AIM:To explore the therapeutic effect and main molecular mechanisms of acteoside in a glaucoma model in DBA/2J mice.METHODS:Proteomics was used to compare the differentially expressed proteins of C57 and DBA/2J mice.A...AIM:To explore the therapeutic effect and main molecular mechanisms of acteoside in a glaucoma model in DBA/2J mice.METHODS:Proteomics was used to compare the differentially expressed proteins of C57 and DBA/2J mice.After acteoside administration in DBA/2J mice,anterior segment observation,intraocular pressure(IOP)monitoring,electrophysiology examination,and hematoxylin and eosin staining were used to analyze any potential effects.Immunohistochemistry(IHC)assays were used to verify the proteomics results.Furthermore,retinal ganglion cell 5(RGC5)cell proliferation was assessed with cell counting kit-8(CCK-8)assays.Serta domain-containing protein 4(Sertad4)mRNA and protein expression levels were measured by qRT-PCR and Western blot analysis,respectively.RESULTS:Proteomics analysis suggested that Sertad4 was the most significantly differentially expressed protein.Compared with the saline group,the acteoside treatment group showed decreased IOP,improved N1-P1 wave amplitudes,thicker retina,and larger numbers of cells in the ganglion cell layer(GCL).The IHC results showed that Sertad4 expression levels in DBA/2J mice treated with acteoside were significantly lower than in the saline group.Acteoside treatment could improve RGC5 cell survival and reduce the Sertad4 mRNA and protein expression levels after glutamate injury.CONCLUSION:Sertad4 is differentially expressed in DBA/2J mice.Acteoside can protect RGCs from damage,possibly through the downregulation of Sertad4,and has a potential use in glaucoma treatment.展开更多
Two phenylethanoid glycosides(PhGs), plantamajoside and acteoside, were isolated and purified from the aerial parts ofPlantago asiatica for the first time by high performance centrifugal partition chromatography(HP...Two phenylethanoid glycosides(PhGs), plantamajoside and acteoside, were isolated and purified from the aerial parts ofPlantago asiatica for the first time by high performance centrifugal partition chromatography(HPCPC) with ethyl acetate, n-butanol, ethanol and water(0.5:0.5:0.1:1, volume ratio) as solvent system. A total of 45.6 mg of plantamajoside and 293.8 mg of acteoside were purified from 1341 mg of the n-butanol extract of P. asiatica, with a purity of 〉93.3% as determined by HPLC. The HPCPC fractions were analyzed by HPLC-DAD and the structures were identified by their retention time, UV, electrospray ionization multi stage tandem mass spectrometry(ESI-MSn) in the negative ion mode, and confirmed by NMR experiments. The characteristic fragment ions of ESI-MS of the two PhGs isolated from Plantago asiatica were discussed, which are specific and useful for the identification of the structures of PhGs.展开更多
目的建立超高效液相色谱-串联质谱法(ultra high performance liquid chromatography tandem mass spectrometry,UPLCMS/MS)检测毛蕊花糖苷干预不育症模型大鼠血浆睾酮的含量,测定不育症模型大鼠血浆24 h睾酮含量,并借助药动学理论定量...目的建立超高效液相色谱-串联质谱法(ultra high performance liquid chromatography tandem mass spectrometry,UPLCMS/MS)检测毛蕊花糖苷干预不育症模型大鼠血浆睾酮的含量,测定不育症模型大鼠血浆24 h睾酮含量,并借助药动学理论定量评价干预效果。方法大鼠含药血浆以睾酮-C3为内标,用液液萃取法,以12000 r·min^(-1)离心10 min,取上清液,5μL进样分析。以Acquity UPLCⅢBEH C_(18)(50 mm×2.1 mm,1.7μm)为色谱柱;以甲醇为流动相A、5 mL·L^(-1)甲酸溶液为流动相B进行梯度洗脱,洗脱程序:流速为0.2 mL∙min^(-1);柱温为35℃;样品室温度为4℃;运行时间为10 min;质量检测器使用ESI离子源,正模式检测,睾酮及内标睾酮-C3用于定量的母→子离子对分别为m/z 289.2→97.0、m/z 291.4→101.1。借助药动学软件分析,获取空白组和毛蕊花糖苷干预组大鼠体内24 h睾酮曲线下面积(area under the curve,AUC)数据。结果睾酮质量浓度在1~1000 ng·mL^(-1)范围内呈良好的线性关系。该方法日内、日间精密度RSD值均<10.84%,日内、日间准确度RE均<10.03%,样品提取回收率为95.82%~99.17%,置于进样器于4℃冰箱及长期冷冻稳定性RSD值均<10.63%。测定结果显示,毛蕊花糖苷干预组药峰浓度(peak concentration,C_(max))为7.92 ng·mL^(-1),空白组C_(max)为10.26 ng·mL^(-1)。与空白组比较,毛蕊花糖苷干预组大鼠体内睾酮24 h总AUC相对平稳。结论建立了UPLC-MS/MS测定不育症模型大鼠血浆睾酮含量的方法。从PK/PD角度比较分析推测出,给予毛蕊花糖苷干预后,不育症模型大鼠的24 h总体睾酮可基本恢复正常水平,从而发挥改善大鼠雄性生殖功能的作用。展开更多
为优化赪桐中类叶升麻苷的纯化工艺,并分析其稳定性,试验对8种不同型号的大孔树脂进行吸附-解吸能力比较,筛选出最优的大孔树脂型号;采用Plackett-Burman结合Box-Behnken响应面法,考察上样液浓度、上样液流速、洗脱液浓度等因素水平,优...为优化赪桐中类叶升麻苷的纯化工艺,并分析其稳定性,试验对8种不同型号的大孔树脂进行吸附-解吸能力比较,筛选出最优的大孔树脂型号;采用Plackett-Burman结合Box-Behnken响应面法,考察上样液浓度、上样液流速、洗脱液浓度等因素水平,优化赪桐中类叶升麻苷的纯化工艺。通过高效液相测定纯化物在不同温度、光照、pH、抗氧化剂等环境条件下类叶升麻苷的含量。结果表明:赪桐中类叶升麻苷最佳纯化工艺条件为ADS-7型号大孔吸附树脂、上样液浓度9.0 mg/mL、上样液流速3.0 m L/min、洗脱液浓度58%,验证试验中的类叶升麻苷回收率可达到76.04%,与所建模型预测接近;稳定性试验表明,温度越高、光照时间越久、pH越高、类叶升麻苷的稳定性越差。同时,添加抗氧化剂可以明显增强其稳定性。故纯化后的类叶升麻苷应在低温、避光、酸性环境中贮藏和使用,且可通过添加不同种抗氧化剂延长其使用期限。采用Plackett-Burman结合Box-Behnken响应面法优化赪桐中类叶升麻苷纯化工艺稳定可行,可为后续抗奶牛乳房炎中草药型饲料添加剂产品的研发及产品稳定性使用提供理论依据。展开更多
基金Supported by Tianjin Key Medical Discipline(Specialty)Construction Project(No.TJYXZDXK-037A).
