路对肝癌HepG2细胞增殖、凋亡的影响[J].现代药物与临床,2019,34(10):2887-2893.
      LI Y,SUN S F.Effect of Cornus officinalis polysaccharide on proliferation and apoptosis of hepatocellular carcinoma HepG2 cells by up-regulating Klotho expression and inhibiting PI3K/AKT pathway[J].Drugs & Clinic,2019,34(10):2887-2893.

    25. [25]

      XU R Q,ZENG M N,WU Y Y,et al.Acetone extract of Cornus officinalis leaves exerts anti-melanoma effects via inhibiting STAT3 signaling[J].OncoTargets and Therapy,2021,14:3487-3501.

    26. [26]

      TELANG N T,NAIR H B,WONG G Y C.Growth inhibitory efficacy of Cornus officinalis in a cell culture model for triple-negative breast cancer[J].Oncology Letters,2019,17(6):5261-5266.

    27. [27]

      肖鹏,白桦,栗敏,等.山茱萸提取物对大鼠原发性肝癌组织中B7-H6表达的影响[J].中国肿瘤临床,2017,44(22):1125-1129.
      XIAO P,BAI H,LI M,et al.Effect of Fructus Corni extract on B7-H6 expression in primary liver cancer of rats[J].Chinese Journal of Clinical Oncology,2017,44(22):1125-1129.

    28. [28]

      HAN Y,JUNG H W,PARK Y K.Selective therapeutic effect of Cornus officinalis fruits on the damage of different organs in STZ-induced diabetic rats[J].The American Journal of Chinese Medicine,2014,42(5):1169-1182.

    29. [29]

      SHARP-TAWFIK A E,COINER A M,MARELIA C B,et al.Compositional analysis and biological characterization of Cornus officinalis on human 1.1B4 pancreatic β cells[J].Molecular and Cellular Endocrinology,2019,494:110491.

    30. [30]

      ZHAO M Y, CAO W W, LI L L, et al. Effects of different proteins and maltodextrin combinations as wall material on the characteristics of Cornus officinalis flavonoids microcapsules[J]. Frontiers in Nutrition, 2022, 9: 1007863.

    31. [31]

      刘薇,朱晶晶,徐志猛,等.山茱萸总萜对KKay糖尿病小鼠的治疗作用研究[J].药物评价研究,2016,39(6):947-952.
      LIU W,ZHU J J,XU Z M,et al.Effects of terpenes from Cornus Fructus on KKay diabetic mice[J].Drug Evaluation Research,2016,39(6):947-952.

    32. [32]

      WANG Z W,ZHOU N,FANG S B,et al.Effect of ursolic acid on obesity-induced insulin resistance in rat liver[J].Tropical Journal of Pharmaceutical Research,2018,17(5):837.

    33. [33]

      HE K,SONG S H,ZOU Z Y,et al.The hypoglycemic and synergistic effect of loganin,morroniside,and ursolic acid isolated from the fruits of Cornus officinalis[J].Phytotherapy Research,2016,30(2):283-291.

    34. [34]

      MO F F,LIU H X,ZHANG Y,et al.Anti-diabetic effect of loganin by inhibiting FOXO1 nuclear translocation via PI3K/Akt signaling pathway in INS-1 cell[J].Iranian Journal of Basic Medical Sciences,2019,22(3):262-266.

    35. [35]

      LIU R N,DONG J,WANG J P,et al.MCnebula analysis combined with alpha-glucosidase inhibitory screening reveals potential chemical contributors to efficacy enhancement of natural products after processing[J].Food Research International,2025,205:115985.

    36. [36]

      马庆一,陈丽华,杨海延,等.山茱萸中α-葡萄糖苷酶抑制活性因子的筛选(Ⅱ)[J].食品科学,2007,28(2):73-78.
      MA Q Y,CHEN L H,YANG H Y,et al.Screening of α-glucosidase inhibitors from coruns officinalis (Ⅱ)[J].Food Science,2007,28(2):73-78.

    37. [37]

      马庆一,陈丽华,杨海延,等.山茱萸中α-葡萄糖苷酶抑制活性因子的筛选(Ⅰ)[J].食品科学,2007,28(1):167-170.
      MA Q Y,CHEN L H,YANG H Y,et al.Screening α-glucosidase inhibitors from coruns officinalis(I)[J].Food Science,2007,28(1):167-170.

