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Anticancer effect of linalool via cancer-specific hydroxyl radical generation in human colon cancer 被引量:5
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作者 Kenichi Iwasaki Yun-Wen Zheng +10 位作者 Soichiro Murata Hiromu Ito Ken Nakayama Tomohiro Kurokawa Naoki Sano Takeshi Nowatari Myra O Villareal Yumiko N Nagano Hiroko Isoda Hirofumi Matsui Nobuhiro Ohkohchi 《World Journal of Gastroenterology》 SCIE CAS 2016年第44期9765-9774,共10页
AIM To investigate the anticancer mechanisms of the monoterpenoid alcohol linalool in human colon cancer cells.METHODS The cytotoxic effect of linalool on the human colon cancer cell lines and a human fibroblast cell ... AIM To investigate the anticancer mechanisms of the monoterpenoid alcohol linalool in human colon cancer cells.METHODS The cytotoxic effect of linalool on the human colon cancer cell lines and a human fibroblast cell line was examined using the WST-8 assay. The apoptosisinducing effect of linalool was measured using the terminal deoxynucleotidyl transferase d UTP nickend labeling assay and flow cytometry with Annexin V. Oxidative stress was investigated by staining for diphenyl-1-pyrenylphosphine, which is a cellular lipid peroxidation marker, and electron spin resonance spectroscopy. Sixteen SCID mice xenografted with human cancer cells were randomized into 3 groups for in vivo analysis: control and low-dose and high-dose linalool groups. The control group was administered tap water orally every 3 d. The linalool treatment groups were administered 100 or 200 μg/kg linalool solution orally for the same period. All mice were sacrificed under anesthesia 21 d after tumor inoculation, and tumors and organs were collected for immunohistochemistry using an anti-4-hydroxynonenal antibody. Tumor weights were measured and compared between groups. RESULTS Linalool induced apoptosis of cancer cells in vitro, following the cancer-specific induction of oxidative stress, which was measured based on spontaneous hydroxyl radical production and delayed lipid peroxidation. Mice in the high-dose linalool group exhibited a 55% reduction in mean xenograft tumor weight compared with mice in the control group(P < 0.05). In addition, tumor-specific lipid peroxidation was observed in the in vivo model.CONCLUSION Linalool exhibited an anticancer effect via cancerspecific oxidative stress, and this agent has potential for application in colon cancer therapy. 展开更多
关键词 COLORECTAL cancer linalool OXIDATIVE stress Electron SPIN resonance LIPID PEROXIDATION
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Fabrication linalool-functionalized hollow mesoporous silica spheres nanoparticles for efficiently enhance bactericidal activity 被引量:2
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作者 Li Jin Xun Liu +3 位作者 Changhao Bian Jie Sheng Yishan Song Yongheng Zhu 《Chinese Chemical Letters》 SCIE CAS CSCD 2020年第8期2137-2141,共5页
To develop a novel food preservation technology for efficiently enhance bactericidal activity in a long term,hollow mesoporous silica spheres(HMSS)with regular nanostructures were applied to encapsulate natural organi... To develop a novel food preservation technology for efficiently enhance bactericidal activity in a long term,hollow mesoporous silica spheres(HMSS)with regular nanostructures were applied to encapsulate natural organic antimicrobial agents.The chemical structures,morphologies and thermal stabilities of linalool,HMSS and linalool-functionalized hollow mesoporous silica spheres(L-HMSS)nanoparticles were evaluated by polarimeter,field emission scanning electron microscope(FE-SEM),transmission electron microscope(TEM),fourier transform infrared(FT-IR),thermal gravimetric analyzer(TGA),nitrogen adsorption-desorption,zeta potential and small angle X-ray diffraction(SXRD).The results show that the linalool was successfully introduced into the cavities of HMSS,and the inorganic host exhibited a high loading capacity of about 1500 mg/g.In addition,after 48 h of incubatio n,the minimum bactericidal concentrations(MBC)of L-HMSS against Escherichia coli(E.coli),Salmonella enterica(S.enterica)and Staphylococcus aureus(S.aureus),Listeria monocytogenes(L.monocytogenes)were decreased to be 4(<5)mg/mL and 8(<10)mg/mL,respectively.These results revealed linaloolfunctionalized hollow mesoporous spheres could efficiently improve the bactericidal activities of the organic component.Furthermore,SEM images clearly showed that L-HMSS indeed had an extremely inhibitory effect against gram-negative(E.coli)and gram-positive(S.aureus)by breaking the structure of the cell membrane.This research is of great significance in the application of linalool in nano-delivery system as well as food industry. 展开更多
关键词 linalool Hollow mesoporous silica spheres Encapsulation Bactericidal activity Antimicrobial mechanism
