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本文优化了蒙药漏芦花多糖的提取工艺,并评价其抗氧化和抗菌活性。以超声功率、超声温度、超声时间和浸泡时间为影响因素,多糖提取率为评价指标,在单因素实验的基础上利用正交试验优化提取工艺,测定漏芦花多糖对DPPH自由基、羟基自由基清除效果,检测其抗氧化活性,涂布平板法测定多糖抗菌活性。超声波辅助法提取蒙药漏芦花多糖的最佳工艺条件为超声功率180W,超声温度70℃,超声时间30min,浸泡时间40min,在此条件下多糖得率为1.125%。抗氧化实验表明,漏芦花多糖浓度在0.5~2.5mg·mL~(-1)范围内,随着漏芦花多糖浓度增加,总还原能力不断增强;其体外清除DPPH自由基能力也随浓度增大而增强,清除率最高达72.98%;当多糖浓度为1.5mg·mL~(-1)时,漏芦花多糖体外清除羟基自由基能力最强,为7.24%。漏芦花多糖浓度为12.8mg·mL~(-1)时,对沙门氏菌的抑菌圈直径为9.72mm。超声法提取蒙药漏芦花多糖操作简便、准确、灵敏、重现性好,漏芦花多糖抗氧化能力良好,且对沙门氏菌有一定的抑菌效果。 相似文献
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以夏枯草多糖为研究对象,在单因素实验的基础上,采用响应面法对夏枯草多糖的微波提取工艺进行优化,测定其抗氧化活性。结果表明,夏枯草多糖的最佳提取条件为:液料比29∶1(mL·g-1),乙醇体积分数68%,微波功率295W,微波时间8min,在该条件下夏枯草多糖得率为5.28%,与理论值(5.19%)的相对误差为1.73%。在此条件下得到的多糖提取物具有较好体外抗氧化活性,对DPPH自由基、羟基自由基、超氧阴离子具有不同的清除能力,半数抑制浓度IC50分别为0.58、0.49和1.19mg·mL-1 。 相似文献
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本文采用NaOH水溶液对海南绳江蓠进行超声浸提制备绳江蓠粗多糖(GCP),通过单因素实验和正交试验,考察得出GCP最佳提取工艺条件为NaOH溶液质量浓度1.5%,提取温度70℃,液料比1∶40,提取时间水浴4h,超声1h,提取率为20.01%,总糖含量为26.00%。对绳江蓠粗多糖进行乙醇沉降分级纯化,得到3种多糖组分GCP20、GCP40、GCP50,凝胶渗透色谱结果表明三种组分数均分子量分别为117kDa、116kDa和113kDa。电子自旋共振法测试GCP20、GCP40、GCP50对·OH的清除活性,三种组分均有很好的自由基清除能力,20mg·mL-1GCP20的羟基清除率达81.4%。紫外可见分光光度计在734nm波长下测试GCP20、GCP40、GCP50对ABTS+·的清除活性,浓度为20mg·mL-1时,三种组分对ABTS+·清除率均接近100%,表明这三种组分均有很好的抗氧化活性。 相似文献
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采用单因素、Box-Behnken design (BBD)试验响应面(RSM)法优化超高压提取(UPE)红龙果果皮多糖(RDFPs)工艺,以提高多糖得率.最佳工艺条件为:提取时间42.75 s,温度51.61℃,压力316.44 MPa;在修订最优条件下RDFPs的实验得率为34.31%,与预测得率(34.5%)一致.用超滤法和Sephadex G-100分子筛凝胶分离得到多糖组分RDFP-1,RDFP-2,RDFP-3,RDFP-4和RDFP-5,相对分子质量分别为7 950,16 460,49 980,145 350和193 710,并对它们的理化性质和体外抗氧化活性进行了比较研究.结果表明,RDFPs含有76.84%~84.22%的中性糖,9.64%~18.55%的糖醛酸,0.06%~0.88%的蛋白质.傅里叶红外光谱(FT-IR)和紫外(UV)光谱显示这些组分都具有多糖的特征吸收峰.RDFP-1和RDFP-4对1,1-二苯基-2-苦基肼自由基(·DPPH)、羟基自由基(·OH)和超氧阴离子自由基(·O2-)的清除活性显著高于其他多糖... 相似文献
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《化学研究与应用》2015,(10)
研究猫须草多酚的提取工艺及其抗氧化活性。通过单因素试验探讨提取剂、乙醇体积分数、料液比、提取温度、提取时间、提取次数等因素对猫须草多酚提取率的影响,在单因素试验的基础上进行正交试验,结果表明,猫须草多酚的最佳提取工艺条件如下:10%乙醇,料液比1∶30,提取温度90℃,提取时间40min,在该条件下猫须草多酚的提取率为11.99mg·g-1。通过测定猫须草多酚清除DPPH自由基、超氧阴离子自由基、亚硝酸根离子的能力及其还原力,对猫须草多酚的抗氧化活性进行评价,结果表明,在一定质量浓度范围内,猫须草多酚清除DPPH自由基的能力及还原力优于Vc,清除超氧阴离子自由基的能力与Vc接近,但清除亚硝酸根离子的能力低于Vc。 相似文献
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Mariem Itaimi Dammak Zeineb Mzoughi Ibtissem Chakroun Hedi Ben Mansour Didier Le Cerf 《Natural product research》2020,34(10):1470-1474
AbstractIn this study, Box-Behnken Design was used to optimize the ultrasonic extraction of polysaccharides from quince peels (QPPs) by ascorbic acid and the effect of extraction temperature, extraction time and pH was evaluated. Under optimized conditions of temperature 90?°C, 60?min sonication time and pH?