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1.
AB-8大孔吸附树脂对红花桑寄生总黄酮静态吸附和动态洗脱的效果,受提取液质量浓度、pH值及环境温度、振速以及洗脱剂乙醇浓度、流速等因素影响。试验表明,提取液质量浓度和pH值对AB-8树脂的吸附效果有显著影响,其吸附分离总黄酮的工艺条件为:浓度为1.2~2.0mg/ml、pH 3.0~4.0的红花桑寄生提取液,置于摇床上,于室温条件下振荡(振速160r/min)吸附2~3h,然后用5倍于树脂体积(5BV)的50%乙醇以1.5ml/min流速进行柱上动态解吸。AB-8树脂对红花桑寄生总黄酮的饱和吸附量可达29.0mg/g,动态洗脱率达95.0%,获得产品中黄酮纯度为46.0%,得率为5.5%。  相似文献   

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大孔吸附树脂分离纯化银杏中种皮总黄酮   总被引:1,自引:0,他引:1  
通过静态吸附、静态解吸及吸附动力学研究,对比分析了AB-8、DM-130、S-8等三种大孔吸附树脂对银杏中种皮提取液中总黄酮的分离纯化效果,并且考察和优化了AB-8和DM-130分离纯化银杏中种皮总黄酮的工艺条件.结果表明,弱极性树脂AB-8和DM-130的吸附率分别为87.72%和86.29%、解吸率为97.52%和92.20%,是性能良好的总黄酮吸附剂; 二种树脂的静态吸附曲线变化趋势一致,6 h左右达到吸附平衡,最佳吸附条件:吸附液pH=3.0,树脂用量:吸附液=1:20,吸附温度40 ℃,洗脱剂70%乙醇;动态解吸研究显示,7倍和9倍体积洗脱剂可分别将AB-8与DM-130树脂柱吸附的总黄酮基本洗脱.在优化的工艺条件下,AB-8大孔树脂纯化可使提取物中总黄酮含量达16.3%.  相似文献   

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目的:考察AB-8树脂对珍珠菜提取液中总黄酮的吸附、解吸附性能及影响因素。方法:采用紫外分光光度法测定总黄酮的含量,分别考察了样品液浓度、pH值和流速对AB-8树脂吸附珍珠菜总黄酮的影响,以及洗脱剂乙醇浓度和流速对解吸附效果的影响。结果:样品液总黄酮浓度10mg/mL、pH值5.07、流速1.0mL/min时,AB-8树脂对珍珠菜总黄酮的吸附效果较好;洗脱剂为70%乙醇,流速1.5mL/min时,洗脱完全,固体总黄酮含量较高。结论:在上述条件下,AB-8树脂可用于珍珠菜提取液中总黄酮的分离纯化。  相似文献   

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大孔树脂吸附法提纯苦楝素的研究   总被引:4,自引:0,他引:4  
研究了大孔树脂吸附法从苦楝树皮的提取液中提纯苦楝素的工艺条件及参数,并筛选出较为理想的大孔吸附树脂。研究结果表明,S-8型吸附树脂的静态饱和吸附量明显大于AB-8型和NKA-9型。该树脂吸附提纯苦楝素的优化吸附条件为吸附温度40℃,溶液pH值8.0,上柱液质量浓度9.127mg/mL,溶液流速2BV/h;优化的解吸条件为:洗脱剂为70%乙醇-水溶液,溶液流速1BV/h,洗脱剂用量为8倍量树脂体积。在优化条件下,可以得到含量达75.2%的苦楝素提取物,表明S-8树脂对苦楝素有良好的吸附选择性。  相似文献   