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Expression in Arabidopsis of a Strawberry Linalool Synthase Gene Under the Control of the Inducible Potato PI2 Promoter 被引量:1
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作者 YANG Li-mei Per Mercke +3 位作者 Joop J A van Loon FANG Zhi-yuan Marcel Dicke Maarten A Jongsma 《Agricultural Sciences in China》 CAS CSCD 2008年第5期521-534,共14页
To investigate the role of inducible linalool in Arabidopsis-insect interactions, the FANES 1 linalool synthase (LIS) cDNA from strawberry with plastid targeting and a synthetic intron (LIS') was placed under the... To investigate the role of inducible linalool in Arabidopsis-insect interactions, the FANES 1 linalool synthase (LIS) cDNA from strawberry with plastid targeting and a synthetic intron (LIS') was placed under the control of the wound inducible proteinase inhibitor 2 (PI2) promoter from potato. The construct pBin-PPi2-LIS' was transformed to Arabidopsis thaliana ecotype Columbia 0. Kanamycin resistant TO seedlings were confirmed for the presence and transcription of the LIS' gene by PCR analysis on genomic DNA and by RT-PCR analysis on RNA. Genomic and RT-PCR products were sequenced to confirm correct splicing of the synthetic intron. The expression of active linalool synthase by the PPI2-LIS' gene construct in the transgenic lines was assessed by measuring linalool emission using solid phase micro-extraction (SPME) GC-MS measurements after induction with methyl jasmonate. Among 30 tested independent T2 transgenic lines, 10 exhibited linalool production. Linalool expression could be induced by methyl jasmonate treatment, but not by diamondback moth larvae. 展开更多
关键词 Aradidopsis linalool synthase potato proteins inhibitor inducible promoter methyl jasmonate Plutella xylostella induction EXPRESSION
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Putative Mode of Action of the Monoterpenoids Linalool, Methyl Eugenol, Estragole, and Citronellal on Ligand-Gated Ion Channels 被引量:1
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作者 Amy SLi Akimasa Iijima +2 位作者 Junhao Huang Qing XLi Yongli Chen 《Engineering》 SCIE EI 2020年第5期541-545,共5页
Essential oil has been used as sedatives,anticonvulsants,and local anesthetics in traditional medical remedies;as preservatives for food,fruit,vegetable,and grain storage;and as bio-pesticides for food production.Lina... Essential oil has been used as sedatives,anticonvulsants,and local anesthetics in traditional medical remedies;as preservatives for food,fruit,vegetable,and grain storage;and as bio-pesticides for food production.Linalool(LL),along with a few other major components such as methyl eugenol(ME),estragole(EG),and citronellal,are the active chemicals in many essential oils such as basil oil.Basil oil and the aforementioned monoterpenoids are potent against insect pests.However,the molecular mechanism of action of these chemical constituents is not well understood.It is well-known that the c-aminobutyric acid type A receptors(GABAARs)and nicotinic acetylcholine receptor(nAChR)are primary molecular targets of the synthetic insecticides used in the market today.Furthermore,the GABAAR-targeted therapeutics have been used in clinics for many decades,including barbiturates and benzodiazepines,to name just a few.In this research,we studied the electrophysiological effects of LL,ME,EG,and citronellal on GABAAR and nAChR to further understand their versatility as therapeutic agents in traditional remedies and as insecticides.Our results revealed that LL inhibits both GABAAR and nAChR,which may explain its insecticidal activity.LL is a concentration-dependent,noncompetitive inhibitor on GABAAR,as the half-maximal effective concentration(EC50)values of c-aminobutyric acid(GABA)for the rat a1b3c2L GABAAR were not affected by LL:(36.2±7.9)lmol-1 and(36.1±23.8)μmol·L-1 in the absence and presence of 5 mmol·L-1 LL,respectively.The half-maximal inhibitory concentration(IC50)of LL on GABAAR was approximately 3.2 mmol·L-1.Considering that multiple monoterpenoids are found within the same essential oil,it is likely that LL has a synergistic effect with ME,which has been previously characterized as both a GABAAR agonist and a positive allosteric modulator,and with other monoterpenoids,which offers a possible explanation for the sedative and anticonvulsant effects and the insecticidal activities of LL. 展开更多
关键词 Essential oil c-Aminobutyric acid type A receptor linalool MONOTERPENOID Nicotinic acetylcholine receptor
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Ferric Chloride Catalyzed Isomerization and Cyclization of Geraniol, Linalool and Nerol
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作者 Wei YU Miao WEN +1 位作者 Li YANG Zhong Li LIU 《Chinese Chemical Letters》 SCIE CAS CSCD 2002年第6期495-496,共2页
Ferric chloride catalyzes the isomerization and cyclization of geraniol, linalool and nerol in acetonitrile giving a-terpineol in good to high yields.
