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1.
以余甘子干粉为材料,利用超声波辅助提取余甘子总黄酮。单因素试验分析液料比、乙醇浓度、超声时间、超声功率对余甘子总黄酮提取率的影响,在此基础上,利用响应面分析法对提取工艺进行优化。结果表明,余甘子总黄酮最佳提取条件为:液料比82:1(V/W)、乙醇浓度45%、超声时间41 min、超声功率210 W,在此条件下余甘子总黄酮的实际提取率为6.12%。  相似文献   

2.
采用超声技术从田基黄中提取活性物质。运用响应面法确定超声提取田基黄的最佳条件。运用单因素试验选取三个自变量。采用Box-Behnken设计评价这三个自变量对总黄酮和总多酚提取、DPPH和ABTS+活性清除的影响。通过方差分析显示,二次模型对反应的贡献率具有统计学意义。运用响应面法进行最优化研究,并用数学模型绘制出三维响应面。通过结合反应得出最佳试验条件:超声时间48.89 min,乙醇浓度63.72%,超声温度66.92℃。总黄酮值为105.06 mg RE/g DW,总多酚值为51.75 mg GAE/g DW,%DPPHsc为58.81%,%ABTSsc为64.99%。在最佳试验条件下,试验值与方差分析预测值一致。结果表明,采用四个模型和响应面法优化总黄酮和总多酚的提取、DPPH和ABTS+活性清除是切实可行的。  相似文献   

3.
以具有地域特色的野生樱桃李叶为实验材料,在单因素试验基础上,以乙醇体积分数、提取温度、料液比为自变量,总黄酮提取量为响应值,利用响应面法优化野生樱桃李叶总黄酮的超声辅助提取最佳条件为乙醇体积分数51%、提取温度72℃、料液比1∶45 g/m L,在300 W功率下超声提取30 min,提取次数2次,总黄酮提取量为38.27 mg/g,达到预测值的98.3%。超声辅助提取较传统索氏提取操作简单,耗时少,提取效率高,是野生樱桃李叶总黄酮提取的一种有效方法。  相似文献   

4.
采用超声波辅助提取辣木Moringa oleifera叶多酚,通过单因素试验考察乙醇浓度、料液比、提取时间和提取次数对辣木叶多酚得率的影响,进一步利用四因素三水平Box-Behnken组合设计响应面试验对提取工艺参数进行优化。结果表明,超声波辅助提取辣木叶多酚的最佳工艺条件为乙醇浓度62%、料液比1∶30(W/V)、提取时间30 min、提取3次,在此条件下辣木叶多酚得率为27.32 mg·g-1,所得回归模型拟合情况良好。  相似文献   

5.
6.
响应面优化纤维素酶辅助提取木豆叶总黄酮工艺   总被引:1,自引:2,他引:1  
为探讨纤维素酶辅助提取木豆叶总黄酮最佳工艺条件,在单因素试验基础上,以酶用量、酶解温度、酶解时间和酶解pH为影响因子,总黄酮得率为响应值,采用Box-behnken中心组合设计建立4个影响因子与总黄酮得率关系的数学模型,进行响应面法分析。结果表明,纤维素酶辅助提取木豆叶总黄酮的最佳工艺条件为:酶用量为8.65 mg,酶解温度为33.88℃,酶解时间为2.02 h,酶解pH为5.02。在最优条件下总黄酮理论得率为4.86%,实测值为4.88%,拟合得到的模型与实际吻合良好。本研究建立的提取工艺条件稳定可靠,为以后木豆叶总黄酮的应用开发提供实验依据。  相似文献   

7.
对太白贝母粗多糖提取工艺的研究,为太白贝母的深入综合利用提供依据。采用超声波提取太白贝母粗多糖,在单因素试验基础上,利用响应面法对提取工艺参数进行优化研究。建立料液比、时间、超声温度之间的数学模型,通过典型性分析得出最优工艺条件为:提取时间为16 min,提取温度75℃,料液比为1∶15,总糖的含量为0.461%。试验表明,响应面法对太白贝母粗多糖提取条件的优化是可行的,可用于实际预测。  相似文献   

8.
为充分利用枇杷叶,研究微波辅助乙醇浸提法从枇杷叶中提取黄酮类化合物的工艺。首先研究了影响提取效果的因素:不同体积分数的乙醇溶液、料液比、时间及微波功率。在单因素试验基础上利用响应面分析法,确定了各因素与总黄酮得率之间的关系,并以总黄酮得率为响应值做响应面和等高线图。研究表明,枇杷叶中黄酮类化合物提取最佳工艺为乙醇体积分数50%,料液比1∶30,提取时间3 min,微波功率500 W,最佳条件下总黄酮得率为2.04%,与理论推导值2.07%相比,误差为1.4%,黄酮类化合物响应方程的回归分析表明此方法合理可行。本研究对枇杷叶总黄酮提取优化的研究为进一步探讨枇杷叶的深度开发提供了理论参考依据,并为枇杷叶总黄酮的生物活性研究提供材料。  相似文献   

