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  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
  3. 食品科技研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80656
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor呂廷璋(Ting-Jang Lu)
dc.contributor.authorZhi-Yue Wangen
dc.contributor.author王之玥zh_TW
dc.date.accessioned2022-11-24T03:11:57Z-
dc.date.available2021-11-03
dc.date.available2022-11-24T03:11:57Z-
dc.date.copyright2021-11-03
dc.date.issued2021
dc.date.submitted2021-10-22
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Yi, T.; Chen, Q.; He, X.; So, S.; Lo, Y.; Fan, L.; Xu, J.; Tang, Y.; Zhang, J.; Zhao, Z.; Chen, H., Chemical quantification and antioxidant assay of four active components in Ficus hirta root using UPLC-PAD-MS fingerprinting combined with cluster analysis. Chemistry Central journal 2013, 7, 115. Yin, J.; Kouda, K.; Tezuka, Y.; Tran, Q. L.; Miyahara, T.; Chen, Y.; Kadota, S., Steroidal glycosides from the rhizomes of Dioscorea spongiosa. Journal of natural products 2003, 66, 646-650. Yongming, G.; Lihong, Y.; Wenqian, L.; Pingkai, O., Determination of diosgenin in Dioscoreo zingiberensis cell by RP-HPLC. Natural Product Research and Development 2004, 16, 331-333. Yoshikawa, M.; Murakami, T.; Komatsu, H.; Murakami, N.; Yamahara, J.; Matsuda, H., Medicinal Foodstuffs. IV. Fenugreek Seed. (1) : Structures of Trigoneosides Ia, Ib, IIa, IIb, IIIa, and IIIb, New Furostanol Saponins from the Seeds of Indian Trigonella foenum-graecum L. CHEMICAL PHARMACEUTICAL BULLETIN 1997, 45, 81-87. Yoshikawa, M.; Xu, F.; Morikawa, T.; Pongpiriyadacha, Y.; Nakamura, S.; Asao, Y.; Kumahara, A.; Matsuda, H., Medicinal Flowers. XII.<sup>1)</sup> New Spirostane-Type Steroid Saponins with Antidiabetogenic Activity from <i>Borassus flabellifer</i>. Chemical and Pharmaceutical Bulletin 2007, 55, 308-316. Yu, Y.; Hu, S.; Li, G.; Xue, J.; Li, Z.; Liu, X.; Yang, X.; Dong, B.; Wang, D.; Wang, X.; Liu, S.; Liu, J.; Chen, B.; Wang, L.; Liu, S.; Chen, Q.; Shen, C.; Wang, Z.; Wang, Y., Comparative effectiveness of Di'ao Xin Xue Kang capsule and Compound Danshen tablet in patients with symptomatic chronic stable angina. Sci Rep 2014, 4, 7058-7058. Yun, H.; Lijian, C.; Wenhong, Z.; Yuhong, D.; Yongli, W.; Qiang, W.; Ding, Z., Separation and identification of steroidal compounds with cytotoxic activity against human gastric cancer cell lines in vitro from the rhizomes of Paris polyphylla var. chinensis. Chemistry of Natural Compounds 2007, 43, 672-677. ZAN, L.-x.; ZHONG, X.-l.; SUN, W.