生物技术进展 ›› 2026, Vol. 16 ›› Issue (2): 277-287.DOI: 10.19586/j.2095-2341.2025.0176
• 进展评述 • 上一篇
收稿日期:2025-12-08
接受日期:2026-01-08
出版日期:2026-03-25
发布日期:2026-04-27
通讯作者:
王燕
作者简介:陈泓霖 E-mail: 1022810557@qq.com;
基金资助:
Honglin CHEN(
), Jinjin SHEN, Mengge LI, Yan WANG(
)
Received:2025-12-08
Accepted:2026-01-08
Online:2026-03-25
Published:2026-04-27
Contact:
Yan WANG
摘要:
淡豆豉是我国传统药食同源中药材,应用范围广泛,于2002年被列入第一批药食同源物质目录,具有较高的研究价值与应用潜力。研究发现,淡豆豉富含挥发性物质、黄酮类、植物多糖、氨基酸等有机化合物与无机微量元素,具有改善阿尔兹海默症、降低血糖血脂、调控血管舒缩、抗骨质疏松、抗肿瘤、抗氧化、抗病毒、抗抑郁等药理活性。系统综述了淡豆豉的活性成分及其药理作用研究进展,以期为淡豆豉的开发与资源综合利用提供参考。
中图分类号:
陈泓霖, 申金金, 李梦鸽, 王燕. 淡豆豉活性成分与药理作用的研究进展[J]. 生物技术进展, 2026, 16(2): 277-287.
Honglin CHEN, Jinjin SHEN, Mengge LI, Yan WANG. Research Progress on the Active Ingredients and Pharmacological Effects of Fermented Soybean Paste[J]. Current Biotechnology, 2026, 16(2): 277-287.
| 药理作用 | 对应活性成分 |
|---|---|
| 改善阿兹海默症(抑制乙酰胆碱酯酶) | 淡豆豉异黄酮总苷元(总苷元>染料木素>黄豆苷元>黄豆黄素) |
| 降血糖 | 淡豆豉异黄酮(表现:ISSP>淡豆豉>黑豆) |
| 降血脂 | 异黄酮类成分(表现:ISSP>淡豆豉) |
| 调控血管舒缩(抑制ACE活性) | GABA(与大豆苷元、染料木素无关) |
| 抗骨质疏松 | 大豆苷元(炮制后苷元含量上升,糖苷含量则降低) |
| 抗肿瘤 | 大豆苷、大豆苷元、染料木素等(炮制后含量升高) |
| 抗氧化 | 淡豆豉异黄酮(正丁醇萃取物效果最佳) |
| 抗病毒 | 大豆苷元(减少炎症因子,缓解肺水肿,降低MPO活性) |
| 抗抑郁 | GABA(“再闷”含量迅速增加) |
| 调节肠道 | 大豆低聚糖(可与有益菌分泌的糖蛋白结合) |
表1 淡豆豉的药理作用及对应的活性成分
Table 1 Pharmacological effects and corresponding active ingredients of fermented soybean paste
| 药理作用 | 对应活性成分 |
|---|---|
| 改善阿兹海默症(抑制乙酰胆碱酯酶) | 淡豆豉异黄酮总苷元(总苷元>染料木素>黄豆苷元>黄豆黄素) |
| 降血糖 | 淡豆豉异黄酮(表现:ISSP>淡豆豉>黑豆) |
| 降血脂 | 异黄酮类成分(表现:ISSP>淡豆豉) |
| 调控血管舒缩(抑制ACE活性) | GABA(与大豆苷元、染料木素无关) |
| 抗骨质疏松 | 大豆苷元(炮制后苷元含量上升,糖苷含量则降低) |
| 抗肿瘤 | 大豆苷、大豆苷元、染料木素等(炮制后含量升高) |
| 抗氧化 | 淡豆豉异黄酮(正丁醇萃取物效果最佳) |
| 抗病毒 | 大豆苷元(减少炎症因子,缓解肺水肿,降低MPO活性) |
| 抗抑郁 | GABA(“再闷”含量迅速增加) |
| 调节肠道 | 大豆低聚糖(可与有益菌分泌的糖蛋白结合) |
| [1] | 国家药典委员会. 中华人民共和国药典:一部 [S].北京:中国医药科技出版社,2020:342. |
| [2] | 蒋立文,廖卢燕,刘嘉,等.浏阳豆豉挥发性成分的研究[J].中国酿造,2011,30(5):131-133. |
| JIANG L W, LIAO L Y, LIU J, et al.. Volatile substances in Liuyang Douchi[J]. China Brew., 2011, 30(5): 131-133. | |
| [3] | 李刚,谢卫华,马书伟,等.淡豆豉中香气成分的初步研究[J].江西中医药大学学报,2024,36(6):60-65. |
| LI G, XIE W H, MA S W, et al.. Preliminary study on the aroma components of Sojae Semen Praeparatum[J]. J. Jiangxi Univ. Chin. Med., 2024, 36(6): 60-65. | |
| [4] | 柴川,于生,崔小兵,等.静态顶空-气质联用分析淡豆豉中挥发性成分[J].食品研究与开发,2013,34(14):81-84. |
| CHAI C, YU S, CUI X B, et al.. Analysis of volatile components in Semen Sojae Praepatum with automatic static headspace and gas chromatography-mass spectrometry[J]. Food Res. Dev., 2013, 34(14): 81-84. | |
| [5] | 隋利强,李鸷,高琳,等.SPME-GC-MS法分析淡豆豉发酵过程中挥发性成分转化[J].中成药,2019,41(11):2800-2806. |
| SUI L Q, LI Z, GAO L, et al.. SPME-GC-MS analysis of volatile components transformation in fermented Douchi[J]. Chin. Tradit. Pat. Med., 2019, 41(11): 2800-2806. | |
