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大马士革玫瑰纯露发酵液制备工艺及功效评价
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作者 高飞 尹思雨 +1 位作者 皮汨源 朱月星 《广东化工》 CAS 2024年第16期49-51,27,共4页
为了研究大马士革玫瑰纯露发酵液的抗氧化、抗衰老和美白功效,在玫瑰纯露中加入酵母菌进行发酵;检测发酵液对1,1-二苯基-2-三硝基苯肼(DPPH)、超氧阴离子和羟自由基清除率,基质金属蛋白酶1(MMP-1)、酪氨酸酶抑制率,植物总酚和类黄酮含... 为了研究大马士革玫瑰纯露发酵液的抗氧化、抗衰老和美白功效,在玫瑰纯露中加入酵母菌进行发酵;检测发酵液对1,1-二苯基-2-三硝基苯肼(DPPH)、超氧阴离子和羟自由基清除率,基质金属蛋白酶1(MMP-1)、酪氨酸酶抑制率,植物总酚和类黄酮含量的影响,以评价其抗氧化、抗衰老和美白功效。实验结果显示发酵液总酚含量到了104.48 mg/L,类黄酮含量50.3 mg/L;发酵液浓度越高对DPPH自由基、羟自由基和超氧阴离子清除率、MMP-1抑制率和酪氨酸酶活性抑制率越高,最高分别为56.6%、87.2%、75.5%、33.19%、32.7%。结果表明发酵液的抗氧化、抗衰老和美白功效相较于发酵前都有很大提高,可作为原料应用于化妆品中。 展开更多
关键词 大马士革玫瑰 纯露发酵 抗氧化 抗衰老 美白
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海拔高度对大马士革Ⅲ玫瑰叶绿素含量的影响 被引量:10
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作者 苏春江 刘俊 何锦峰 《安徽农业科学》 CAS 北大核心 2009年第9期3945-3946,共2页
[目的]为提高大马士革Ⅲ玫瑰的产量提供一定的参考依据。[方法]采用分光光度法测定大马士革Ⅲ玫瑰叶绿素含量,分析其随海拔高度变化的规律并解释其机制。[结果]叶绿素a、b、a+b的含量在海拔1562 m处比较高,在海拔1737 m处有所下降,在海... [目的]为提高大马士革Ⅲ玫瑰的产量提供一定的参考依据。[方法]采用分光光度法测定大马士革Ⅲ玫瑰叶绿素含量,分析其随海拔高度变化的规律并解释其机制。[结果]叶绿素a、b、a+b的含量在海拔1562 m处比较高,在海拔1737 m处有所下降,在海拔1835m处达到最高,在海拔2 537 m处最低。当地大马士革Ⅲ玫瑰在海拔1500~1900 m处生长最好,在海拔2500 m附近叶绿素a、b、a+b的含量较低。叶绿素a/b值在海拔2463 m处最大,在海拔2537 m处最小。叶绿素含量的变化规律与植物生长情况有较好的正相关性。叶绿素a能直接被光能激发的分子较多,叶绿素b有利于吸收利用光强较弱的光。[结论]海拔高度对玫瑰叶片的叶绿素含量有明显影响。 展开更多
关键词 大马士革Ⅲ玫瑰 海拔 叶绿素含量
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不同溶剂对大马士革Ⅲ玫瑰叶绿素的萃取效果 被引量:1
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作者 刘俊 何锦峰 +1 位作者 苏春江 刘艳艳 《重庆交通大学学报(自然科学版)》 CAS 北大核心 2009年第2期323-324,共2页
采用分光光度法,对比研究了丙酮、乙醇以及不同体积比的丙酮与无水乙醇混合液5种提取液对大马士革Ⅲ玫瑰叶绿素萃取效果的影响,以筛选最佳提取条件。结果表明,常温下,丙酮和无水乙醇的1∶1混合液对大马士革Ⅲ玫瑰叶绿素的提取效果较好。
关键词 大马士革Ⅲ玫瑰 叶绿素 丙酮 乙醇
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Antioxidation and active constituents analysis of flower residue of Rosa Damascena Mill 被引量:1
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作者 LIU Wen-ya CHEN Lin-yu +6 位作者 HUANG Ying-ying FU Ling SONG Le-yuan WANG Yun-yu BAI Zhe MENG Fang-feng BI Yue-feng 《中国药理学与毒理学杂志》 CAS 北大核心 2019年第9期691-692,共2页
OBJECTIVE To make full of resource,the bioactivity and active constituent analysis were firstly system⁃atically investigated on damask rose flower residue(DRFR).METHODS DPPH and ABTS experiments were applied to assess... OBJECTIVE To make full of resource,the bioactivity and active constituent analysis were firstly system⁃atically investigated on damask rose flower residue(DRFR).METHODS DPPH and ABTS experiments were applied to assess the antioxidant activity of DRFR.Then,column chromatography was used to purify compounds from DRFR-A,and the chemical structure was identified using nuclear magnetic resonance(NMR).The total phenolic acid content was measured by folin-ciocalteu colorimetric method and the content of gallic acid the indicator ingredient,was detected by high performance liquid chromatography(HPLC).RESULTS By DPPH and ABTS experiments,an antioxidation extract(DRFR-A)was found and displayed a high activity both on DPPH(IC50:2.760 mg·L^-1)and ABTS(IC50:2.258 mg·L^-1)compared to positive control VC.Ten compounds were isolated and identified from DRFR-A,and the most are phenolic acids.Among them,pyrogallic acid,2-phenylethyl-3,4,5-trihydroxybenzoate,p-hydroxybenzoic acid and p-hydroxy⁃phenethyl alcohol were obtained from the plant for the first time.The content of total phenolic acids and main ingredient,gallic acid,in DRFR-A was determined as 63.73%and 5.12%,respectively.CONCLUSION This study provides reliable science data and lays the foundation for the development and utilization of rose residue,and hence for the full utilization of rose resources. 展开更多
