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1.
灰树花多糖的提取及抗氧化活性   总被引:1,自引:0,他引:1  
采用单因素和正交试验法对热水浸提、超声波辅助和微波辅助提取灰树花多糖的工艺进行研究,分别获得了3种方法的最佳条件,并发现微波辅助法最佳,其最优条件为:微波功率800 W、微波时间3 min,浸提2h,多糖得率为13.05%,比热水浸提法提高了51.22%.利用提取的灰树花多糖进行抗氧化性研究,发现灰树花多糖对O2-·和·OH都具有一定的清除作用,且多糖浓度与其对O2-·的清除作用存在量效关系,但不如·OH明显.  相似文献   

2.
利用均匀设计法优化了高丽参多糖的提取过程.主要考察料液质量比、浸泡时间、提取温度和提取时间四个因素对提取率的影响.通过数学模型得到最优提取状况和3D曲面图.结果表明,提取温度对高丽参多糖得率影响最大,在料液质量比1:35、浸泡时间135 min、水提取温度81℃条件下提取156 min,高丽参多糖最大理论提取率为49.51%.最优化模型下实际多糖得率49.29%与理论得率相符.  相似文献   

3.
Polysaccharides were extracted from Asparagus officinalis. A novel ultrasonic circulating extraction (UCE) technology was applied for the polysaccharide extraction. Three-factor-three-level Box-Behnken design was employed to optimize ultrasonic power, extraction time and the liquid-solid ratio to obtain a high polysaccharide yield. The optimal extraction conditions were as follows: ultrasonic power was 600 W, extraction time was 46 min, the liquid-solid ratio was 35 mL/g. Under these conditions, the experimental yield of polysaccharides was 3.134%, which was agreed closely to the predicted value. The average molecular weight of A. officinalis polysaccharide was about 6.18 × 104 Da. The polysaccharides were composed of glucose, fucose, arabinose, galactose and rhamnose in a ratio of 2.18:1.86:1.50:0.98:1.53. Compared with hot water extraction (HWE), UCE showed time-saving, higher yield and no influence on the structure of asparagus polysaccharides. The results indicated that ultrasonic circulating extraction technology could be an effective and advisable technique for the large scale production of plant polysaccharides.  相似文献   

4.
为了建立超声波辅助酶法提取南五味子多糖的方法,并研究其提取工艺。按照Box-Benhnken中心组合试验设计原理,以多糖得率为响应值,以单因素实验数据为基础,进行响应面分析实验,考察提取pH、提取温度和提取时间对多糖得率的影响。结果显示:最佳提取工艺条件为:提取pH为4.8、提取温度57℃、提取时间66 min、复合酶用量为3.0%,最佳工艺条件下南五味子多糖得率为8.73%±0.25%。研究结果表明,该提取方法可减少多糖提取时间和提取溶剂用量,降低温度,有效提高了多糖的提取得率,可应用于南五味子多糖的制备。研究结果为南五味子多糖的开发应用提供了较好的依据。  相似文献   

5.
正交试验法优化桑叶多糖提取工艺   总被引:2,自引:0,他引:2  
以脱除黄酮的桑叶为原料,采用热水浸提法提取桑叶多糖,研究了提取温度、提取时间、料液比、水溶液pH和提取次数对桑叶多糖得率的影响,通过正交实验优化了提取工艺条件。结果表明,在提取次数为2次条件下,桑叶多糖最佳提取工艺条件为提取温度100℃、提取时间4 h、提取液pH7、料液比(原料:提取液,g/mL)1:30,多糖得率为2.74%。该工艺稳定,桑叶多糖得率高,易于工业化生产。  相似文献   

6.
微波辅助提取灰树花多糖工艺研究   总被引:1,自引:0,他引:1  
采用提取时间、微波功率、液料比的单因素试验和正交试验法优化微波辅助提取灰树花多糖条件.结果表明,以净多糖得率为指标,影响微波辅助提取灰树花多糖的主次因素为:提取时间>微波功率>液料比,并且提取时间和微波功率的影响达到了极显著水平.灰树花多糖最佳提取工艺条件为:提取时间为10 min,微波功率为80%(全功率为800 W),液料比为25∶1.创立了一种用苯酚-硫酸法测定多糖时排除蛋白质干扰的方法.  相似文献   