| [6] | 曲丽萍,范国荣,宓鹤鸣,等.反相高效液相制备色谱法分离淡豆豉中的大豆苷、黄豆苷、染料木苷[J].第二军医大学学报,2006(3):325-326. |
| QU L P, FAN G R, MI H M, et al.. Separation of soybean isoflavone glucosides from Semen Sojae Praeparatum by preparative reversed-phase high performance liquid chromatography[J]. Acad. J. Second. Mil. Med. Univ., 2006(3): 325-326. | |
| [7] | 陈岑,宋粉云,范国荣,等.ASE-HPLC-ESI-IT/MS法分析淡豆豉中大豆异黄酮类化合物[J].广东药学院学报,2014,30(2):164-168. |
| CHEN C, SONG F Y, FAN G R, et al.. Analysis of soybean isoflavones in Semen Sojae Praeparatum by ASE-HPLC-ESI-IT/MS[J]. J. Guangdong Pharm. Univ., 2014, 30(2): 164-168. | |
| [8] | 张景,冯亭亭,张明柱.UPLC同时测定淡豆豉中6种异黄酮的含量[J].中药材,2016,39(11):2563-2565. |
| ZHANG J, FENG T T, ZHANG M Z. Simultaneous determination of six isoflavones in fermented soybean by UPLC[J]. J. Chin. Med. Mater., 2016, 39(11): 2563-2565. | |
| [9] | 李函阳,邱智东,苏文龙,等.栀子和淡豆豉不同比例配伍对栀子豉汤中黄酮类成分含量的影响[J].中国药房,2020,31(9):1103-1107. |
| LI H Y, QIU Z D, SU W L, et al.. Effect of different compatibility ratio of Gardenia jasminoides to fermented soybean on the content of flavonoids in zhizichi decoction[J]. China Pharm., 2020, 31(9): 1103-1107. | |
| [10] | 张静,葛喜珍,田平芳,等.淡豆豉中豆豉多糖、大豆异黄酮的超声提取及含量检测[J].中药材,2007,30(12):1532-1534. |
| ZHANG J, GE X Z, TIAN P F, et al.. Ultrasonic extraction and content detection of Douchi polysaccharides and soybean isoflavones in Semen Sojae Preparata[J]. J. Chin. Med. Mater., 2007, 30(12): 1532-1534. | |
| [11] | 张静,林强,田平芳,等.淡豆豉中多糖的分离纯化及结构特征研究[J].化学世界,2008,49(10):618-620. |
| ZHANG J, LIN Q, TIAN P F, et al.. Isolation, purification and structure chareacterization of polysaccharides from Semen Sojae Preparatum[J]. Chem. World, 2008, 49(10): 618-620. | |
| [12] | 郭婕,李季平.微波辅助法提取淡豆豉中的多糖[J].中国果菜,2019,39(9):1-4. |
| GUO J, LI J P. Microwave-assisted extraction of polysaccharide from Semen Sojae Praeparatum[J]. China Fruit aVegetable, 2019, 39(9): 1-4. | |
| [13] | 劳凤云,李小娜,王洪波.淡豆豉多糖的提取工艺研究[J].现代预防医学,2008,35(9):1691-1692. |
| LAO F Y, LI X N, WANG H B. Study on the extraction process of polysaccharide from fermented soybean[J]. Mod. Prev. Med., 2008, 35(9): 1691-1692. | |
| [14] | 李朋月,朱艳苹,国旭丹,等.淡豆豉多糖及其酶解产物的理化性质和抗氧活性研究[J].中国粮油学报,2020,35(10):42-47. |
| LI P Y, ZHU Y P, GUO X D, et al.. Physicochemical properties and antioxidant activity of Sojae Semen Praeparatum polysaccharide and its enzymolysis products[J]. J. Chin. Cereals Oils Assoc., 2020, 35(10): 42-47. | |
| [15] | PARK K B, HOH S. Enhancement of γ-aminobutyric acid production in Chungkukjang by applying a Bacillus subtilis strain expressing glutamate decarboxylase from Lactobacillus brevis [J]. Biotechnol. Lett., 2006, 28(18): 1459-1463. |