    38. [38]

      PARK C H,NOH J S,TANAKA T,et al.The effects of corni fructus extract and its fractions against α-glucosidase inhibitory activities in vitro and sucrose tolerance in normal rats[J].The American Journal of Chinese Medicine,2011,39(2):367-380.

    39. [39]

      LEE C M,JUNG H A,OH S H,et al.Kinetic and molecular docking studies of loganin and 7-O-galloyl-D-sedoheptulose from Corni Fructus as therapeutic agents for diabetic complications through inhibition of aldose reductase[J].Archives of Pharmacal Research,2015,38(6):1090-1098.

    40. [40]

      周瑞,唐志书,武婧,等.基于抗类风湿关节炎作用评价膜分离技术富集山茱萸抗炎组分的适用性[J].中草药,2019,50(5):1182-1188.
      ZHOU R,TANG Z S,WU J,et al.Applicability of membrane separation technique for concentrating anti-inflammatory compounds of Cornus officinalis Decoction based on anti-rheumatoid arthritis activity[J].Chinese Traditional and Herbal Drugs,2019,50(5):1182-1188.

    41. [41]

      HUANG L C,HU S Q,SHAO M Y,et al.Combined Cornus officinalis and Paeonia lactiflora pall therapy alleviates rheumatoid arthritis by regulating synovial apoptosis via AMPK-mediated mitochondrial fission[J].Frontiers in Pharmacology,2021,12:639009.

    42. [42]

      邵琰,牟微娜,俞莹莹.山茱萸提取物经COX-2/Nrf2信号通路对脓毒症模型大鼠肝损伤的改善作用[J].浙江中西医结合杂志,2021,31(4):308-313.
      SHAO Y,MOU W N,YU Y Y.Effect of Cornus officinalis extract on protection of liver injury in a rat sepsis model via regulation of COX-2/Nrf2 signaling[J].Zhejiang Journal of Integrated Traditional Chinese and Western Medicine,2021,31(4):308-313.

    43. [43]

      王福兴.山茱萸提取物通过NF-κB炎症信号通路改善2型糖尿病小鼠的机制研究[D].西安:陕西师范大学,2018. WANG F X.Study on the mechanism of Cornus officinalis extract improving type 2 diabetes mice through NF-κB inflammatory signaling pathway[D].Xi’an:Shanxi Normal University,2018.

    44. [44]

      PENG Z C,WANG Y M,HE J,et al.Chemical constituents and their antioxidant and anti-inflammatory activities from edible Cornus officinalis fruits[J].European Food Research and Technology,2022,248(4):1003-1010.

    45. [45]

      YE X S,HE J,CHENG Y C,et al.Cornusides A-O,bioactive iridoid glucoside dimers from the fruit of Cornus officinalis[J].Journal of Natural Products,2017,80(12):3103-3111.

    46. [46]

      YUAN J H,CHENG W P,ZHANG G Y,et al.Protective effects of iridoid glycosides on acute colitis via inhibition of the inflammatory response mediated by the STAT3/NF-кB pathway[J].International Immunopharmacology,2020,81:106240.

    47. [47]

      LIU S,SHEN H,LI J Y,et al.Loganin inhibits macrophage M1 polarization and modulates sirt1/NF-κB signaling pathway to attenuate ulcerative colitis[J].Bioengineered,2020,11(1):628-639.

    48. [48]

      PRZYBYLSKA D, KUCHARSKA A Z, SOZANN[DD(-*2]'SKI T. A review on bioactive iridoids in edible fruits-from garden to food and pharmaceutical products[J]. Food Reviews International, 2023, 39(9): 6447-6477.

    49. [49]

      侯祥平,匡威,陈克芳,等.山茱萸总苷及多糖对心肌梗死大鼠心肌炎症因子IL-6及IL-10的影响[J].中国中医药科技,2016,23(5):548-550.
      HOU X P,KUANG W,CHEN K F,et al.Effects of total Cornus officinalis glycosides and Cornus polysaccharides on IL-6 and IL-10 expressions in acute myocardial infarction rats[J].Chinese Journal of Traditional Medical Science and Technology,2016,23(5):548-550.