7.
提取防风多糖的工艺优化   总被引:2,自引:1,他引:1  
采用超声波强化和微波辅助提取2种方法提取防风多糖,并与传统热水浸提法在多糖的提取率上进行比较。防风多糖超声提取的最佳工艺条件为超声功率1 000 W、提取时间25 min、液固体积质量比为25,防风多糖微波提取的最佳工艺条件为微波功率560 W、液固体积质量比为30、提取时间10 min,在最佳提取工艺下,2种方法的提取率分别为6.103%和7.639%。与传统热水浸提法相比,超声法和微波法提取防风多糖具有迅速、节能、高效、提取率高等诸多优点。  相似文献   

8.
超声辅助低共熔溶剂提取沙棘籽粕多酚的工艺优化   总被引:1,自引:0,他引:1  
以一系列低共熔溶剂为提取剂,采用超声波辅助法从沙棘籽粕中提取多酚。在单因素试验结果基础上,利用Box-Behnken实验设计,运用响应面分析法对影响沙棘籽粕多酚得率的主要因素(超声功率、超声时间、超声温度)进行优化。结果表明,沙棘籽粕多酚最佳提取工艺条件为:以含水量为30%的氯化胆碱-草酸低共熔溶剂为最佳提取剂,液料比为14∶1,超声功率420 W,超声时间56 min,超声温度44℃。在此条件下,多酚得率为3.31±0.008%。对比试验发现:氯化胆碱-草酸低共熔溶剂对沙棘籽粕多酚的得率明显优于传统溶剂;与热回流提取相比,超声提取法具有明显的优势。  相似文献   

9.
Tricholoma matsutake is the most valuable mushroom exhibiting a characteristic and delicate flavor as well as several biological activities among the various mushroom species. Extraction procedure and antitumor activity of polysaccharides from Tricholoma matsutake mycelium were studied in this work. Single factor tests and Response Surface Methodology (RSM) based on a three-level three-factor Box-Behnken design were applied to optimize the water extraction conditions. The polysaccharides yields increased when the ratio of water to sample increased from 10:1 to 30:1, extraction time from 1 to 4 h and temperature from 60 to 90°C as invested in single factor tests. To enhance further polysaccharides extraction, the extraction conditions were studied with RSM. The optimum extraction conditions were confirmed as follows:extraction time 4.3 h, the ratio of water to sample 29.2:1, extraction temperature 93.8°C. The extraction rate of polysaccharides under this condition could reach the highest value of 18.43% with one time extraction, and, 21.63% with two times extraction. Furthermore, the polysaccharides presented significant antitumor activity against B16 human melanoma cells in vitro in a dose-dependent manner. At the concentration of 10 mg/ml, the inhibition rate of polysaccharides got 67%.  相似文献   

10.
绿穗苋是一种药食兼用作物,其中多糖成份具有很高的药食价值。本研究以绿穗苋地上部分为材料,以微波和超声波两种方法对绿穗苋多糖进行提取,并通过响应面分析法对提取进行优化,确定最佳工艺,通过水提醇沉的方法得到绿穗苋粗多糖。综合比较两种提取工艺,提取效果最佳工艺为微波提取法。其条件为:提取时间41.42 min,提取功率211.65 W,料液比1:33.338 (g/mL),实际得率为13.25%。该研究结果促进绿穗苋资源的有效利用,为绿穗苋多糖的提取工艺及产品的开发利用提供理论依据。  相似文献   