| [16] | 柴川,周礼明,崔小兵,等.基于液质联用技术对不同产地淡豆豉核苷和氨基酸类成分的分析[J].中国实验方剂学杂志,2016,22(23):60-67. |
| CHAI C, ZHOU L M, CUI X B, et al.. Determination of amino acids and nucleosides in Semen Sojae Praeparatum from different regions by using UFLC-MS/MS[J]. Chin. J. Exp. Tradit. Med. Formulae, 2016, 22(23): 60-67. | |
| [17] | 李萍萍,崔元璐,蒋庆峰.柱前衍生RP-HPLC法分析淡豆豉和大豆中氨基酸[J].中草药,2013,44(9):1199-1202. |
| LI P P, CUI Y L, JIANG Q F. Analysis on amino acids in Sojae Semen Preparatrm and Glycine max by pre-column derivatization RP-HPLC[J]. Chin. Tradit. Herb. Drugs, 2013, 44(9): 1199-1202. | |
| [18] | 宓月光,王伟明,孙银玲,等.淡豆豉和豆豉纯种发酵过程中游离氨基酸的含量变化[J].食品与发酵工业,2019,45(23):257-261. |
| MI Y G, WANG W M, SUN Y L, et al.. Dynamic quantity changes of free amino acids during Semen Sojae Praeparatum and black beans fermentation using pure strain[J]. Food Ferment. Ind., 2019, 45(23): 257-261. | |
| [19] | 孙凌,邱霞.中西医治疗老年痴呆症的研究进展[J].中国疗养医学,2015,24(3):232-234. |
| SUN L, QIU X. Research progress of treating Alzheimer's disease with traditional Chinese and western medicine[J]. Chin. J. Conval. Med., 2015, 24(3): 232-234. | |
| [20] | 张于,程伟.中西医治疗阿尔兹海默病的研究现状[J].中医临床研究,2012,4(13):115-117. |
| ZHANG Y, CHENG W. Research status on treating AD in the integrative medicine[J]. Clin. J. Chin. Med., 2012, 4(13): 115-117. | |
| [21] | 蔡标,汪远金,王艳,等.大豆异黄酮对阿尔茨海默病大鼠乙酰胆碱代谢的影响[J].安徽中医学院学报,2013(1):57-60. |
| CAI B, WANG Y J, WANG Y, et al.. Effect of soybean isoflavone on acetylcholine metabolism in rats with Alzheimer's disease[J]. J. Anhui Tradit. Chin. Med. Coll., 2013(1): 57-60. | |
| [22] | 张景,冯亭亭,张明柱.淡豆豉中异黄酮含量测定及其抑制乙酰胆碱酯酶活性研究[J].天然产物研究与开发,2017,29(2):310-315. |
| ZHANG J, FENG T T, ZHANG M Z. Content determination and acetylcholinesterase inhibitory effect of isoflavones from fermented soybean[J]. Nat. Prod. Res. Dev., 2017, 29(2): 310-315. | |
| [23] | 张琛,李存能,亓超,等.基于生信分析和动力学模拟探究淡豆豉防治阿尔茨海默病的物质基础与作用机制[J].中国现代医药杂志,2024,26(9):14-20. |
| ZHANG C, LI C N, QI C, et al.. Exploring the material basis and mechanism of action of tempeh against Alzheimer's disease based on bioconfidence analysis and kinetic simulation[J]. Mod. Med. J. China, 2024, 26(9): 14-20. | |
| [24] | 郭瑞华,翟丽,刘正猛,等.豆豉及其多糖对α-葡萄糖苷酶抑制作用的研究及豆豉中降糖有效成分的初步分析[J].中药材,2005,28(1):38-40. |
| GUO R H, ZHAI L, LIU Z M, et al.. Study on inhibition on α-glucosidase and analysis of the hypoglycemic composition of lobster sauce[J]. J. Chin. Med. Mater., 2005, 28(1): 38-40. | |
| [25] | 苏杰英,张金苹.α-糖苷酶抑制剂用于2型糖尿病患者的中国证据[J].药品评价,2015,12(5):27-30. |
| SU J Y, ZHANG J P. Evidence of α-glucosidase inhibitorsfor Chinese type 2 diabetes patients[J]. Drug Eval., 2015, 12(5): 27-30. | |