-j., HPLC and spectrophotometry determination of saponins in Dioscorea zingiberensis CH Wright. Chinese Journal of Pharmaceutical Analysis 2008, 28, 111-114. Zhang, L.; Qiu, H.; Yuan, S.; Guo, M.; Guo, Z.; Yu, L., Revelation of mechanism for aqueous saponins content decrease during storage of Dioscorea zingiberensis C. H. Wright tubers: An essential prerequisite to ensure clean production of diosgenin. Industrial Crops and Products 2018, 125, 178-185. Zhang, R.; Huang, B.; Du, D.; Guo, X.; Xin, G.; Xing, Z.; Liang, Y.; Chen, Y.; Chen, Q.; He, Y.; Huang, W., Anti-thrombosis effect of diosgenyl saponins in vitro and in vivo. Steroids 2013, 78, 1064-1070. Zhang, Y.; Li, H.-Z.; Zhang, Y.-J.; Jacob, M. R.; Khan, S. I.; Li, X.-C.; Yang, C.-R., Atropurosides A–G, new steroidal saponins from Smilacina atropurpurea. Steroids 2006, 71, 712-719. Zhang, Y.; Yu, H. Y.; Chao, L. P.; Qu, L.; Ruan, J. Y.; Liu, Y. X.; Dong, Y. Z.; Han, L. F.; Wang, T., Anti-inflammatory steroids from the rhizomes of Dioscorea septemloba Thunb. Steroids 2016, 112, 95-102. Zhang, Z.; Gao, W.; Wang, R.; Huang, L., Changes in main nutrients and medicinal composition of Chinese yam (Dioscorea opposita) tubers during storage. Journal of food science and technology 2014, 51, 2535-2543. Zhao, Y.; Kang, L.; Yu, H.; Zhang, J.; Xiong, C.; Pang, X.; Gao, Y.; Liu, C.; Ma, B., Structure characterization and identification of steroidal saponins from the rhizomes of Anemarrhena asphodeloides by ultra performance liquid chromatography and hybrid quadrupole time-of-flight mass spectrometry. International Journal of Mass Spectrometry 2013, 341-342, 7-17.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/80656-
dc.description.abstract"薯蕷(Dioscorea spp.)與葫蘆巴(Trigonella foenum-graecum.)是中國傳統食藥材料,其生理活性差異來自於其中主要活性物質——固醇類皂苷(steroidal saponins)的多元結構,因此需要鑑別其組成的分析平臺。本研究使用超高效能液相層析串聯高解析質譜法(UHPLC-HRMS)建立鑑別47種固醇類皂苷之方法。高解析質譜分析平台藉由化合物層析性質、精確分子量、同位素分佈與分子斷裂模式可以鑑別出35種furostanol型皂苷與12種spirostanol型皂苷,其中包含10對同分異構物,有39種採用定量或半定量分析。食用薯蕷中皂苷含量遠低於藥用薯蕷與葫蘆巴,所有樣品中普遍存在的皂苷為protodioscin。葫蘆巴和薯蕷中只有43.6%的皂苷是相同的。葫蘆巴豆芽(HLB_Bu)具有29種固醇類皂苷,主要成分為furostanol型皂苷,其含量佔了總皂苷含量的95%以上。diosgenin、trillin、deltonin、protodeltonin僅存在於特定樣品中。zingiberenoside B為盾葉薯蕷中獨有的成分。三種萆薢中,只有粉萆薢中含有trigoneoside XIIIb與zingiberensis New Saponin。trigoneoside XVIIa、trigoneoside XVIIb、FU5、trigoneoside IIa與trigoneoside IIb是區分葫蘆巴豆與葫蘆巴豆芽的指標化合物。薯蕷中皂苷含量最高的是皮,其次是肉,最少的是葉子和梗。基隆山藥皮中的皂苷含量為梗中的9.39倍。由於雙葡萄醣皂苷(diosgenin diglucoside)、單醣皂苷和皂苷元等spirostanol型皂苷在天然植物中的含量低,因此需要使用三氟乙酸(trifluoroacetic acid, TFA)水解上述萃取物來增加。薯蕷中固醇皂苷不會受光照與熱加工的影響,但容易受到微生物群落(microbial community)與酵素的作用而產生結構的變化。本研究利用UHPLC-HRMS所建立的分析平台,可以有效篩選鑑別薯蕷與葫蘆巴中的固醇類皂苷,通過定量與半定量的方式靈敏地檢測出不同品種、部位以及加工方式樣品中的皂苷差異與含量,可協助薯蕷育種篩選與製程品質管控需求之應用。"zh_TW