=?3.26, the extraction yield, the galacturonic acid yield and the concentration of sample required to scavenge 50% of 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulphonic) acid (ABTS) values of QPPs were respectively 10.25%, 3.86% and 1.35?mg/mL. The QPPs extracted under optimum conditions was characterized by Fourier transform infrared spectroscopy (FTIR), Nuclear magnetic resonance (1?H NMR) and Size exclusion chromatography (SEC/MALS/VD/DRI). The monosaccharide analysis revealed that arabinose was the most abundant, followed by galactose, glucose, mannose and xylose. Moreover, QPPs showed significant antioxidant activities (2,2-diphenyl-1-picrylhydrazyl (DPPH) and Ferric- reducing antioxidant power (FRAP)) and reduced viability of human Caco-2 and murine B-16 cell lines in a dose-dependent manner. Hence QPPs could be used as antitumor agent in functional foods andpharmaceutical industries. 相似文献
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Hongxia Chen Hao Zhou Ran Tao Jianzhong Ye Wenjun Li 《Natural product research》2018,32(18):2221-2224
Three polysaccharides, LTPS-1, LTPS-21 and LTPS-31 were isolated and purified from the seed cakes of lacquer tree using DEAE-52 cellulose and Sephadex G-200 column chromatography. The total sugar contents of LTPS-1, LTPS-21 and LTPS-31 were 931.8, 958.2 and 895.1 g kg?1, respectively. LTPS-1 (3.48 kDa) was mainly composed of rhamnose, arabinose, glucose and galactose in a ratio of 35.36:5.06:1:2. LTPS-21 (11.4 kDa) was mainly composed of rhamnose, arabinose, mannose and galactose in a ratio of 41.93:21.8:1.01:9.24. LTPS-31 (19.49 kDa) was mainly composed of rhamnose, arabinose and mannose in a ratio of 38.31:16.44:1.1. IR analysis suggested they contained lower sulphuric acids, the LTPS-21 and LTPS-31 belonged to β-type polysaccharide. Among the three polysaccharides, LTPS-21 exhibited the strongest reducing power, scavenging activity on ABTS and hydroxyl radicals. These findings suggested that polysaccharides from the seed cakes could be potentially developed as natural functional ingredients in the food and cosmetic industry. 相似文献
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《化学研究与应用》2015,(11)
以麻疯树果壳为原料,采用超声波辅助法提取麻疯树果壳中的多糖。在单因素实验的基础上,利用正交实验优化提取条件,并采用还原能力、DPPH·有机自由基的清除能力、羟自由基的清除能力作为麻疯树果壳多糖的体外抗氧化作用评价的3个指标。结果表明,超声波辅助提取麻疯树果壳多糖的最佳工艺条件为超声功率160 W,提取温度80℃,提取时间1.0 h,料液比1∶25(g·m L-1),在此条件下多糖得率为5.96%。抗氧化实验表明,麻疯树果壳多糖具有良好的还原能力,且清除·OH及DPPH·的能力与浓度呈正相关。当麻疯树果壳多糖浓度为0.5 mg·m L-1时,对·OH及DPPH·的清除率分别达到70%和60%。因此,该本方法操作简便、高效,测定快速。 相似文献
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采取超高压提取,DEAE-Sepharose Fast Flow和Sephadex G-100柱层析分离纯化得到虫草多糖(CMP),通过高效凝胶色谱(HPGPC)、气相色谱(GC)和傅里叶红外光谱(FT-IR)对其理化特征进行了表征,并对CMP抗氧化及免疫调节活性进行了测定.结果显示CMP是纯度较高杂多糖,由鼠李糖、甘露糖、葡萄糖和半乳糖4个单糖组成,结果表明超高压是一种高效的菌多糖提取技术,提取得到的CMP可以探索作为天然的抗氧化和免疫调节剂应用于功能食品和药品. 相似文献
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《Arabian Journal of Chemistry》2021,14(12):103420