| [26] | CHEN J, CHENG Y Q, YAMAKI K, et al.. Anti-α-glucosidase activity of Chinese traditionally fermented soybean (Douchi)[J]. Food Chem., 2007, 103(4): 1091-1096. |
| [27] | FUJITA H, YAMAGAMI T, OHSHIMA K. Fermented soybean-derived water-soluble Touchi extract inhibits α-glucosidase and is antiglycemic in rats and humans after single oral treatments[J]. J. Nutr., 2001, 131(4): 1211-1213. |
| [28] | 葛喜珍,葛喜亮,林强,等.淡豆豉与黑大豆降糖作用比较[J].中药药理与临床,2008,24(3):76-77. |
| GE X Z, GE X L, LIN Q, et al.. Comparison of hypoglycemic effect between fermented soybean and black soybean[J]. Pharmacol. Clin. Chin. Mater. Med., 2008, 24(3): 76-77. | |
| [29] | RUBIO L A, ARANDA-OLMEDO I, CONTRERAS S, et al.. Inclusion of limited amounts of extruded legumes plus cereal mixes in normocaloric or obesogenic diets for rats: effects on intestinal microbiota composition[J]. J. Sci. Food Agric., 2020, 100(15): 5546-5557. |
| [30] | 王鑫国,葛喜珍,白霞,等.淡豆豉对去卵巢大鼠脂代谢的影响[J].中药材,2003,26(9):652-654. |
| WANG X G, GE X Z, BAI X, et al.. Effects of Semen Sojae Preparatum on lipid metabolism in ovariectomized rat[J]. J. Chin. Med. Mater., 2003, 26(9): 652-654. | |
| [31] | 葛喜珍,林强,霍清,等.淡豆豉煎剂对高脂血症大鼠主动脉晚期糖化终末产物的抑制作用[J].中药药理与临床,2006,22(3):101-103. |
| GE X Z, LIN Q, HUO Q, et al.. Effects of Sojae Semen Praeparatumi on advanced glycosylation end products(AGEs) in aortae and serum levels of lipid peroxide in hyperlipemia rats[J]. Pharmacol. Clin. Chin. Mater. Med., 2006, 22(3): 101-103. | |
| [32] | 马晶鑫,郭金洲,陈海宁,等.淡豆豉异黄酮通过PPARγ/LXRα/ABCA1信号通路改善动脉粥样硬化小鼠脂质代谢的作用[J].中国实验方剂学杂志,2022,28(11):110-118. |
| MA J X, GUO J Z, CHEN H N, et al.. Isoflavones from Sojae Semen Praeparatum regulate lipid metabolism in atherosclerotic mice through PPARγ/LXRα/ABCA1 signaling pathway[J]. Chin. J. Exp. Tradit. Med. Formulae, 2022, 28(11): 110-118. | |
| [33] | ASADA Y, YAMASHITA A, SATO Y, et al.. Thrombus formation and propagation in the onset of cardiovascular events[J]. J. Atheroscler. Thromb., 2018, 25(8): 653-664. |
| [34] | 平田恭信,白松,佟彤.NO与动脉粥样硬化[J].日本医学介绍,2005(7):324-325. |
| PING T, BAI S, TONG T. NO and atherosclerosis[J]. Prog. Jpn. Med., 2005(7): 324-325. | |
| [35] | 曹秀莲,牛丽颖,王鑫国,等.淡豆豉提取物对早期动脉粥样硬化损伤大鼠血清NO ET的影响[J].辽宁中医杂志,2009,36(8):1425-1426. |
| CAO X L, NIU L Y, WANG X G, et al.. Effect of Semen Sojae Preparata extract on serum NO ET in rats with early atherosclerosis injury[J]. Liaoning J. Tradit. Chin. Med., 2009, 36(8): 1425-1426. | |
| [36] | 牛丽颖,任艳青,王鑫国.淡豆豉异黄酮对增殖血管平滑肌细胞JAK2/STAT3信号转导通路的影响[J].中国药理学通报,2009,25(11):1487-1490. |