11.
本研究在对甘西鼠尾草种子粘液的吸水特性和红外光谱进行分析的基础上,利用响应面分析方法优化甘西鼠尾草种子粘液的提取工艺,并利用中心组合设计探讨提取时间、液料比、提取温度3个自变量对甘西鼠尾草种子粘液提取率的影响。结果表明,甘西鼠尾草种子粘液是一类多糖物质,吸水性强,脱水缓慢;甘西鼠尾草种子粘液优化的提取工艺条件为:提取时间3.2 h、液料比54∶1(mL∶g)、提取温度68℃,此时种子粘液提取率为4.93%,这为甘西鼠尾草种子粘液资源的开发应用提供了理论依据。  相似文献   

12.
研究了向日葵茎芯中主要活性物质多糖的提取工艺,并对此工艺进行了优化,选取的提取方法为水提醇沉法,以多糖含量作为指标,采用单因素试验研究了提取次数、原料颗粒的大小(目数)、料液比、提取时间、提取温度对向日葵茎芯多糖含量的影响。用苯酚-硫酸法测定提取液中多糖的含量,得出向日葵茎芯中多糖的最佳提取工艺条件为:提取次数2次,原料颗粒的大小(目数)60~80目,料液比(g·mL-1)1:50,提取时间3.0 h,提取温度90℃,在最优提取条件下,多糖的提取得率为6.56%,多糖的含量为266.03 mg·g-1。本文也对多糖的体外抗肿瘤活性进行了研究,结果表明向日葵茎芯多糖的体外抗肿瘤活性较弱。这些条件的确定为向日葵茎芯的深入研究奠定了基础。  相似文献   

13.
在单因素实验的基础上,采用响应面分析法对影响超声辅助提取仙鹤草总多酚得率的主要因素(超声温度、料液比和乙醇浓度)进行优化,建立了影响因素与总多酚之间的函数关系。获得最佳工艺条件为:71%乙醇,料液比1∶24,超声提取温度60℃,提取时间20 min。在此最佳条件下,总多酚得率为3.56%,试验结果与模型预测值相符。  相似文献   

14.
超滤分离和鉴定三种香菇多糖   总被引:2,自引:0,他引:2  
用热水从香菇子实体中浸提出香菇多糖,采用两种超滤陶瓷膜将粗多糖分级成三部分Le1,Le2和Le3。所有的这三种多糖都由两组分所组成,采用凝胶过滤色谱测定了多糖分子量,13CNMR和IR光谱测定显示多糖Le1为含α糖甙键的多糖,多糖Le3为含β糖甙键的多糖。采用气相色谱法测定了三种多糖的单糖组成,结果显示三种多糖都由葡糖糖,阿拉伯糖,木糖,甘露糖和半乳糖组成,Le1,Le2和Le3中阿拉伯糖、木糖、甘露糖、半乳糖、葡萄糖的摩尔比分别为0.15∶0.52∶1.00∶1.20∶7.20、0.21∶0.68∶1.00∶1.02∶11.56、0.29∶0.42∶1.00∶0.85∶16.20。三种多糖Le1,Le2和Le3的平均分子量分别为4.02×104、2.16×105和8.93×105。  相似文献   

15.
Response surface methodology (RSM) was used to determine the optimum extraction conditions for polysaccharides (EFP) from the roots of Euphorbia fischeriana. A Box-Behnken design (BBD) with four independent variables was investigated, such as extraction temperature (°C), water/solid ratio, extraction number (n), and extraction time (h). The results indicated optimum extraction conditions were extraction temperature of 97 °C, water/solid ratio of 9:1, extraction number of 2 and extraction time of 2.4 h, respectively. Under these conditions, the experimental value was 24.6 ± 0.62, which was well in close agreement with value predicted by the model. The preliminary chemical analysis of EFP revealed the EFP contained 25.43% polysaccharides, 20.42% uronic acids, 2.54% sulfate radical and 23.41% proteins. And the neutral polysaccharides were mainly composed of glucose, arabinose, rhamnose, galactose, xylose, mannose in the ratio of 21:8:5:3:1:1.  相似文献   

