Ophiopogonin B is a kind of saponin active substance extracted and purified from Ophiopogon japonicus,and plays an antitumor role by inhibiting cancer cell adhesion,invasion and proliferation,and inducing tumor cell a...Ophiopogonin B is a kind of saponin active substance extracted and purified from Ophiopogon japonicus,and plays an antitumor role by inhibiting cancer cell adhesion,invasion and proliferation,and inducing tumor cell apoptosis and autophagy.This paper reviews recent studies on antitumor effects and molecular mechanisms of ophiopogonin B,in order to provide a theoretical basis for subsequent development and clinical application of ophiopogonin B.展开更多
OBJECTIVE: To investigate the effects of ophiopogonin D on human breast cancer MCF-7 cells METHODS: Cell viability was assessed by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide and colony formation ...OBJECTIVE: To investigate the effects of ophiopogonin D on human breast cancer MCF-7 cells METHODS: Cell viability was assessed by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide and colony formation experiments. Cell cycle was measured with cell cycle flow cytometry and a living cell assay. Apoptosis and terminal deoxynucleoitidyl transferase-mediated dUTP nick end labeling assays were performed to detect the apoptosis of MCF-7 cells induced by ophiopogonin D. Finally, Western blotting was used to explore the mechanism. RESULTS: Exposure of cells to ophiopogonin D resulted in marked decreases in viable cells and colony formation with a dose-dependent manner. Treatment of these cells with ophiopogonin D also resulted in cell cycle arrest at the G2/M phase, and increased apoptosis. Mechanistically, ophiopogonin D-induced G2/M cell cycle arrest was associated with down-regulation of cyclin BI. Furthermore, activation of caspase-8 and caspase-9 was involved in ophiopogonin D-induced apoptosis. CONCLUSION: The data suggested that ophiopogonin D inhibits MCF-7 cell growth via the induction of cell cycle arrest at the G2/M phase.展开更多
Ultrafiltration is one of the most fascinating technologies, which makes it possible to improve the quality of traditional medicines for application in the pharmaceutical industry. However, researchers have paid littl...Ultrafiltration is one of the most fascinating technologies, which makes it possible to improve the quality of traditional medicines for application in the pharmaceutical industry. However, researchers have paid little attention to the effect of ultrafiltration membrane on traditional medicines chemical constituents. In this work, Ophiopogon japonicus(L.f) Ker-Gawl. was used as an example to illuminate the influence of ultrafiltration with different material and molecular weight cut-off(MWCO) membrane on natural chemical constituents as measured by ultra-fast liquid chromatography coupled with ion trap time-of-flight mass spectrometry(UFLC-IT-TOF/MS). Our results indicated that ultrafiltration membrane significantly impacted homoisoflavonoids, especially homoisoflavonoids that were almost completely retained on the polyethersulfone(PES) membrane. We also found that the larger number of aglycone hydroxy and sugar moiety in steroid saponins, the higher the transmittance. Furthermore, the passage rate(%) of ophiogenin type saponins was higher than that of others. The possible adsorptive mechanisms were hydrogen bonding, hydrophobic interactions, and benzene ring interaction by π-π stacking. In conclusion, it is crucial to choose appropriate ultrafiltration membrane based on the characteristics of produce products for application of ultrafiltration technique.展开更多
目的建立高效液相色谱-电雾式检测器法同时测定心荣颗粒中黄芪甲苷、麦冬皂苷D、地黄苷D、五味子醇甲、芍药苷、桂皮醛的含量。方法色谱柱为Atlantis PREMIER BEH C 18色谱柱(250 mm×4.6 mm,5μm);流动相以甲醇(A)-0.1%乙酸水溶液...目的建立高效液相色谱-电雾式检测器法同时测定心荣颗粒中黄芪甲苷、麦冬皂苷D、地黄苷D、五味子醇甲、芍药苷、桂皮醛的含量。方法色谱柱为Atlantis PREMIER BEH C 18色谱柱(250 mm×4.6 mm,5μm);流动相以甲醇(A)-0.1%乙酸水溶液(B)梯度洗脱,柱温35℃,流速1 mL·min^(-1),进样量10μL。电喷雾检测器的雾化器温度为35℃,检测频率为10 Hz。结果黄芪甲苷、麦冬皂苷D、地黄苷D、五味子醇甲、芍药苷、桂皮醛在本文浓度范围内均呈良好线性关系,且平均加样回收率分别为黄芪甲苷98.9%(RSD为0.8%,n=9)、麦冬皂苷D 98.4%(RSD为1.4%,n=9)、地黄苷D 98.7%(RSD为1.4%,n=9)、五味子醇甲99.4%(RSD为0.7%,n=9)、芍药苷100.1%(RSD为0.9%,n=9)、桂皮醛101.3%(RSD为0.6%,n=9)。结论该方法可用于心荣颗粒中黄芪甲苷、麦冬皂苷D、地黄苷D、五味子醇甲、芍药苷、桂皮醛的含量测定。展开更多
目的 研究卷丹 (LiliumlancifoliumThunb .)鳞叶的化学成分。方法 用各种色谱技术进行分离和纯化 ,用MALDI TOF MS ,HR SI MS ,IR ,1 HNMR ,1 3CNMR ,DEPT ,1 H 1 HCOSY ,HMQC和HMBC等光谱和波谱技术鉴定其结构。结果 从卷丹鳞叶中分...目的 研究卷丹 (LiliumlancifoliumThunb .)鳞叶的化学成分。方法 用各种色谱技术进行分离和纯化 ,用MALDI TOF MS ,HR SI MS ,IR ,1 HNMR ,1 3CNMR ,DEPT ,1 H 1 HCOSY ,HMQC和HMBC等光谱和波谱技术鉴定其结构。结果 从卷丹鳞叶中分得 2个甾体皂苷 ,鉴定化合物 1为薯蓣皂苷元 3 O {O α L 鼠李糖基 (1→ 2 ) O [β D 木糖基(1→ 3) ] β D 葡萄糖苷 ,化合物 2为薯蓣皂苷元 3 O {O α L 鼠李糖基 (1→ 2 ) O [α L 阿拉伯糖基 (1→ 3) ] β D 葡萄糖苷。结论 化合物 2为新化合物 ,命名为卷丹皂苷A。展开更多
基金Supported by Central Government Supports Local College Reform and Development Fund Talent Training Projects(2020GSP16)Innovation and Entrepreneurship Training Program for College Students in Heilongjiang Province(202210223048).