| NIU L Y, REN Y Q, WANG X G. Effect of Semen Sojae Preparatum isoflavone on JAK2/STAT3 signal transduction pathway in proliferated vascular smooth muscle cell[J]. Chin. Pharmacol. Bull., 2009, 25(11): 1487-1490. | |
| [37] | 任艳青,李清,刘姣,等.淡豆豉异黄酮对AngⅡ诱导大鼠血管平滑肌细胞周期的影响[J].中药药理与临床,2011,27(3):44-47. |
| REN Y Q, LI Q, LIU J, et al.. Effect of Semen Sojac Preparatum isoflavonc on rat vascular smooth muscle cell cycle induced by angiotensin Ⅱ[J]. Pharmacol. Clin. Chin. Mater. Med., 2011, 27(3): 44-47. | |
| [38] | 牟彦竹,肖文惠,张莉雯,等.淡豆豉水煎液对体外凝血酶活性抑制作用[J].湖北工业大学学报,2025,40(2):62-67. |
| MOU Y Z, XIAO W H, ZHANG L W, et al.. Study on the inhibitory effect of water decoction from Dandouchi on thrombin activity in vitro [J]. J. Hubei Univ. Technol., 2025, 40(2): 62-67. | |
| [39] | 周权,张高传,章家敏,等.药食同源类中药抗高血压基础研究进展[J].世界科学技术-中医药现代化,2025,27(1):132-142. |
| ZHOU Q, ZHANG G C, ZHANG J M, et al.. Progress in basic research on antihypertensive effects of medicinal and edible homologous traditional Chinese medicine[J]. World Sci. Technol. Mod. Tradit. Chin. Med., 2025, 27(1): 132-142. | |
| [40] | 李刚,马书伟,王立元,等.淡豆豉抑制ACE作用及其活性成分初步研究[J].时珍国医国药,2025,36(14):2630-2635. |
| LI G, MA S W, WANG L Y, et al.. A preliminary study on the ACE inhibitory effect and active components of Sojae Semen Praeparatum[J]. J. Li Shizhen Tradit. Chin. Med., 2025, 36(14): 2630-2635. | |
| [41] | 王淑豪,赵京涛,王彬.γ-氨基丁酸的生物学功能[J].廊坊师范学院学报(自然科学版),2023,23(3):32-36. |
| WANG S H, ZHAO J T, WANG B. Biological functions of γ-aminobutyric acid[J]. J. Langfang Norm. Univ. Nat. Sci. Ed., 2023, 23(3): 32-36. | |
| [42] | 冯薇,刘敏彦,李琛,等.淡豆豉化学成分及其体外促成骨细胞增殖活性研究[J].中国药学杂志,2016,51(3):203-206. |
| FENG W, LIU M Y, LI C, et al.. Chemical constituents of Semen Sojae Praeparatum and their proliferation activity on rat osteoblasts[J]. Chin. Pharm. J., 2016, 51(3): 203-206. | |
| [43] | 汪远金,许金林,张杰,等.大豆异黄酮对去卵巢大鼠骨质疏松症防治作用的研究[J].中国中医药科技,2004,11(3):156-157. |
| WANG Y J, XU J L, ZHANG J, et al.. Study on protective effect of soybean isoflavone castrate rats' osteoporosis[J]. Chin. J. Tradit. Med. Sci. Technol., 2004, 11(3): 156-157. | |
| [44] | 李琛,师哲,冯薇,等.淡豆豉异黄酮对大鼠成骨细胞增殖及雌激素受体表达的影响[J].中成药,2015,37(9):1901-1905. |
| LI C, SHI Z, FENG W, et al.. Effects of isoflavone from Sojae Semen Preparatum on the proliferation and expression of estrogen receptor in rat osteoblasts[J]. Chin. Tradit. Pat. Med., 2015, 37(9): 1901-1905. | |
| [45] | 牛丽颖,王鑫国,任艳青,等.淡豆豉提取物对去卵巢骨质疏松大鼠骨微细结构的改善作用[J].中成药,2010,32(11):1874-1876. |
| NIU L Y, WANG X G, REN Y Q, et al.. Effect of Semen Sojae Preparata extract on improving bone microstructure in ovariectomized osteoporosis rats[J]. Chin. Tradit. Pat. Med., 2010, 32(11): 1874-1876. | |
| [46] | 陈彩玲,吴铁,杨亚军,等.骨质疏松与动脉粥样硬化:基于Ox-LDL的转导作用[J].中国药理学通报,2020,36(6):747-750. |