    50. [50]

      张瑶,朱贵明,谷志龙,等.山茱萸多糖对D-半乳糖致衰老小鼠肾组织中Klotho基因表达的影响[J].老年医学与保健,2010,16(6):346-348
      ,353. ZHANG Y,ZHU G M,GU Z L,et al.The effect of Cornus officinalis polysaccharides on Klotho gene expression in renal tissue of D-galactose-induced aging mice[J].Geriatric Medicine and Health Care,2010,16(6):346-348,353.

    51. [51]

      HWANG K A,HWANG Y J,SONG J.Antioxidant activities and oxidative stress inhibitory effects of ethanol extracts from Cornus officinalis on raw 264.7 cells[J].BMC Complementary and Alternative Medicine,2016,16:196.

    52. [52]

      冀麟麟,王欣,钟祥健,等.山茱萸的化学成分及其抗氧化活性[J].现代食品科技,2019,35(5):137-143
      ,36. JI L L,WANG X,ZHONG X J,et al.Chemical composition and antioxidant activity of Cornus officinalis[J].Modern Food Science and Technology,2019,35(5):137-143,36.

    53. [53]

      LIU Z, LIU Y, MAN S L, et al. Functional factors, nutritional value and development strategies of Cornus: A review[J]. Trends in Food Science & Technology, 2023, 139: 104121.

    54. [54]

      GAO X, LIU Y, AN Z C, et al. Active components and pharmacological effects of Cornus officinalis: Literature review[J]. Frontiers in Pharmacology, 2021, 12: 633447.

    55. [55]

      王恩军,靳祎,季文琦,等.山茱萸多糖对肺癌细胞的凋亡作用及Bcl-2、Bax表达的影响[J].中成药,2012,34(5):808-811.
      WANG E J,JIN Y,JI W Q,et al.Effect of Corni Fructus polysaccharides on apoptosis and Bcl-2,Bax expression in A549 cells[J].Chinese Traditional Patent Medicine,2012,34(5):808-811.

    56. [56]

      ZHANG J X,WANG R,XI J,et al.Morroniside protects SK-N-SH human neuroblastoma cells against H2O2-induced damage[J].International Journal of Molecular Medicine,2017,39(3):603-612.

    57. [57]

      JI L L,WANG X,LI J J,et al.New iridoid derivatives from the fruits of Cornus officinalis and their neuroprotective activities[J].Molecules,2019,24(3):625.

    58. [58]

      QIAN L H,HUANG S R,LIU X L,et al.Morroniside improves the symptoms of post-stroke depression in mice through the BDNF signaling pathway mediated by miR-409-3p[J].Phytomedicine,2024,123:155224.

    59. [59]

      NAJJAR R S,AKHAVAN N S,POURAFSHAR S,et al.Cornus officinalis var.koreana Kitam polyphenol extract decreases pro-inflammatory markers in lipopolysaccharide (LPS)-induced RAW 264.7 macrophages by reducing Akt phosphorylation[J].Journal of Ethnopharmacology,2021,270:113734.

    60. [60]

      LEE J A,SHIN M R,ROH S S.Corni fructus alleviates UUO-induced renal fibrosis via TGF-β/smad signaling[J].BioMed Research International,2022,2022(1):5780964.

    61. [61]

      DU Q,FU Y X,SHU A M,et al.Loganin alleviates macrophage infiltration and activation by inhibiting the MCP-1/CCR2 axis in diabetic nephropathy[J].Life Sciences,2021,272:118808.

    62. [62]

      SUK L,JI C,DON K,et al.Anti-obesity activity in 3T3-L1 cells of Cornus officinalis fruits harvested at different times[J].Processes,2022,10(10):2008.

    63. [63]

      TONG Q,XI J J,CAO Y,et al.Morroniside delays NAFLD progression in fructose-fed mice by normalizing lipid metabolism and inhibiting the inflammatory response[J].Journal of Food Biochemistry,2023,2023(1):9952583.

    64. [64]

      HYEON J,YANG G,KYUNG S,et al.Loganin prevents hepatic steatosis by blocking NLRP3 inflammasome activation[J].Biomolecules & Therapeutics,2023,31(1):40-47.

    65. [65]

      JU C G,ZHU L,WANG W,et al.Cornus officinalis prior and post-processing:Regulatory effects on intestinal flora of diabetic nephropathy rats[J].Frontiers in Pharmacology,2022,13:1039711.

