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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Assembly of beta-Cyclodextrin with 3S-Tetrahydro-beta-carboline-3-carboxylic Acid and Self-Assembly of 6-(3'S-Carboline-3'-carboxylaminoethylamino)-6-deoxy-beta-cyclodextrin:Approaches to Enhance Anti-Oxidation Stability and Anti-Thrombotic Potency
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Assembly of beta-Cyclodextrin with 3S-Tetrahydro-beta-carboline-3-carboxylic Acid and Self-Assembly of 6-(3'S-Carboline-3'-carboxylaminoethylamino)-6-deoxy-beta-cyclodextrin:Approaches to Enhance Anti-Oxidation Stability and Anti-Thrombotic Potency

机译:β-环糊精与3S-Tetrahydro-β-咔啉-3-羧酸的组装和6-(3'S-Carboline-3'-羧氨基乙基氨基)-6-脱氧-β-环糊精的自组装:增强抗氧化性的方法稳定性和抗血栓形成能力

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3S-1,2,3,4-Teteahydro-beta-carboline-3-carboxylic acid(THCA)isolated from Bulbus allii macrostemi was identified as the active antiplatelet aggregation ingredient.However,the very poor water solubility and the shortcoming of being oxidized easily in vivo seriously limit the clinical application of THCA.In the present study,two strategies were used to reduce this tendency.First,the inclusion complex of THCA with beta-cyclodextrin(beta-CD)was prepared.Spectral studies identified that the inclusion complex(beta-CDCD_(1,2)/THCA)was in equilibrium between beta-CD/THCA and beta-CD2/THCA,and the proportion of two isomers was beta-CD concentration dependent;it was 89% vs 11% in our study.The oxidation of both THCA and beta-CDCD_(1,2)/THCA by H2O2 followed first-order kinetics,and 35% of THCA and 33% of beta-CD_(1,2)/THCA were oxidized during the monitoring period.In vitro antiplatelet aggregation and in vivo oral administration antithrombotic activity of THCA was largely increased via inclusion complexation with beta-CD.Second,a novel conjugate 6-(3'S-carboline-3'-carboxyamino-ethylamino)-6-deoxy-beta-CD(5-monomer)was prepared.Spectral characterizations demonstrated that 5-monomer was able to self-assemble into 5-dimer,which was coexisting with the monomer with a ratio of 79% vs 21% in solution.The in vitro oxidation of 5-monomer/5-dimer by H2O2 did not occur during the monitoring period.The in vitro antiplatelet aggregation and in vivo antithrombotic assays of 5-monomer/5-dimer demonstrated that the bioactivity of THCA was remarkably increased via conjugation with 6-ethylamino-6-deoxy-beta-CD and produced greater in vitro and in vivo effectiveness than that of the inclusion complex beta-CD_(1,2)/THCA at the same dose.The significant improvement of the bioactivity and stability of THCA indicates that inclusion complexation and conjugation with beta-CD provide promising approaches to improve the practical use of THCA in clinical applications.
机译:从大头菜中分离得到的3S-1,2,3,4-Teteahydro-β-carboline-3-羧酸(THCA)被认为是有效的抗血小板凝集成分。但是,水溶性很差,被氧化的缺点在体内研究容易,严重限制了THCA的临床应用。在本研究中,采用了两种策略来减少这种趋势。首先,制备了THCA与β-环糊精(β-CD)的包合物。 β-CDCD_THCA和β-CD2/ THCA之间的复合物(β-CDCD_(1,2)/ THCA)处于平衡状态,两种异构体的比例受β-CD浓度的影响;分别为89%和11%我们的研究.H2O2对THCA和β-CDCD_(1,2)/ THCA的氧化均遵循一阶动力学,在此过程中35%的THCA和33%的β-CD_(1,2)/ THCA被氧化。监测期间.THCA的体外抗血小板聚集和体内口服给药的抗血栓形成活性大大增加制备了新型的共轭6-(3'S-咔啉-3'-羧基氨基-乙基氨基)-6-脱氧-β-CD(5-单体)。光谱表征表明,其为5-单体。能够自组装成5-二聚体,与单体共存比例为79%:21%。在监测期间,没有发生过氧化氢对5-单体/ 5-二聚体的体外氧化反应。 5-单体/ 5-二聚体的体外抗血小板凝集和体内抗血栓试验表明,通过与6-乙基氨基-6-脱氧-β-CD结合,THCA的生物活性显着提高,并在体外和体内产生了更大的效力相比于相同剂量的包涵体复合物β-CD_(1,2)/THCA。THCA的生物活性和稳定性的显着提高表明包涵体与β-CD的络合和缀合为改善甲壳素的实际应用提供了有希望的方法THCA在临床上的应用。

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