| CHEN C L, WU T, YANG Y Jet al.. Osteoporosis and atherosclerosis: ox-LDL based transduction[J]. Chin. Pharmacol. Bull., 2020, 36(6): 747-750. | |
| [47] | 牛丽颖,杜红娜,刘姣,等.淡豆豉炮制前后异黄酮组分含量的比较[J].大豆科学,2008,27(4):672-674. |
| NIU L Y, DU H N, LIU J, et al.. Comparative analysis of isoflavone contents in Semen Sojae Praeparatum before and after processing[J]. Soybean Sci., 2008, 27(4): 672-674. | |
| [48] | PICHERIT C, COXAM V, BENNETAU-PELISSERO C, et al.. Daidzein is more efficient than genistein in preventing ovariectomy-induced bone loss in rats[J]. J. Nutr., 2000, 130(7): 1675-1681. |
| [49] | 李娜,黄庆柏.淡豆豉中的异黄酮成分及药理作用与临床应用[J].中国现代中药,2008,10(7):18-19. |
| LI N, HUANG Q B. Isoflavones in fermented soybean, their pharmacological effects and clinical application[J]. Mod. Chin. Med., 2008, 10(7): 18-19. | |
| [50] | 谭颖颖,张琪.淡豆豉与黑豆提取物抗癌细胞增殖作用及4种异黄酮成分的含量测定[J].中华中医药杂志,2012,27(6):1547-1549. |
| TAN Y Y, ZHANG Q. Anti-proliferative effects of Semen Sojae Praeparatum and black soybean extract and the content determination of four isoflavone components[J]. China J. Tradit. Chin. Med. Pharm., 2012, 27(6): 1547-1549. | |
| [51] | 徐彬人,蔡琨,许丽婷,等.淡豆豉异黄酮在雌激素诱导的MCF-7细胞增殖过程中调控作用研究[J].时珍国医国药,2020,31(10):2358-2360. |
| XU B R, CAI K, XU L T, et al.. Study on the regulatory effect of isoflavones from fermented soybean on the proliferation of MCF-7 cells induced by estrogen[J]. Lishizhen Med. Mater. Med. Res., 2020, 31(10): 2358-2360. | |
| [52] | 张进召,刘松,潘双,等.淡豆豉提取物通过调控LncRNA miR155HG/miR-409-3p表达抑制肺癌细胞的增殖、迁移和侵袭[J].中国老年学杂志,2021,41(14):3077-3082. |
| ZHANG J Z, LIU S, PAN S, et al.. The extract of fermented soybean inhibits the proliferation, migration and invasion of lung cancer cells by regulating the expression of LncRNA miR155HG/miR-409-3p[J]. Chin. J. Gerontol., 2021, 41(14): 3077-3082. | |
| [53] | FARÍAS J G, MOLINA V M, CARRASCO R A, et al.. Antioxidant therapeutic strategies for cardiovascular conditions associated with oxidative stress[J/OL]. Nutrients, 2017, 9(9): 966[2026-03-15]. . |
| [54] | 王翔,莫佳佳,周鹏,等.基于Nrf2/HO-1信号通路的中药及其有效成分抗心血管疾病作用研究进展[J].中国实验方剂学杂志,2020,26(10):227-234. |
| WANG X, MO J J, ZHOU P, et al.. Effect of traditional Chinese medicine and its active ingredients on cardiovascular disease based on Nrf2/HO-1 signaling pathway[J]. Chin. J. Exp. Tradit. Med. Formulae, 2020, 26(10): 227-234. | |
| [55] | 郭金洲,杨翠萍,徐彬人,等.淡豆豉异黄酮通过上调Nrf2/HO-1发挥对EA.hy926细胞氧化损伤的保护作用[J].中华中医药学刊,2021,39(6):93-97. |
| GUO J Z, YANG C P, XU B R, et al.. Isoflavones from Dandouchi(Semen Sojae Preparatum) play a protective role in oxidative damage of EA. hy926 cells by upregulation of Nrf2/HO-1[J]. Chin. Arch. Tradit. Chin. Med., 2021, 39(6): 93-97. | |