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大孔吸附树脂对红车轴草异黄酮吸附分离特性的研究   总被引:6,自引:0,他引:6  
通过比较14种大孔吸附树脂对红车轴草异黄酮的吸附率和解吸率,筛选出适合红车轴草异黄酮分离的树脂,并对其动态吸附特性进行研究。结果表明,AB-8树脂对红车轴草异黄酮不仅吸附量大,而且解吸率高,适合红车轴草异黄酮的分离富集。AB-8树脂分离红车轴草异黄酮的工艺参数为:上柱液浓度0.79~1.11 mg/mL,pH 4.24,流速2 BV/h。以4倍树脂床体积的80%乙醇以2 BV/h流速进行洗脱,可基本上将红车轴草异黄酮从树脂上解吸下来,异黄酮回收率为93.72%。  相似文献   

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大孔树脂吸附分离烟草绿原酸的研究   总被引:1,自引:0,他引:1  
通过比较8种大孔吸附树脂对烟草绿原酸的吸附分离性能,筛选出适合分离烟草绿原酸的树脂,并对其动态吸附特性进行研究.结果表明,XDA-1树脂对烟草绿原酸不仅吸附量大,而且解吸率高,适合烟草绿原酸的分离富集.该树脂吸附分离烟草绿原酸的工艺参数为:上柱液浓度3.5 mg/mL,pH 3.0,流速3倍柱床体积/h;以6倍柱床体积的40%乙醇进行洗脱,解吸附效果最佳,绿原酸总回收率为80.06%,初步吸附分离得到的产品中绿原酸含量为39.20 g/100 g.  相似文献   

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AB-8大孔树脂纯化欧洲鳞毛蕨总黄酮的研究   总被引:1,自引:0,他引:1  
目的:对AB-8大孔吸附树脂对欧洲鳞毛蕨总黄酮的纯化工艺条件进行了系统的研究。方法:采用静态和动态的吸附-解吸实验,利用紫外可见分光光度计测量欧洲鳞毛蕨总黄酮的含量,研究不同的工艺条件对总黄酮纯化的影响。结果:AB-8大孔树脂对欧洲鳞毛蕨总黄酮的饱和吸附量是25.53mg/g,洗脱率达到98.3%,提取液的pH值对树脂的吸附能力有很大的影响,当pH值为4.08(原液pH值)时树脂吸附能力达到最大。采用0.5mg/mL流速上样,1.2BV 30%和1BV 50%乙醇1.0 mg/mL流速洗脱可较好的分离纯化欧洲鳞毛蕨总黄酮。结论:AB-8大孔树脂是欧洲鳞毛蕨总黄酮纯化的理想吸附剂。  相似文献   

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大孔吸附树脂分离纯化番石榴叶总黄酮的研究   总被引:1,自引:0,他引:1  
考察大孔吸附树脂吸附分离番石榴叶总黄酮的工艺条件.以静态饱和吸附量、静态洗脱率、动态饱和吸附量、动态洗脱率为考察指标,比较了D101、AB-8两种大孔树脂分离纯化番石榴叶总黄酮的优劣.又以总黄酮回收率为指标,对最佳树脂吸附工艺参数进行了研究.在考察的2种树脂中,AB-8型树脂最适于番石榴叶总黄酮的分离纯化,其工艺条件为:4倍树脂体积50%乙醇洗脱,速度2mL/min.树脂可重复使用4次.其平均总黄酮回收率为87.47%.所得总黄酮纯度为74.03%  相似文献   

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以桑椹中黄酮类物质的吸附量和解吸率为指标,对比分析HZ-801、HZ-816、HZ-818等12种大孔吸附树脂对桑椹提取液的分离纯化效果,优选出最佳树脂HZ-801并通过对上样液pH、上样液质量浓度、上样量、吸附流速、洗脱剂质量浓度、洗脱剂用量、洗脱流速等影响因素的考察,确定最优工艺:吸附阶段上样液pH=4,上样液质量浓度0.45mg/mL,上样量420mL,吸附流速120mL/h,动态吸附量(干树脂)25.34mg/g,吸附率84.25%;洗脱阶段的洗脱剂体积分数为60%乙醇,洗脱剂用量270mL,洗脱流速120mL/h。此优化工艺条件下的洗脱率为85.78%,总黄酮纯度从23.64%提高到82.36%。  相似文献   