    66. [66]

      HAN X,LIU J,BAI Y F,et al.An iridoid glycoside from Cornus officinalis balances intestinal microbiome disorder and alleviates alcohol-induced liver injury[J].Journal of Functional Foods,2021,82:104488.

    67. [67]

      WANG L,ZHU J H,JIANG X D,et al.Preventive effects of the Rehmannia glutinosa Libosch and Cornus officinalis Sieb herb couple on chronic kidney disease rats via modulating the intestinal microbiota and enhancing the intestinal barrier[J].Frontiers in Pharmacology,2022,13:942032.

    68. [68]

      YI X J,TAO J G,QIAN Y,et al.Morroniside ameliorates inflammatory skeletal muscle atrophy via inhibiting canonical and non-canonical NF-κB and regulating protein synthesis/degradation[J].Frontiers in Pharmacology,2022,13:1056460.

    69. [69]

      李绍烁,赵京涛,何昌强,等.山茱萸总甙干预骨质疏松模型大鼠骨代谢:TRPV6、TRPV5通路的变化[J].中国组织工程研究,2019,23(11):1749-1754.
      LI S S,ZHAO J T,HE C Q,et al.Cornus officinalis glycosides intervening bone metabolism in rat models of osteoporosis:Changes of TRPV6 and TRPV5 pathways[J].Chinese Journal of Tissue Engineering Research,2019,23(11):1749-1754.

    70. [70]

      PARK E,LEE C G,YUN S H,et al.Ameliorative effects of loganin on arthritis in chondrocytes and destabilization of the medial Meniscus-induced animal model[J].Pharmaceuticals,2021,14(2):135.

    71. [71]

      ZHOU C C,YAO S,FU F D,et al.Morroniside attenuates nucleus pulposus cell senescence to alleviate intervertebral disc degeneration via inhibiting ROS-Hippo-p53 pathway[J].Frontiers in Pharmacology,2022,13:942435.

    72. [72]

      SUN J R,WANG D H,ZHAO J F,et al.Ultrasonic-assisted extraction,purification,antioxidant and antibacterial activity of polysaccharide from Cornus officinalis leaves[J].Journal of Food and Nutrition Research,2020,8(9):496-505.

    73. [73]

      孟景茜, 单留峰, 路亮, 等. 重构本草: 山茱萸[J]. 长春中医药大学学报, 2025, 41(5): 495-497.
      MENG J X, SHAN L F, LU L, et al. Reconstruction of Chinese materia Medica-Asiatic cornelian cherry fruit[J]. Journal of Changchun University of Chinese Medicine, 2025, 41(5): 495-497.

    74. [74]

      XU J J,LI R J,ZHANG Z H,et al.Loganin inhibits angiotensin II-induced cardiac hypertrophy through the JAK2/STAT3 and NF-κB signaling pathways[J].Frontiers in Pharmacology,2021,12:678886.

    75. [75]

      李晓君,郭娟,刘青业,等.山茱萸食品的研究进展及开发策略[J].陕西理工大学学报(自然科学版),2024(3):77-83. LI X J,GUO J,LIU Q Y,et al.Research progress and development strategy of Cornus officinalis food[J].Journal of Shaanxi University of Technology (Natural Science Edition),2024
      (3):77-83.

    76. [76]

      杨菊花.山茱萸-山药水煎液免疫活性研究及其袋泡茶开发[D].成都:成都大学,2024. YANG J H.Study on the immune activity of water decoction of Cornus officinalis and Chinese yam and the development of tea bags[D].Chengdu:Chengdu University,2024.

    77. [77]

      PASTARNOKIENE[DD(-*3]· L,POTAPOV E,MAKUŠKA R,et al.Optimization of microencapsulation of polyaspartic acid ester into UV curable epoxy-acrylate resin using Taguchi method of experimental design[J].Journal of Applied Polymer Science,2024,141(15):e55216.

    78. [78]

      李少华,李申,李翠翠.山茱萸黄酒发酵工艺的优化研究[J].食品研究与开发,2021,42(22):125-130.
      LI S H,LI S,LI C C.Optimization of fermentation process of Chinese rice wine from Cornus officinalis[J].Food Research and Development,2021,42(22):125-130.

