柠檬烯
- 网络Limonene;D-limonene
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目的:研究β环糊精(βCD)对柠檬烯挥发油的包合作用。
Objective : To study the inclusion action of β - cyclodextrin (β - CD ) with limonene .
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桉油中主要含桉油精(C(10)H(18)O),其含量大于70.0%;还含有柠檬烯、α-蒎烯等成份。
Eucalyptus oil mainly contains eucalyptol ( C_ ( 10 ) H_ ( 18 ) O , more than 70 % ), limonene , a-pinene and ect .
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GC法测定复方柠檬烯胶囊中柠檬烯的含量
Determination of limonene in Compound limonene capsules by GC
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D-柠檬烯对K562细胞增殖及凋亡的影响
Proliferation Inhibition and Apoptosis Induction of K562 Cells by D-limonene
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本研究探讨D-柠檬烯对K562白血病细胞增殖的影响及机制。
This study was aimed to investigate the effect of D-limonene on K562 leukemia cells and its mechanism .
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海洋细菌Aeromonashydrophila和Vibriovulnificus对单萜柠檬烯的生物转化产物分析
Biotransformation of ( D ) - Limonene by Marine Bacteria Aeromonas hydrophila and Vibrio vulnificus
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关于用水蒸汽蒸馏法从桔皮中提取柠檬烯装置的改进超临界CO2萃取和水蒸汽蒸馏法研究乌药中挥发性有机物
The improvement of equip obout the method distilling water steam from the peel of orange Concerning to detach lemonene ; Comparison of the Constituents of Essential Oil from Linder aggregate by Supercritical-CO_2 Fluid Extraction and Steam Distillation
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结论D-柠檬烯抑制K562细胞的增殖并呈剂量依赖的方式,使细胞滞留于G1期,诱导其凋亡。
It is concluded that the D-limonene can inhibit proliferation of K562 cells in dose-dependent manner , cause cell detained at G_1 phase and induce apoptosis of K562 cells .
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盐酸小檗碱、右旋柠檬烯对人胃癌细胞株MGC-803的体外联合作用评价
In Vitro Evaluation of the Anticancer Effects of Berberine Hydrochloride and D-limonene Combination on Human Gastric Carcinoma Cell Line MGC-803
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应用MTT试验观察不同浓度D-柠檬烯作用后K562细胞增殖的改变;应用细胞形态学检查、流式细胞术、DNA琼脂糖凝胶电泳观察和检测细胞凋亡。
Inhibitory effect of D-limonene on proliferation of K562 leukemia cells was assayed by MTT method and cell apoptosis was detected by flow cytometry and DNA agarose gel electrophoresis , the morphologic change of K562 cells was observed by microscopy .
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结论:两种提取方法成分结果有所不同,但都含有主要成分D-柠檬烯,含量以SFE法为高。
Conclusion : The results of the two extraction methods varied , however both identified the main component as D-limonene . The percentage of D-limonene was found to be higher with the SFE method .
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柠檬烯类似物的合成及其体外抗癌活性
Synthesis of limonene derivatives and their antitumor activities in vitro
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从山苍子油中提取柠檬烯和柠檬醛的研究
Study on extracting limonene and citral from Litsea cubeba oil
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香气成分主要是柠檬烯和β-月桂烯。
The main components of aroma is Limonene and β - Myrcene .
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天然活性单萜&柠檬烯的研究进展
Recent advances on limonene , a natural and active monoterpene
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最后通过压制程序制成了柠檬烯软胶囊。
After that , though pressing process , limonene soft capsules are manufactured .
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柠檬烯胶囊在人体内的相对生物利用度
Relative bioavailability of Limonene capsules in healthy volunteers
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三氯乙烯替代品-右旋柠檬烯的应用研究
Study on SF-001 as a Trichloroethylene Substitute
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荆芥穗中提取柠檬烯的研究
The Research of Extraction Limonene from the Ear of Schizonepeta Tenuifolia ( BENTH ) Briq
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海洋细菌对柠檬烯的生物转化及萜类产物鉴定
Biotransformation of Limonene by Marine Bacteria
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结论:金佛手挥发油的主要成分是柠檬烯与蒈烯。
Conclusion : The majority chemical composition in Citrus Bergamot volatile oils were Limonene and Carene .
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本文研究从荆芥穗中提取回收聚苯乙烯所需的柠檬烯,其方法是溶剂萃取。
Limonene needed in recycling foamed polystyrene was extracted from the ear of schizonepeta tenuifolia using ligroin .
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其中D-柠檬烯含量最高,占总出峰面积的65%。
The highest content was D-limonene , which represented 65 % of the total peak areas . 2 .
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α-蒎烯+柠檬烯和对伞花烃+柠檬烯体系常压汽液平衡的测定与关联
Measurement and correlation of VLE data for α - pinene + limonene and p-cymene + limonene systems under atmospheric pressure
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结论D-柠檬烯和L-柠檬烯的促透量均高于对照组和氮酮组,并且以D-柠檬烯的时滞最短。
Conclusion D-limonene was the most effective enhancer which had the greater transdermal flux of LH and the least lag time .
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橙皮中含有大量的橙皮油,橙皮油中含有90%的柠檬烯,柠檬烯是一种用途广泛的天然香料。
The peels of oranges contain abundant oil , containing 90 % limonene which is a kind of widely used crude spicery .
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用水蒸汽蒸馏提取其叶精油,用气相色谱-质谱联用方法进行成分研究,结果表明,α-蒎烯、β-蒎烯和柠檬烯是构成川滇冷杉叶精油的主要化学成分。
The results show that the major chemical constituents of the essential oil are α - pinene , β - pinene and limonene .
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在进行指纹图谱评价过程中,制定了柠檬烯的标准指纹图谱,也为进一步控制柠檬烯原料的质量提供了依据。
During the evaluation process of the fingerprint diagram , the limonene standard fingerprint is established , that can be ensure the quality of limonene .
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新增α-松油醇是由柠檬烯的水合反应和芳樟醇的降解而共同累积,香芹酮则由柠檬烯在高压下发生氧化反应生成。
α - terpineol was created by hydration reaction of limonene and linalool degradation , while carvone was created by oxidation reaction of limonene . 2 .
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本文从循环经济、绿色化学理念出发,研究了两种从橙皮中提取柠檬烯无害化的提取方法。
This article is based on cycling economy and green chemistry theory , and studies two kinds of green extracting limonene from the peels of oranges .