关键词 damask rose flower residue phenolics phenolic acids antioxidant activity
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2种玫瑰精油对小鼠的抗焦虑作用 被引量:11
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作者 丁鸣 马晓红 +1 位作者 张楠 姚雷 《上海交通大学学报(农业科学版)》 2019年第6期25-29,共5页
研究通过GC-MS法分析了大马士革玫瑰(Rosa damascena)精油和苦水玫瑰(Rosa sertata×Rosa rugosa)精油的化学成分。将ICR小鼠分成对照组、地西泮组和精油组,采用高架十字迷宫模型(elevated plus-maze,EPM)评价了急性嗅吸不同浓度2... 研究通过GC-MS法分析了大马士革玫瑰(Rosa damascena)精油和苦水玫瑰(Rosa sertata×Rosa rugosa)精油的化学成分。将ICR小鼠分成对照组、地西泮组和精油组,采用高架十字迷宫模型(elevated plus-maze,EPM)评价了急性嗅吸不同浓度2种精油对小鼠抗焦虑的影响。通过高架十字迷宫和明暗箱(light-dark box,LDB)模型评价了长期嗅吸苦水玫瑰精油对抗焦虑的影响。精油成分分析显示,苦水玫瑰精油的主要成分中香茅醇(37.36%)和香叶醇(12.06%)含量均高于大马士革玫瑰精油中香茅醇(16.87%)和香叶醇(11.63%)含量。急性嗅吸实验结果显示,与对照组(开臂时间%:1.06±0.70,开臂次数%:0.68±0.49)相比,低浓度(10μL/mL)苦水玫瑰精油(开臂时间%:14.05±6.39,开臂次数%:16.16±6.19)具有显著缓解小鼠焦虑的作用(P<0.05),而大马士革玫瑰精油则不具有抗焦虑功效。长期嗅吸实验结果显示,与对照组相比,苦水玫瑰精油可以显著缓解小鼠在EPM(开臂时间%:14.05±6.39,开臂次数%:17.52±2.60)和LDB(精油组:明箱时间%:48.04±2.28,明箱距离%:46.26±3.19)模型中的焦虑行为(P<0.05)。 展开更多
关键词 苦水玫瑰 大马士革玫瑰 精油 抗焦虑 高架十字迷宫 明暗箱
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Antioxidation and active constituents analysis of flower residue of Rosa damascena 被引量:2
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作者 Wen-ya Liu Lin-yu Chen +6 位作者 Ying-ying Huang Ling Fu Le-yuan Song Yun-yu Wang Zhe Bai Fang-feng Meng Yue-feng Bi 《Chinese Herbal Medicines》 CAS 2020年第3期336-341,共6页
Objective:To make full usage of resource and turn waste into treasure,the chemical constituents and bioactivity were firstly investigated on Damask rose(Rosa damascena)flower residue(DRFR).Methods:DPPH and ABTS experi... Objective:To make full usage of resource and turn waste into treasure,the chemical constituents and bioactivity were firstly investigated on Damask rose(Rosa damascena)flower residue(DRFR).Methods:DPPH and ABTS experiments were applied to assess the antioxidant activity of DRFR.Then,column chromatography was used to purify compounds from an antioxidation extract(DRFR-A),and the chemical structure was identified using NMR.The total phenolic acid content was measured by FolinCiocalteu colorimetric method,and the content of gallic acid of the indicator ingredient was detected by HPLC.Results:DRFR-A was found to show a high activity both on DPPH(IC5o:2.760μg/mL)and ABTS(ICso:2.258μg/mL)compared to positive control Vc,Ten compounds were isolated and identified as quercetin(1),kaempferol(2),gallic acid(3),protocatechuic acid(4),pyrogallic acid(5),2-phenylethyl 3,4,5-trihydroxybenzoate(6),methyl gallate(7),p-hydroxybenzoic acid(8),p-hydroxyphenethyl alcohol(9)and astragalin(10)from DRFR-A.Among them,pyrogallic acid,2-phenylethyl-3,4,5-trihydroxybenzoate,p-hydroxybenzoic acid and p-hydroxyphenethyl alcohol are obtained from the plant for the first time.The content of total phenolic acids and gallic acid,main ingredient in DRFR-A was determined as 63.73%and 24.67%,respectively.Conclusion:This study provides a reliable data and lays the foundation for the development and utilization of rose residue,and hence for the full utilization of rose resources. 展开更多
关键词 antioxidant activity damask rose flower residue HPLC phenolic acids phenolics Rosa damascena Mill
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