文摘Ophiopogonin B is a kind of saponin active substance extracted and purified from Ophiopogon japonicus,and plays an antitumor role by inhibiting cancer cell adhesion,invasion and proliferation,and inducing tumor cell apoptosis and autophagy.This paper reviews recent studies on antitumor effects and molecular mechanisms of ophiopogonin B,in order to provide a theoretical basis for subsequent development and clinical application of ophiopogonin B.
基金Financial assistance was provided by grants from the National Natural Science Foundation of China(No.81173141)
文摘OBJECTIVE: To investigate the effects of ophiopogonin D on human breast cancer MCF-7 cells METHODS: Cell viability was assessed by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide and colony formation experiments. Cell cycle was measured with cell cycle flow cytometry and a living cell assay. Apoptosis and terminal deoxynucleoitidyl transferase-mediated dUTP nick end labeling assays were performed to detect the apoptosis of MCF-7 cells induced by ophiopogonin D. Finally, Western blotting was used to explore the mechanism. RESULTS: Exposure of cells to ophiopogonin D resulted in marked decreases in viable cells and colony formation with a dose-dependent manner. Treatment of these cells with ophiopogonin D also resulted in cell cycle arrest at the G2/M phase, and increased apoptosis. Mechanistically, ophiopogonin D-induced G2/M cell cycle arrest was associated with down-regulation of cyclin BI. Furthermore, activation of caspase-8 and caspase-9 was involved in ophiopogonin D-induced apoptosis. CONCLUSION: The data suggested that ophiopogonin D inhibits MCF-7 cell growth via the induction of cell cycle arrest at the G2/M phase.
基金supported by the National Natural Science Foundation of China(Nos.81473317,81274004)2011 Program for Excellent Scientific and Technological Innovation Team of Jiangsu Higher Educationa Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions
文摘Ultrafiltration is one of the most fascinating technologies, which makes it possible to improve the quality of traditional medicines for application in the pharmaceutical industry. However, researchers have paid little attention to the effect of ultrafiltration membrane on traditional medicines chemical constituents. In this work, Ophiopogon japonicus(L.f) Ker-Gawl. was used as an example to illuminate the influence of ultrafiltration with different material and molecular weight cut-off(MWCO) membrane on natural chemical constituents as measured by ultra-fast liquid chromatography coupled with ion trap time-of-flight mass spectrometry(UFLC-IT-TOF/MS). Our results indicated that ultrafiltration membrane significantly impacted homoisoflavonoids, especially homoisoflavonoids that were almost completely retained on the polyethersulfone(PES) membrane. We also found that the larger number of aglycone hydroxy and sugar moiety in steroid saponins, the higher the transmittance. Furthermore, the passage rate(%) of ophiogenin type saponins was higher than that of others. The possible adsorptive mechanisms were hydrogen bonding, hydrophobic interactions, and benzene ring interaction by π-π stacking. In conclusion, it is crucial to choose appropriate ultrafiltration membrane based on the characteristics of produce products for application of ultrafiltration technique.
文摘目的 研究卷丹 (LiliumlancifoliumThunb .)鳞叶的化学成分。方法 用各种色谱技术进行分离和纯化 ,用MALDI TOF MS ,HR SI MS ,IR ,1 HNMR ,1 3CNMR ,DEPT ,1 H 1 HCOSY ,HMQC和HMBC等光谱和波谱技术鉴定其结构。结果 从卷丹鳞叶中分得 2个甾体皂苷 ,鉴定化合物 1为薯蓣皂苷元 3 O {O α L 鼠李糖基 (1→ 2 ) O [β D 木糖基(1→ 3) ] β D 葡萄糖苷 ,化合物 2为薯蓣皂苷元 3 O {O α L 鼠李糖基 (1→ 2 ) O [α L 阿拉伯糖基 (1→ 3) ] β D 葡萄糖苷。结论 化合物 2为新化合物 ,命名为卷丹皂苷A。