9.
以毛花猕猴桃根为原料,乙醇为提取溶剂,超声辅助提取三萜类化合物,考察从毛花猕猴桃根中提取总三萜的最佳工艺。选取乙醇浓度、料液比、超声波功率和提取时间4个因素,通过单因素实验选取影响因素的水平,然后采用四因素三水平的响应面分析法(RSA)进行预测和分析,获得最佳优化条件为:乙醇浓度72%,料液比1∶20 g/mL,超声功率400 W,提取时间45 min,验证实验结果为12.65 mg/g,理论值与实际值接近。实验结果表明,根据Box-Benhnken中心组合设计试验结合响应面分析法可以较好的对毛花猕猴桃根中总三萜的提取工艺进行优化。  相似文献   

10.
响应面法优化蕤核叶片总黄酮提取工艺   总被引:1,自引:0,他引:1  
采用超声波辅助提取的方法从蕤核叶片中提取总黄酮.利用响应面法(RSM法)研究了超声提取时间、乙醇浓度、液固比、提取温度等因素对总黄酮得率的影响,确定了超声波辅助提取蕤核叶片总黄酮的最佳工艺参数.结果表明,超声波辅助提取蕤核叶片总黄酮的最佳工艺务件为:超声时间50.1 min,乙醇浓度59.5%,液料比24.9:1,提取...  相似文献   

11.
Abstract

Olive leaves were often extracted with methanol or ethanol at different proportions. In this study, ultrasound-assisted aqueous extraction was adopted for olive leaf extraction. The yields of total flavonoids (TF) and hydroxytyrosol (HT) were optimized by central composite experimental design. Two second-order polynomial equations were established to quantify the relationship between the responses and the processing parameters. Under the optimal condition of extracting at 60?°C for 60?min with the solvent-to-material ratio of 40, TF and HT amounted to 57.31?±?0.35 and 1.80?±?0.02?mg/g dry leaves (DL), respectively. The scavenging rate of all extracts against α, α-diphenyl-β-picrylhydrazyl (DPPH) and hydroxyl free radicals was screened. The integrated scores, representing both active ingredients and antioxidant capacity of the extracts, were calculated by principle component analysis (PCA). The optimal extract gained the highest score in PCA. In addition, compared to the extracts from 80% methanol to 44% ethanol, the ultrasound-assisted aqueous extract was richer in TF, HT, and polyphenols, while it also presented stronger ferric reducing antioxidant power (FRAP), but poorer strength to quench hydroxyl radicals. The study indicated that the aqueous extract of olive leaves may present broad potential opportunities in health-care sector.  相似文献   

12.
Psidium guajava leaves are rich in health-promoting flavonoids compounds. For better utilization of the resource, the ultrasound-assisted aqueous extraction was investigated using Box-Behnken design under response surface methodology. A high coefficient of determination (R2?=?97.8%) indicated good agreement between the experimental and predicted values of flavonoids yield. The optimal extraction parameters to obtain the highest total flavonoids yield were ultrasonic power of 407.41?W, extraction time of 35.15?min, and extraction temperature of 72.69?°C. The average extraction rate of flavonoids could reach 5.12% under the optimum conditions. Besides, HPLC analysis and field emission scanning electron microscopy indicated that the ultrasonic treatment did not change the main component of flavonoids during extraction process and the higher flavonoids content was attributed by the disruption of the cell walls of guava particles. Thus, the extraction method could be applied successfully for large-scale extraction of total flavonoids from guava leaves.  相似文献   

13.
In this study, ultrasound-assisted extraction of flavonoid from Crinum asiaticum was studied through response surface methodology (RSM) to gain the best extraction process of flavonoid and enhance the extraction rate of flavonoid. In the following RSM experiment, we selected the corresponding data of every factor as the center point through the single-factor experiments, then the experimental data was subjected to multiple regression analysis. According to the statistical analysis results, the results were consistent with the polynomial regression model, the determination coefficient (R2) was 0.9769. The best conditions for maximum flavonoid yield were 60% ethanol concentration, 64 °C for extraction temperature, 1:28 (v/w) solid-to-liquid ratio with extraction time for 47 min. The best response of flavonoid yield was 1.63972%. The predicted results for best reaction conditions were in good agreement with experiment values. Ultrasound-assisted extraction method can enhance the extraction rate of flavonoid significantly. It is a powerful tool to extract of important phytochemicals from nature plant.  相似文献   

14.
采用响应面法优化微波提取紫萍黄酮的条件。在单因素实验的基础上,选取乙醇体积分数、微波功率、液料比为影响因子,应用Box-Behnken中心组合法进行三因素三水平的试验设计,以紫萍黄酮得率为响应值,进行响应面分析(RSM),结果表明:微波提取紫萍黄酮的最佳提取条件为乙醇体积分数62%、液料比17∶1(mL/g)、微波功率500 W、微波时间9 min;在优化工艺下,紫萍黄酮的得率达到4.14%。对微波提取的紫萍黄酮进行抗氧化性研究发现紫萍黄酮对DPPH.清除作用较好,其抗氧化活性要优于相同浓度的抗坏血酸(VC)和2,6-二叔丁基对甲酚(BHT)。  相似文献   