| [56] | 徐彬人,黄林艳,杨翠萍,等.淡豆豉异黄酮的提取分离及对DPPH自由基清除能力的研究[J].贵州中医药大学学报,2020,42(3):91-94. |
| XU B R, HUANG L Y, YANG C P, et al.. The isoflavone extraction and separation of SSP and their capacity of DPPH radical scavenging[J]. J. Guizhou Univ. Tradit. Chin. Med., 2020, 42(3): 91-94. | |
| [57] | 刘俊泽,胡力铭,王仁广,等.淡豆豉提取物不同溶剂萃取物的抗氧化活性[J].食品与机械,2022,38(3):184-188. |
| LIU J Z, HU L M, WANG R G, et al.. Study on antioxidant activity of extracts from different polar solvents of extract of fermented soya beans[J]. Food Mach., 2022, 38(3): 184-188. | |
| [58] | 黄文娟,张艳丽,刘晶,等.淡豆豉、大豆黄卷中总异黄酮含量差异及退热作用研究[J].新疆医科大学学报,2019,42(9):1198-1201. |
| HUANG W J, ZHANG Y L, LIU J, et al.. Study on the relationship between the total isoflavone content of Sojae Semen Praeparatum and sojae semen germinatum and antipyretic effect of rats[J]. J. Xinjiang Med. Univ., 2019, 42(9): 1198-1201. | |
| [59] | HORIO Y, ISEGAWA Y, SHICHIRI M. Daidzein phosphorylates and activates 5-lipoxygenase via the MEK/ERK pathway: a mechanism for inducing the production of 5-lipoxygenase metabolite that inhibit influenza virus intracellular replication[J/OL]. J. Nutr. Biochem., 2023, 114: 109276[2026-01-15]. . |
| [60] | FENG G, SUN B, LI T Z. Daidzein attenuates lipopolysaccharide-induced acute lung injury via toll-like receptor 4/NF-kappaB pathway[J]. Int. Immunopharmacol., 2015, 26(2): 392-400. |
| [61] | 何泳愉.淡豆豉水煎液抗流感病毒作用及机制研究[D].杭州:浙江省医学科学院,2023. |
| [62] | 路鑫怡,何泳愉,杨灿,等.基于网络药理学及验证实验探讨淡豆豉治疗流感的作用机制[J].中药药理与临床,2022,38(6):102-109. |
| LU X Y, HE Y Y, YANG C, et al.. Mechanism of Sojae Semen Praeparatum in the treatment of influenza based on network pharmacology and preliminary validation experiments[J]. Pharmacol. Clin. Chin. Mater. Med., 2022, 38(6): 102-109. | |
| [63] | 冯驰,马书伟,周立分,等.纯种发酵淡豆豉的抗抑郁作用研究[J].药物评价研究,2024,47(6):1224-1231. |
| FENG C, MA S W, ZHOU L F, et al.. Antidepressant effect of pure fermented Sojae Semen Praeparatum[J]. Drug Eval. Res., 2024, 47(6): 1224-1231. | |
| [64] | 陈青峰,贺婧,谢小梅,等.淡豆豉炮制中γ-氨基丁酸含量测定及其抗抑郁作用研究[J].药物评价研究,2021,44(4):688-694. |
| CHEN Q F, HE J, XIE X M, et al.. Determination of content of γ-aminobutyric acid and its antidepressant effect at different time points during processing of Sojae Semen Praeparatum[J]. Drug Eval. Res., 2021, 44(4): 688-694. | |
| [65] | 胡琪,陈丽艳,郑宏宇,等.基于网络药理学及分子对接探讨淡豆豉抗抑郁的作用机制[J].现代药物与临床,2022,37(7):1473-1481. |
| HU Q, CHEN L Y, ZHENG H Y, et al.. Mechanism of Sojae Semen Praeparatum in treatment of anti-depression based on network pharmacology and molecular docking[J]. Drugs Clin., 2022, 37(7): 1473-1481. | |
| [66] | 王继双,何焱,张文静,等.木犀草素的药理作用研究进展[J].生命科学,2013,25(6):560-565. |