16.
为探究先后提取枸杞多糖及枸杞色素时对各自得率的影响。本研究通过分别考察这两种成分在提取过程中的提取溶剂、提取温度、料液比、提取次数及提取时间等因素对枸杞色素和枸杞多糖的得率影响,确定枸杞色素和枸杞多糖在提取次序不同时,两者的最佳提取工艺以及对DPPH·和·OH自由基清除率。结果表明,首先提取枸杞多糖后,枸杞色素的最佳提取工艺为采用正己烷,80℃时,料液比1∶10,提取2次,每次1 h,枸杞色素得率为2.48%,此时枸杞多糖得率为7.45%;而首先提取枸杞色素后,采用了超声辅助提取的方式提取枸杞多糖,发现超声效率为25%,料液比1∶10,提取20 min,枸杞多糖得率为5.23%,此时枸杞色素得率为3.93%。因此,首先提取枸杞多糖,使其平均得率为7.45%,而后提取枸杞色素,其平均得率为2.48%;总体上,枸杞色素1和枸杞多糖1对DPPH·自由基清除率都较高,枸杞多糖1对·OH自由基清除率较高,其抗氧化活性都接近Vc。  相似文献   

17.
Response surface method (RSM) was used to optimize the extraction conditions of polysaccharides from the rhizomes of Panax japonicus C.A. Meyer. A three-level, three-variable Box-Behnken design (BBD) was applied for experimental design and analyzed of the results to obtain the optimal processing parameters. RSM analysis indicated good correspondence between experimental and predicted values. The optimal condition for the yield of polysaccharide was extraction time 3.74 h, extraction temperature 93.90 °C and ratio of water to raw material 40.22. Polysaccharide was analyzed by chemical methods and Fourier transform infrared (FT-IR). IR spectra indicated the presence of uronic acids and α-pyranose of the glucose residue. The antioxidant activities of Panax japonicus polysaccharides (PJP) were investigated including scavenging activity of hydrogen peroxide, 2,2-diphenyl-1-picryl-hydrazyl (DPPH) and free radicals of superoxide anion in vitro. The results of antioxidant activity exhibited PJP had a good potential for antioxidant.  相似文献   

18.
为研究牛樟芝固态发酵菌丝体中三萜和多糖的最佳提取工艺,选取浸提时间、料液比和提取温度3个因素,分别设置3个水平,以三萜和多糖得率为指标,并采用正交试验法进行分析。结果表明,三萜的最佳提取工艺条件为:浸提时间3 h、料液比1∶30 (g·mL-1)、温度70 ℃,在此条件下,得率为3.43%;多糖的最佳提取工艺为:浸提时间2 h、料液比1∶20 (g·mL-1)、温度95 ℃,在此条件下得率为4.71%。研究结果为牛樟芝固态发酵菌丝体中三萜和多糖的提取工艺提供了参考。  相似文献   

19.
采用超声波辅助水提法提取芦笋多糖,并用响应面法进行工艺条件优化研究.结果表明芦笋多糖得率为4.298%,其最佳工艺条件为提取超声功率250 w,料液比为l:30(g:ml),超声温度为75℃,超声时间为60 min.  相似文献   

20.
魏奇  韩蓉  严晶  黄骏  张维瑞  刘盛荣  谢宝贵  江玉姬 《菌物学报》2022,41(12):2036-2047
为了获得奶油绚孔菌菌丝多糖的最佳制备工艺并进一步评估其体外抗氧化的作用,本研究以奶油绚孔菌菌丝作为原料,采用中心组合试验法结合响应面分析法对奶油绚孔菌菌丝多糖的提取条件进行优化。结果表明,最佳的提取工艺为:料液比1:32、提取时间1.85 h和提取温度85 ℃,奶油绚孔菌菌丝多糖在此提取工艺条件下的得率为5.68%。奶油绚孔菌菌丝多糖对DPPH、ABTS和羟基自由基有清除能力,其EC50分别为3.74、3.80和15.10 mg/mL。奶油绚孔菌菌丝多糖呈现出一定的还原能力。由此可知,奶油绚孔菌菌丝多糖具有一定的体外抗氧化作用,该研究能够为奶油绚孔菌菌丝多糖的进一步综合开发提供理论支持。  相似文献   

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