FOOD SCIENCE ›› 0, Vol. ›› Issue (): 0-0.
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Received:2022-09-14
Revised:2023-08-01
Online:2023-09-15
Published:2023-09-29
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| [1] 李云,王志伟,刘大会,等.天麻化学成分研究进展[J].山东科学,2016,29(04):24-29.[2] Zhan H D , Zhou H Y , Du X L , et al. The rhizome of Gastrodia elata Blume-An ethnopharmacological review[J]. Journal of Ethnopharmacology, 2016:361-385. [3] 刘星堦,杨毅.中药天麻成分的研究Ⅰ.香荚兰醇的提取与鉴定[J].上海第一医学院学报,1958(S1):67-68.[4] 冯孝章,陈玉武,杨峻山.天麻化学成分的研究[J].化学学报,1979(03):175-182.[5] 周俊,杨雁宾,杨崇仁.天麻的化学研究——Ⅰ.天麻化学成分的分离和鉴定[J].化学学报,1979(03):183-189.[6] 周俊,浦湘渝,杨雁宾.新鲜天麻的九种酚性成分[J].科学通报,1981(18):1118-1120.[7] TAGUCHI HY, YAMASAKI K, KIM I H. Studies on the constituents of Gastrodia elata Blume[J]. Chem Pharm Bull,1981,29(1):55-62.[8] LINJH L, HAUJP, WEN K C, et al. Parishins B and C from rhizomes of Gastrodia elata[J]. Phytochemistry,1996,42(2):549-551.[9] YANG XD, ZHU J, YANG R, et al. Phenolic constituents from the rhizomes of Gastrodia elata[J]. Nat Prod Res,2007,21(2):180-186.[10] WANG L, XIAO H B, YANG L, et al. Two new phenolic glycosides from the rhizome of Gastrodia elata[J]. JAsian Nat Prod Res,2012,14(5):457-462.[11] Huang N K , Chern Y , Fang J M , et al. Neuroprotective principles from Gastrodia elata.[J]. Journal of Natural Products, 2007, 70(4):571-574.[12] 郭庆兰,林生,王亚男,等. 天麻中酚类化学成分的研究[C]//.中国化学会第八届有机化学学术会议暨首届重庆有机化学国际研讨会论文摘要集(4).2013:5.[13] 黎光富,李刚凤,史荣荣.天麻多糖化学成分与药理作用研究综述[J].现代农业科技,2016(07):289-290+292.[14] 洪其明,施松善,王彩,等.天麻中一种葡聚糖的结构鉴定[J].中药材,2010,33(05):726-729.[15] 李超,王俊儒,季晓晖,等.天麻多糖的分离及其单糖组成分析[J].中国农学通报,2008(07):89-92.[16] Qiu H , Tang W , Tong X , et al. Structure elucidation and sulfated derivatives preparation of two alpha-D-glucans from Gastrodia elata Bl. and their anti-dengue virus bioactivities[J]. Carbohydrate Research, 2007, 342(15):2230-2236.[17] 明建,桂明英,孙亚男,等.天麻水溶性多糖分离纯化及理化性质研究[J].食品科学,2008(09):344-347.[18] HS Yun-Choi, MK Pyo, KM Park. Isolation of 3-O-(4'-hydroxybenzyl)-beta-sitosterol and 4-[4'-(4"-hydroxybenzyloxy)benzyloxy]benzyl methyl ether from fresh tubers of Gastrodia elata[J]. Archives of pharmacal research, 1998, 21(3):357.[19] 李金玲,赵致,刘红昌,等.基于主成分分析的天麻矿质元素含量研究[J].中国中药杂志,2015,40(06):1123-1128.[20] 杨增明,胡忠.天麻球茎几丁质酶和β-1,3-葡聚糖酶的初步研究[J].云南植物研究,1990(04):421-426.[21] ANDERSSON M,BERGENDORFF O,NIELSEN M,et al. Inhibition of kainic acid binding to glutamate receptors by extracts of Gastrodia[J].Phytochemistry,1995,38 (4) : 835-836.[22] 张伟,宋启示.贵州大方林下栽培天麻的化学成分研究[J].中草药,2010,41(11):1782-1785.[23] Wang L ,Xiao H , Liang X , et al. Identification of phenolics and nucleoside derivatives in Gastrodia elata by HPLC-UV-MS[J]. Journal of Separation Science, 2015, 30(10).