文摘AIM:To explore the therapeutic effect and main molecular mechanisms of acteoside in a glaucoma model in DBA/2J mice.METHODS:Proteomics was used to compare the differentially expressed proteins of C57 and DBA/2J mice.After acteoside administration in DBA/2J mice,anterior segment observation,intraocular pressure(IOP)monitoring,electrophysiology examination,and hematoxylin and eosin staining were used to analyze any potential effects.Immunohistochemistry(IHC)assays were used to verify the proteomics results.Furthermore,retinal ganglion cell 5(RGC5)cell proliferation was assessed with cell counting kit-8(CCK-8)assays.Serta domain-containing protein 4(Sertad4)mRNA and protein expression levels were measured by qRT-PCR and Western blot analysis,respectively.RESULTS:Proteomics analysis suggested that Sertad4 was the most significantly differentially expressed protein.Compared with the saline group,the acteoside treatment group showed decreased IOP,improved N1-P1 wave amplitudes,thicker retina,and larger numbers of cells in the ganglion cell layer(GCL).The IHC results showed that Sertad4 expression levels in DBA/2J mice treated with acteoside were significantly lower than in the saline group.Acteoside treatment could improve RGC5 cell survival and reduce the Sertad4 mRNA and protein expression levels after glutamate injury.CONCLUSION:Sertad4 is differentially expressed in DBA/2J mice.Acteoside can protect RGCs from damage,possibly through the downregulation of Sertad4,and has a potential use in glaucoma treatment.
基金Supported by the National Natural Science Foundation of China(No.30873364)the Natural Science Foundation of Jilin Province of China(Nos.20071102 and 2008-167)
文摘Two phenylethanoid glycosides(PhGs), plantamajoside and acteoside, were isolated and purified from the aerial parts ofPlantago asiatica for the first time by high performance centrifugal partition chromatography(HPCPC) with ethyl acetate, n-butanol, ethanol and water(0.5:0.5:0.1:1, volume ratio) as solvent system. A total of 45.6 mg of plantamajoside and 293.8 mg of acteoside were purified from 1341 mg of the n-butanol extract of P. asiatica, with a purity of 〉93.3% as determined by HPLC. The HPCPC fractions were analyzed by HPLC-DAD and the structures were identified by their retention time, UV, electrospray ionization multi stage tandem mass spectrometry(ESI-MSn) in the negative ion mode, and confirmed by NMR experiments. The characteristic fragment ions of ESI-MS of the two PhGs isolated from Plantago asiatica were discussed, which are specific and useful for the identification of the structures of PhGs.
文摘为优化赪桐中类叶升麻苷的纯化工艺,并分析其稳定性,试验对8种不同型号的大孔树脂进行吸附-解吸能力比较,筛选出最优的大孔树脂型号;采用Plackett-Burman结合Box-Behnken响应面法,考察上样液浓度、上样液流速、洗脱液浓度等因素水平,优化赪桐中类叶升麻苷的纯化工艺。通过高效液相测定纯化物在不同温度、光照、pH、抗氧化剂等环境条件下类叶升麻苷的含量。结果表明:赪桐中类叶升麻苷最佳纯化工艺条件为ADS-7型号大孔吸附树脂、上样液浓度9.0 mg/mL、上样液流速3.0 m L/min、洗脱液浓度58%,验证试验中的类叶升麻苷回收率可达到76.04%,与所建模型预测接近;稳定性试验表明,温度越高、光照时间越久、pH越高、类叶升麻苷的稳定性越差。同时,添加抗氧化剂可以明显增强其稳定性。故纯化后的类叶升麻苷应在低温、避光、酸性环境中贮藏和使用,且可通过添加不同种抗氧化剂延长其使用期限。采用Plackett-Burman结合Box-Behnken响应面法优化赪桐中类叶升麻苷纯化工艺稳定可行,可为后续抗奶牛乳房炎中草药型饲料添加剂产品的研发及产品稳定性使用提供理论依据。