    79. [79]

    80. [80]

      陈达.荔枝酒橡木桶微氧陈酿及醒酒技术研究[D].广州:华南理工大学,2016. CHEN D.Research on micro oxygen aging and sobering technology of litchi wine in oak barrels[D].Guangzhou:South China University of technology,2016.

    81. [81]

      陈金凤,孟伦,王文亮,等.酵母菌封装微胶囊技术在食品领域中的研究与应用进展[J].食品与发酵工业,2025,51(9):342-350.
      CHEN J F,MENG L,WANG W L,et al.Research and application progress of yeast encapsulated microcapsule technology in the field of food[J].Food and Fermentation Industry,2025,51(9):342-350.

    82. [82]

      BI Y,DONG J,ZHOU Y,et al.Application of membrane separation technology in the purification of pharmaceutical components[J].Preparative Biochemistry & Biotechnology,2024,54(9):1107-1115.

    83. [83]

      钱拴提,姚瑞祺,王锋.山茱萸保健酒:201310441916.6[P].2013-09-26.
      QIAN S T,YAO R Q,WANG F.Cornus officinalis health wine:201310441916.6[P].2013-09-26.

    84. [84]

      高泓娟.挖掘创新潜力实现跨品类突破:2023中国咖啡·茶·植物饮料发展研讨会在丹江口举办[J].饮料工业,2023,26(4):77-79.
      GAO H J.Exploring innovation potential and achieving cross category breakthroughs:The 2023 China coffee,tea,and plant beverage development seminar was held in Danjiangkou[J].Beverage Industry,2023,26(4):77-79.

    85. [85]

      WANG Y,LIN X, HUANG Z.Development of a fermented Cornus officinalis beverage:Optimization of fermentation conditions and evaluation of antioxidant activity[J].Journal of Food Engineering,2018,225:1-8.

    86. [86]

      文喜莲,王品杰,刘海林,等.山茱萸饮料的研制及抗氧化活性评价[J].中国果菜,2024,44(12):25-30.
      WEN X L,WANG P J,LIU H L,et al.Development and antioxidant activity evaluation of Cornus officinalis beverage[J].China Fruit & Vegetable,2024,44(12):25-30.

    87. [87]

      YADAV D,INGOLE P G.Advances in membrane technology for enantiomer separation[J].Advances in Separation Sciences,2025(13):211-225.

    88. [88]

      高欢,陈树和,严劲松,等.基于熵权-TOPSIS模型对山茱萸不同醋制方法的综合评价[J].湖北中医药大学学报,2024,26(4):43-47.
      GAO H,CHEN S H,YAN J S,et al.Comprehensive evaluation of different vinegar preparation methods of Cornus officinalis based on entropy weight-TOPSIS model[J].Journal of Hubei University of Chinese Medicine,2024,26(4):43-47.

    89. [89]

      CHAUHAN B,SINGH D P,SHARMA P.Bioactive pigments in functional foods:Insights into their diversity,extraction,and applications[J].Food Science and Biotechnology,2025,34(16):3807-3827.

    90. [90]

      河南省商业科学研究所有限责任公司,河南省科学院.一种山茱萸千层酥面包及其制备方法:202210896274.8[P].2022-10-21.
      Henan Province Institute of Commercial Science Research Co.,Ltd.,Henan Academy of Sciences.A thousand layer crispy bread made from Cornus officinalis and its preparation method:202210896274.8[P].2022-10-21.

    91. [91]

      林旭虹.一种山茱萸糕及其制备方法:201410360894.5[P].2017-08-01.
      LIN X H.The invention relates to a Cornus officinalis cake and a preparation method thereof:201410360894.5[P].2017-08-01.

    92. [92]

      赵彦博,李天浩,马常阳,等.药食同源植物山茱萸活性成分提取、健康功效与应用研究进展[J].食品科学,2024,45(20):2012-2023.
      ZHAO Y B,LI T H,MA C Y,et al.Research progress in the extraction,health benefits and application of active components from Cornus officinalis as a medicinal and edible plant[J].Food Science,2024,45(20):2012-2023.

    93. [93]

      广西壮族自治区农业科学院.一种甘薯叶饼干的加工方法:201910287552.8[P].2019-06-14.
      Guangxi Academy of Agricultural Sciences.A processing method of sweet potato leaf biscuit:201910287552.8[P].2019-06-14.

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