[24] Zeng Y Q ,Gu J H ,Chen L , et al. Gastrodin as a multi-target protective compound reverses learning memory deficits and AD-like pathology in APP/PS1 transgenic mice[J]. Journal of Functional Foods, 2021, 77(2021):1-8.[25] Chen TingTing,Zhou Xue,Xu YiNi,et al. Gastrodin ameliorates learning and memory impairment in rats with vascular dementia by promoting autophagy flux via inhibition of the Ca2+/CaMKII signal pathway.[J]. Aging,2021,13.[26] Tian Jinzhou,Shi Jing,Wei Mingqing,et al. Efficacy and safety of Tianmabianchunzhigan in mild to moderate vascular dementia: Protocol of a randomized controlled IIa trial.[J]. Medicine,2018,97(51).[27] 陈婷婷,周雪,徐旖旎,等.天麻超微粉调控胆碱能系统改善血管性痴呆大鼠学习记忆能力[J].中国实验方剂学杂志,2020,26(15):26-32.[28] 季宇彬,董婉睿,刘雪松,等.彝良小草坝乌天麻对东莨菪碱所致记忆障碍模型小鼠的影响及机制研究[J].中国药理学通报,2018,34(12):1684-1688.[29] Liu Zhi-hui,Ma Hao,Wang Wei-ping,et al. [Structure-activity relationship of gastrodin and parishins on learning and memory deficits induced by scopolamine].[J]. Yao xue xue bao=Acta pharmaceutica Sinica,2016,51(5).[30] Kim YH, Park JH. Vanillin and 4-hydroxybenzyl alcohol attenuate cognitive impairment and the reduction of cell proliferation and neuroblast differentiation in the dentate gyrus in a mouse model of scopolamine-induced amnesia[J].Anat Cell Biol, 2017, 50(2):143-151.[31] Huang Hong,Jiang Ning,Zhang Yi Wen,et al. Gastrodia elata Blume Ameliorates Circadian Rhythm Disorder-Induced Mice Memory Impairment[J]. Life Sciences in Space Research,2021,31(prepublish).[32] 马翠霞. 天麻改善睡眠有效部位化学成分及其活性研究[D].长春中医药大学,2020.[33] 胡鹏程,王进,李墨香,等.天麻改善小鼠睡眠作用及其机制研究[J].中草药,2019,50(13):3140-3146.[34] Choi Jae Joon,Oh Eun-Hye,Lee Mi Kyeong,et al. Gastrodiae Rhizoma Ethanol Extract Enhances Pentobarbital-Induced Sleeping Behaviors and Rapid Eye Movement Sleep via the Activation of GABA A -ergic Transmission in Rodents.[J]. Evidence-based complementary and alternative medicine : eCAM,2014,2014.[35] Zhu Hong yan,Zhang Di,Zhang Qi,et al. 4-Hydroxybenzyl alcohol derivatives and their sedative–hypnotic activities[J]. RSC Advances,2018,8(35).[36] 邢其郡. 天麻中的有效成分靶向MT_1发挥镇静安神作用的研究[D].昆明理工大学,2021.[37] JI T,YANG Z,LIU Q,et al. Vagus nerve stimulation for pediatric patients with intractable epilepsy between 3 and 6 years of age:study protocol for a double-blind,randomized control trial[J].Trials,2019,20(1):44.[38] Noor Noori,Alireza Teimouri,Ali Khajeh. Electrocardiography Parameters Changes in Epilepsy and Febrile Convulsion Children Compared with Controls[J]. Journal of Pediatric Epilepsy,2020,10(3).[39] Chen Liming,Liu Xinan,Wang Hua,et al. Gastrodin Attenuates Pentylenetetrazole-Induced Seizures by Modulating the Mitogen-Activated Protein Kinase-Associated Inflammatory Responses in Mice.[J]. Neuroscience bulletin,2017,33(3).[40] Yang Chih-Sheng,Chiu Sheng-Chun,Liu Ping-Yen,et al. Gastrodin alleviates seizure severity and neuronal excitotoxicities in the rat lithium-pilocarpine model of temporal lobe epilepsy via enhancing GABAergic transmission[J]. Journal of Ethnopharmacology,2021,269.