| WANG J S, HE Y, ZHANG W J, et al.. Advances in studies on pharmacological effects of luteolin[J]. Chin. Bull. Life Sci., 2013, 25(6): 560-565. | |
| [67] | 伊金月,张智博,姚远,等.木犀草素对Aβ25-35损伤PC12细胞氧化应激及Tau蛋白磷酸化的影响[J].现代中药研究与实践,2021,35(2):22-25. |
| YI J Y, ZHANG Z B, YAO Y, et al.. Effect of luteolin on oxidative stress and tau protein phosphorylation of Aβ25-35-induced PC12 cells injury[J]. Res. Pract. Chin. Med., 2021, 35(2): 22-25. | |
| [68] | PISONERO-VAQUERO S, MARTÍNEZ-FERRERAS Á, GARCÍA-MEDIAVILLA M V, et al.. Quercetin ameliorates dysregulation of lipid metabolism genes via the PI3K/AKT pathway in a diet-induced mouse model of nonalcoholic fatty liver disease[J]. Mol. Nutr. Food Res., 2015, 59(5): 879-893. |
| [69] | 毛峻琴,徐超斗,陈大贵,等.淡豆豉提取物对急性辐射损伤小鼠的保护作用[J].解放军药学学报,2014,30(2):110-113. |
| MAO J Q, XU C D, CHEN D G, et al.. Protective effect of extracts from Semen Sojae Praeparatum (ESSP)on acute radiation injured mice[J]. Pharm. J. Chin. People's Liberation Army, 2014, 30(2): 110-113. | |
| [70] | 李晶,孔维松,刘欣,等.大马士革玫瑰中1个异黄酮类化合物及其抗菌活性研究[J].中国中药杂志,2018,43(2):332-335. |
| LI J, KONG W S, LIU X, et al.. A new isoflavone derivative from Rosa damascena and its antibacterial activity[J]. China J. Chin. Mater. Med., 2018, 43(2): 332-335. | |
| [71] | 石治强,吴雨珊,杨文钰,等.大豆异黄酮抑菌的研究进展[J].大豆科学,2011,30(6):1047-1050. |
| SHI Z Q, WU Y S, YANG W Y, et al.. Advanced research of soybean isoflavones on bactriostasis[J]. Soybean Sci., 2011, 30(6): 1047-1050. | |
| [72] | 胡斌,王秋红,姜海,等.淡豆豉抗菌活性及化学成分分析[J].中国实验方剂学杂志,2019,25(6):163-167. |
| HU B, WANG Q H, JIANG H, et al.. Antibacterial activity and chemical constituents of Sojae Semen Praeparatum[J]. Chin. J. Exp. Tradit. Med. Formulae, 2019, 25(6): 163-167. | |
| [73] | 李明,卢慧,徐振江.黄酮类天然产物调控肠道微生物改善炎症性肠病的研究进展[J].河南工业大学学报(自然科学版),2020,41(3):118-129. |
| LI M, LU H, XU Z J. Research progress on inflammatory bowel disease alleviation by flavonoids natural products through regulating intestinal microbiota[J]. J. Henan Univ. Technol. Nat. Sci. Ed., 2020, 41(3): 118-129. | |
| [74] | 陈丽艳,官雪莲,张蕾,等.淡豆豉对人体肠道六种常住菌的调节作用[J].中国微生态学杂志,2017,29(10):1122-1126. |
| CHEN L Y, GUAN X L, ZHANG L, et al.. Regulatory effect of Sojae Semen Praeparatum on 6 common gut microbes[J]. Chin. J. Microecol., 2017, 29(10): 1122-1126. | |
| [75] | 徐超斗,狄亚敏,陶胜源,等.大豆低聚糖对肠道双歧杆菌生长的选择性促进作用[J].中国药物应用与监测,2005,2(2):54-55. |
| XU C D, DI Y M, TAO S Y, et al.. Promoting effect of SBOS on the growth of the intestinal Bifidobacteria[J]. Chin. J. Drug Appl. Monit., 2005, 2(2): 54-55. | |
| [76] | 刘俊泽.淡豆豉炮制机理及栀子豉汤抗急性酒精性肝损伤的作用机制研究[D].长春:长春中医药大学,2022. |
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