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dc.description.tableofcontents目錄 摘要 i Abstract ii 目錄 iv 圖目錄 viii 表目錄 xv 壹、 前言 1 貳、文獻回顧 2 第一章、薯蕷與葫蘆巴 2 1.1 薯蕷 2 1.2 薯蕷的種類 3 1.3 薯蕷的生理活性 7 1.4 葫蘆巴 8 第二章、C-27固醇類皂苷 9 2.1 皂苷 9 2.2 薯蕷與葫蘆巴中C-27固醇類皂苷 10 第三章、固醇類皂苷的生理活性 14 3.1 抗腫瘤活性 14 3.2 抗炎、抗真菌活性 14 3.3 降低血醣血脂 15 3.4 溶血作用 15 3.5 體外血小板活性 15 3.6 驅蟲劑 16 3.7 皂苷生理活性與結構的關係 17 第四章、分析固醇類皂苷的方法 18 4.1 紅外線光譜法 18 4.2 紫外線光譜法 18 4.3 酸水解 18 4.4 酵素水解 18 4.5 核磁共振光谱分析 19 4.5.1 使用核磁共振氫譜判斷Aglycon和寡醣側鏈的結構 20 4.5.2 使用核磁共振碳譜判斷Aglycon和寡醣側鏈的結構 20 4.6 液相層析串聯質譜 21 4.7 固醇皂苷系統命名方法 24 叁、研究目的及架構 25 肆、材料與方法 26 第一章、實驗材料 26 1.1 薯蕷與葫蘆巴樣品列表 26 1.2 代表性基質 30 第二章、實驗藥品 31 2.1 標準品 31 2.2 化學藥品 31 第三章、實驗儀器及數據處理軟體 31 3.1 前處理儀器設備 31 3.2 高效液相層析串聯質譜儀 32 3.3 數據處理軟體 32 第四章、實驗方法 33 4.1 樣品前處理 33 4.1.1 氣炸鍋處理山藥樣品 33 4.1.2 熱風乾燥處理山藥樣品 33 4.1.3 水煮處理山藥樣品 33 4.1.4 水蒸處理山藥樣品 33 4.1.5 酸水解樣品 33 4.1.6 内部標準品的選擇、濃度選擇以及添加方式 34 4.1.7 品管樣品的製備 34 4.2 層析移動相配置 35 4.2.1 乙腈分析系統 35 4.2.2 甲醇分析系統 35 4.3 層析儀相關參數設定 35 4.4 質譜儀參數設定 37 4.5 固醇皂苷絕對定量與相對定量分析 39 伍、結果與討論 40 第一章、超高效液相層析儀分析條件評估 40 1.1 固醇皂苷的萃取 40 1.2 移動相的選擇 40 1.3 管柱的選擇 42 第二章、固醇皂苷以超高效液相層析串聯高解析質譜法分析 46 2.1 固醇皂苷以超高效液相層析儀分離 46 2.2 固醇皂苷以高解析質譜偵測 53 2.3 固醇類皂苷於高解析質譜儀上正負電模式的選擇與前驅離子的種類 53 2.3.1 F-I、F-II、F-III、F-IV、F-VI、F-VII、S型皂苷正負電模式的選擇與前驅離子的種類 53 2.3.2 F-V型皂苷正負電模式的選擇與前驅離子的種類 54 2.4 固醇類皂苷碎片離子與結構的關係 55 2.5 固醇類皂苷之代表性基質選擇以及效應評估 67 2.6 基質匹配檢量缐 69 2.7 方法定量極限 70 2.8 方法回收率 70 第三章、薯蕷與葫蘆巴中固醇皂苷的分佈情形 71 3.1 薯蕷及葫蘆巴樣品所含固醇類皂苷種數比較 71 3.2 薯蕷及葫蘆巴樣品所含固醇類皂苷總量比較 73 3.3 薯蕷及葫蘆巴樣品中固醇類皂苷比較 75 3.4 薯蕷及葫蘆巴樣品主成分分析結果 103 3.5 薯蕷中不同部位的皂苷含量和種類比較 106 3.6 加工處理後薯蕷中固醇類皂苷含量變化 107 柒、參考文獻 111 捌、附錄 123 第一章、薯蕷與葫蘆巴樣品之固醇皂苷含量玫瑰圖 123 第二章、品管樣品中固醇皂苷滯留時間與含量之品質管制 134 第三章、品管樣品固醇皂苷之含量品管圖 137 第四章、品管樣品固醇皂苷之時間品管圖 151 第五章、固醇類皂苷定性圖譜 166 第六章、Chromolith 管柱附加信息 215  
dc.language.isozh-TW
dc.subject超高效能液相層析串聯高解析質譜法zh_TW
dc.subject薯蕷zh_TW
dc.subject葫蘆巴zh_TW
dc.subject固醇類皂苷zh_TW
dc.subjectDioscoreaen
dc.subjectUHPLC-HRMSen
dc.subjectsteroidal saponinsen
dc.subjectfenugreeken
dc.title利用超高效能液相層析串聯高解析質譜法建立薯蕷與葫蘆巴中的固醇類皂苷分析平臺zh_TW
dc.titleEstablishment of analytical platform for steroidal saponins in Dioscorea spp. and Trigonella foenum-graecum. by UHPLC-MSen
dc.date.schoolyear109-2
dc.description.degree碩士
dc.contributor.oralexamcommittee陳宏彰(Hsin-Tsai Liu),張永和(Chih-Yang Tseng),王惠珠,楊登傑
dc.subject.keyword薯蕷,葫蘆巴,固醇類皂苷,超高效能液相層析串聯高解析質譜法,zh_TW
dc.subject.keywordDioscorea,fenugreek,steroidal saponins,UHPLC-HRMS,en
dc.relation.page276
dc.identifier.doi10.6342/NTU202103921
dc.rights.note同意授權(限校園內公開)
dc.date.accepted2021-10-25
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept食品科技研究所zh_TW
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