10.
采用5种不同极性的树脂(AB-8、S-8、NKA-9、D-101和X-5)来评价对苜蓿皂苷的吸附和解吸附作用,其中中等极性的AB-8树脂对苜蓿皂苷具有最大的吸附量,用55%~65%的乙醇溶液能有效地将吸附的皂苷洗脱下来。当苜蓿粗提物量和AB-8树脂量为1∶1时,树脂的吸附量达到饱和。采用AB-8树脂,用90%乙醇洗脱,苜蓿提取物的最大解吸附量为108.4 mg/g干重树脂。通过大孔树脂吸附和解吸附,将90%乙醇洗脱液浓缩,皂苷含量(53%)是苜蓿粗提物含量(5.68%)的9倍。结果表明,AB-8大孔吸附树脂可用于苜蓿皂苷的大规模制备。  相似文献   

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Comprises species occurring mostly in subtidal habitats in tropical, subtropical and warm-temperate areas of the world. An analysis of the type species, V. spiralis (Sonder) Lamouroux ex J. Agardh, a species from Australia, establishes basic characters for distinguishing species in the genus. These characters are (1) branching patterns of thalli, (2) flat blades that may be spiralled on their axis, (3) width of the blade, (4) primary or secondary derivation of sterile and fertile branchlets and (5) position of sterile and fertile branchlets on the thalli. Application of the latter two characters provides an important basic method for separation of species into three major groups. Osmundaria , a genus known only in southern Australia, was studied in relation to Vidalia , and its separation from the Vidalia assemblage is not accepted. Species of Vidalia therefore are transferred to the older genus name, Osmundaria. Two new species, Osmundaria papenfussii and Osmundaria oliveae are described from Natal. Confusion in the usage of the epithet, Vidalia fimbriala Brown ex Turner has been clarified, and Vidalia gregaria Falkenberg, described as an epiphyte on Osmundaria pro/ifera Lamouroux, is revealed to be young branches of the host, Osmundaria prolifera.  相似文献   

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Fifteen chromosome counts of six Artemisia taxa and one species of each of the genera Brachanthemum, Hippolytia, Kaschgaria, Lepidolopsis and Turaniphytum are reported from Kazakhstan. Three of them are new reports, two are not consistent with previous counts and the remainder are confirmations of very scarce (one to four) earlier records. All the populations studied have the same basic chromosome number, x = 9, with ploidy levels ranging from 2x to 6x. Some correlations between ploidy level, morphological characters and distribution are noted.  相似文献   

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Curcumin is the yellow pigment of turmeric that interacts irreversibly forming an adduct with thioredoxin reductase (TrxR), an enzyme responsible for redox control of cell and defence against oxidative stress. Docking at both the active sites of TrxR was performed to compare the potency of three naturally occurring curcuminoids, namely curcumin, demethoxy curcumin and bis-demethoxy curcumin. Results show that active sites of TrxR occur at the junction of E and F chains. Volume and area of both cavities is predicted. It has been concluded by distance mapping of the most active conformations that Se atom of catalytic residue SeCYS498, is at a distance of 3.56 from C13 of demethoxy curcumin at the E chain active site, whereas C13 carbon atom forms adduct with Se atom of SeCys 498. We report that at least one methoxy group in curcuminoids is necessary for interation with catalytic residues of thioredoxin. Pharmacophore of both active sites of the TrxR receptor for curcumin and demethoxy curcumin molecules has been drawn and proposed for design and synthesis of most probable potent antiproliferative synthetic drugs.  相似文献   

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正Dear Editor,In December 2019, a novel human coronavirus caused an epidemic of severe pneumonia(Coronavirus Disease 2019,COVID-19) in Wuhan, Hubei, China(Wu et al. 2020; Zhu et al. 2020). So far, this virus has spread to all areas of China and even to other countries. The epidemic has caused 67,102 confirmed infections with 1526 fatal cases  相似文献   

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