Making full use of sunflower seeds, including oil and the polysaccharides extracted from the meals which oil has been extracted, is one way to enhance their industrial value. Such meals contain abundant polysaccharides; however, the application of polysaccharides isolated from sunflower remaining meals after oil extraction has not been investigated. In this study, polysaccharides were isolated by alkali from sunflower meals after different oil extraction processes, and their structural properties and antioxidant activities were compared. The results indicated that these polysaccharides displayed significant variability in monosaccharide composition and molecular weight. Differences in structural properties could result in differences in functional antioxidant properties. The polysaccharide (SPHE-1) obtained from the meals after traditional hexane extraction exhibited the best antioxidant activities, including DPPH free radical-scavenging assay and hydroxyl radical scavenging activity among all the polysaccharide fractions. The research provides valuable information for making efficient use of sunflower seeds in the food industry. 相似文献
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在单因素实验的基础上,采用Box-Behnken中心组合实验和响应面分析法,研究提取时间、超声波功率、液料比对垂丝海棠叶多糖含量的影响,建立影响因素与响应值之间的数学模型,确立最佳提取工艺为:提取时间20 min,液料比45∶1,超声波功率135W。抗氧化实验结果表明,在达到最大浓度0.74mg·m L-1时,垂丝海棠叶多糖(超声)、垂丝海棠叶多糖(煮沸)和Vc的对DPPH的清除率依次为79.9%,69.7%,64.8%,垂丝海棠叶多糖(超声)和垂丝海棠叶多糖(煮沸)对·OH自由基的清除率分别为60.1%、51.2%,垂丝海棠叶多糖(超声)还原Fe3+能力较强。 相似文献
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《Arabian Journal of Chemistry》2022,15(5):103770
Four polysaccharides BJP50, BJP60, BJP70 and BJP80 (total named BJPs) were separated from Herba Patriniae via gradient ethanol precipitation with 50%, 60%, 70% and 80%, respectively. After decolorization and deproteinization, their physicochemical features and antioxidant activities were investigated. The results showed that the total sugar content of BJPs accounted above 50% but no protein contained, while BJP50 and BJP60 contained a small amount of uronic acid. GC analysis indicated that BJPs were mainly composed of galactose, arabinose, glucose, mannose, xylose and rhamnose. From BJP50 to BJP80, the types of monosaccharides and the content of arabinose, glucose and mannose increased but that of galactose and rhamnose decreased, and their molecular weights gradually reduced from 2.3 × 106 to 4.5 × 103. BJPs had a good thermal stability with the order of BJP80 > BJP70 > BJP60 > BJP50. The vitro bioactivity assay showed that BJP80 and BJP70 exhibited stronger scavenging capacities for DPPH, ABTS and hydroxyl free radicals than that of BJP60 and BJP50. As the concentration reached 4 mg/mL, the scavenging capacities of BJP80 and BJP70 on DPPH and hydroxyl free radical were up to 92% and 95%, respectively, and their antioxidant activities gradually approached to the positive control. 相似文献