[41] 刘春艳,柴艺汇,田兴中,等.天麻破壁粉、冻干粉对戊四唑诱导癫痫大鼠海马组织Bcl-2、Bax、Caspase-3、GAT-1mRNA及蛋白表达对比研究[J].世界科学技术-中医药现代化,2020,22(01):147-156.[42] Mi-Rae Shin,Bu-Il Seo,OJ Kwon,et al. Anticonvulsant Effect of Gastrodia Rhizome Processed at Different Steaming Times with Scavenging NO and Antiinflammatory Activity[J]. Vegetos- An International Journal of Plant Research,2017,30(2).[43] 陈露露,柴艺汇,田兴中,等.天麻普通粉、破壁粉、冻干粉对戊四唑诱导惊厥大鼠海马组织GABA-T mRNA及蛋白表达的影响[J].中国民族民间医药,2019,28(16):19-23.[44] Wander Pandora L,Boyko Edward J. Long-term fasting glycemic variability and microvascular complications in type 2 diabetes.[J]. The Journal of clinical endocrinology and metabolism,2021,106(7).[45] Bai Yu,Mo Ke,Wang Guirong,et al. Intervention of Gastrodin in Type 2 Diabetes Mellitus and Its Mechanism[J]. Frontiers in Pharmacology,2021,12.[46] Singh Brahmjot,Kumar Ajay,Singh Hasandeep,et al. Protective effect of vanillic acid against diabetes and diabetic nephropathy by attenuating oxidative stress and upregulation of NF-κB, TNF-α and COX-2 proteins in rats.[J]. Phytotherapy research : PTR,2022,36(3).[47] 赵媛媛,覃骊兰,郝二伟.高血脂症动物模型研究进展[J].中国实验方剂学杂志,2018,24(18):215-221.[48] 王文学,李燕红,朱芳芳,等.天麻对高脂大鼠降血脂的实验研究[J].黄河科技学院学报,2020,22(08):16-17+36.[49] 孙航,代蓉,宁珑,等.天麻乙醇提取物辅助降血脂保健功能评价[J].云南中医学院学报,2020,43(06):6-11.[50] 李飞琴.天麻细粉片治疗高脂血症的临床疗效观察及安全性分析[J].基层医学论坛,2017,21(22):2907-2908.[51] 王焕军,杨雯晴,于瑞雪,等.基于代谢组学技术的天麻降血压作用研究[J].中国中西医结合杂志,2020,40(03):324-330.[52] 陈湖海,黄涛,刘辉.天麻素对高血压大鼠血压变化、血管保护作用及氧化应激反应机制研究[J].世界中医药,2016,11(11):2385-2388.[53] Fang Hua,Zhang Wei jing,Zhang Jing chao,et al. Anti-hypertensive effect of Gastrodia elata Bl leaf extract in rats[J]. Tropical Journal of Pharmaceutical Research,2017,16(8).[54] Tian Zhi-Kai,Zhang Yu-Jia,Feng Zhao-Jun,et al. Nephroprotective effect of gastrodin against lead-induced oxidative stress and inflammation in mice by the GSH, Trx, Nrf2 antioxidant system, and the HMGB1 pathway[J]. Toxicology Research,2021,10(2).[55] 张逍遥,李奔,李鑫鑫,等.天麻素对小鼠酒精性肝损伤的保护作用[J].中国药理学与毒理学杂志,2021,35(10):804-805.[56] Kim Na-Hyung,Xin Ming Jie,Cha Ji-Yoon,et al. Antitumor and Immunomodulatory Effect of Gastrodia elata on Colon Cancer In Vitro and In Vivo.[J]. The American journal of Chinese medicine,2017,45(2). [57] Qinwen Bao,Li Qian,Cheng Gong,et al. Immune‐Enhancing Activity of Polysaccharides from Gastrodia elata[J]. Journal of Food Processing and Preservation,2017,41(4).[58] Huo J, Lei M, Li F, et al. Structural Characterization of a Polysaccharide from Gastrodia elata and Its Bioactivity on Gut Microbiota. Molecules. 2021 Jul 23;26(15):4443.[59] 席蕴文,康利平,孙建辉,等.赤箭和天麻调节免疫功能和肠道菌群作用比较[J].中国实验方剂学杂志,2021,27(12):117-124. |
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