15.
2016年秋季,漳州一农户种植的褐色毛木耳Auricularia cornea品种“43012H”发生白色突变,有的菌袋同时长出褐色、白色、褐色与白色交杂的颜色嵌合体耳片,有的菌袋长出白色耳片,而有的菌袋出菇颜色正常。采集白色耳片、褐色耳片和嵌合体耳片进行组织分离,得到的菌种进行栽培试验,从褐色耳片(正常)分离获得的菌种(AC_B),种植得到正常的毛木耳子实体;从白色耳片(突变)分离获得的菌种(AC_W),种植得到纯白色子实体;从颜色嵌合体耳片分离获得的菌种(AC_R),栽培后也只长白色子实体,没有出现嵌合体子实体。AC_B分别与AC_W、AC_R的菌种混合接种栽培,菌袋中同时长出白色、褐色和嵌合体耳片。再次进行组织分离与栽培试验,性状稳定。对AC_B和AC_W进行基因组测序,获得2个与本研究中所用菌株的耳片颜色相关的SNP位点,即SNP1和SNP2。上述组织分离得到的菌株中,褐色菌株的基因型为SNP1 A/G(杂合)、SNP2 A(纯合),白色菌株的基因型为SNP1 G(纯合)、SNP2 A/C(杂合)。  相似文献   

16.
为了研究拐枣总黄酮(TF)最佳提取工艺及其体外抗黄嘌呤氧化酶(xanthine oxidase,XO)活性。在单因素试验基础上,实验选择料液比、提取时间和乙醇浓度为自变量,应用Box-Benhnken中心组合法进行3因素3水平试验设计,以拐枣总黄酮得率为响应值,进行响应面分析,并采用D101大孔树脂对总黄酮进行进一步富集纯化,在此基础上研究拐枣总黄酮体外抗XO活性。结果表明,拐枣总黄酮的最佳提取条件为料液比15.0 mL/g、提取时间1.85 h、乙醇浓度53.0%,在此条件下,拐枣总黄酮的平均提取率可达到2.56%。体外活性结果表明,我们首次发现拐枣总黄酮具有显著的抗XO活性,其IC_(50 )为18.63±1.67μg/mL。本研究可为从拐枣中寻找和发现天然抗XO活性分子提供参考,同时可为拐枣的开发利用提供思路。  相似文献   

17.
以布渣叶为研究体系,采用表面活性剂辅助热回流法提取黄酮类物质.考察了表面活性剂种类及浓度、提取时间、液固比和溶剂pH等因素,并通过实验数据进行了正交试验设计,得到最优的工艺条件:表面活性剂选择十二烷基硫酸钠(SDS),质量浓度0.8 g/L,提取时间105 min,液固比45 mL/g,溶剂pH 6.3.在此条件下,布渣叶黄酮得率为15.73%,与其他方法相比具有显著优势.  相似文献   

18.
舒芳  边银丙  周雁 《菌物学报》2020,39(6):1029-1037
以毛木耳Auricularia cornea杂交子APM2-16的亲本单核体APP7和M2S16为研究材料,经同源序列比对,从单核体APP7的基因组中获得了A交配型位点序列,并定位了mip基因的位置。根据APM2-16的转录组和单核体APP7基因组的相关信息设计引物,通过PCR扩增和克隆测序的方式获得单核体APP7和M2S16中的HD基因序列,通过生物信息学分析发现两者在核苷酸序列上没有同源性,都编码同源结构域转录因子。通过对毛木耳交配型位点的研究有助于进一步开展该物种的遗传学基础研究,为菌种遗传改良奠定基础。  相似文献   

19.
Abstract

Ginseng stems and leaves (GSAL) are abundant in ginsenosides compounds. For efficient utilization of GSAL and the enhancement of total ginsenosides (TG) compound yields in GSAL, TG from GSAL were extracted, using dynamic-microwave assisted extraction coupled with enzymatic hydrolysis (DMAE-EH) method. The extraction process has been simulated and its main influencing factors such as ethanol concentration, microwave temperature, microwave time and pump flow rate have been optimized by response surface methodology coupled with a Box-Behnken design(BBD). The experimental results indicated that optimal extraction conditions of TG from GSAL were as follows: ethanol concentration of 75%, microwave temperature of 60°C, microwave time of 20?min and pump flow rate of 38 r/min. After experimental verification, the experimental yields of TG was 60.62?±?0.85?mg?g?1, which were well agreement with the predicted by the model. In general, the present results demonstrated that DMAE-EH method was successfully used to extract total ginsenosides in GSAL.  相似文献   

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