关键词 FECL3 catalysis CYCLIZATION GERANIOL linalool NEROL a-terpineol.
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Zwitterionic comb-like lipid polymers encapsulating linalool for increasing the fragrance retention time
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作者 Tianlu Zhang Zhiguo Lu +5 位作者 Xiangyu Wang Jie Shen Jianze Wang Yunwei Niu Zuobing Xiao Xin Zhang 《Chinese Chemical Letters》 SCIE CAS CSCD 2021年第1期573-576,共4页
Fragrances are widely used in cosmetics,apparel and detergents.However,the rapid evaporation of the aro ma shortens the useful life of the aromatic product.Therefore,improving the fragrance retention time of aromatic ... Fragrances are widely used in cosmetics,apparel and detergents.However,the rapid evaporation of the aro ma shortens the useful life of the aromatic product.Therefore,improving the fragrance retention time of aromatic products and prolonging the service life of aromatic products are the key scientific problems that need to be solved in current aromatic products.In this study,zwitterionic comb-like lipid polymers were synthesized to encapsulate the fragrance molecule linalool.The results showed that the zwitterionic comb lipid molecules were capable of encapsulating more linalool than linear lipid molecules.At the same time,the zwitterionic comb-like lipid molecules also limited the slow release rate of the aroma,thereby increasing the fragrance retention time of the nano-fragrance. 展开更多
关键词 linalool Zwitterionic comb-like lipid polymers Nano-fragrance Fragrance retention time Slow release
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Supercritical Equilibrium Data of the Systems Carbon Dioxide—Linalool and Carbon Dioxide—Orange Essential Oil
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作者 Claudio Capparucci Sara Frattari Fausto Gironi 《American Journal of Analytical Chemistry》 2013年第12期763-770,共8页
In this paper experimental equilibrium data on the system supercritical CO2-orange essential oil and the system supercritical CO2-linalool are reported at 323.15 K and 343.15 K, for pressures in the ranges of 7.6-13.5... In this paper experimental equilibrium data on the system supercritical CO2-orange essential oil and the system supercritical CO2-linalool are reported at 323.15 K and 343.15 K, for pressures in the ranges of 7.6-13.5 MPa. The behavior of the system supercritical CO2-orange essential oil was represented by means of thermodynamic model, based on Peng-Robinson equation of state. To this aim the orange essential oil was represented by a mixture of limonene, linalool and β-caryophyllene, selected to represent the classes of monoterpenes, oxygenated terpenes and sesquiterpenes respectively. The model uses only regression parameters calculated from binary sub-systems, CO2-limonene and CO2-β-caryophyllene (taken from literature) and CO2-linalool (calculated from the fitting of original data reported in the present work) thus being predictive with respect to the multicomponent mixture. 展开更多
关键词 SUPERCRITICAL Extraction Carbon Dioxide ORANGE Essential Oil linalool Phase EQUILIBRIUM
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Subchronic Administration of Linalool Decreases Depressive-Like Behaviour in Restrained Rats
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作者 Somrudee Saiyudthong Dawning Srijittapong Chantana Mekseepralard 《Journal of Pharmacy and Pharmacology》 2017年第7期401-407,共7页
Objectives: The aim of this study was to investigate the effect of linalool in chronically stressed rats on their behaviour as related to depressive disorders and BDNF (brain-derived neurotropic factor) protein in ... Objectives: The aim of this study was to investigate the effect of linalool in chronically stressed rats on their behaviour as related to depressive disorders and BDNF (brain-derived neurotropic factor) protein in the hippocampus. Methods: Either Tween 80 or linalool (50, 160, 500 mg/kg) was intraperitonealty administered to rats, daily, for two weeks. Some rats were housed in home cages but the others were induced with chronic restrained stress (15 min daily). At the end of the treatment, the rats were assessed for depressive-like behaviour using the forced swimming test. At the end of the behaviour test, the animals were immediately decapitated and the hippocampus of each animal was removed for the measurement of the BDNF protein by ELISA. Result: The immobility time was significantly increased (p 〈 0.05) but time of climbing was significantly decreased (p 〈 0.05). The restrained rats treated with linalool, 500 mg/kg, displayed immobility times less than those of their controls (p 〈 0.05) while these rats showed significantly more climbing than in the control rats (p 〈 0.05). Linalool showed no effect on the BDNF protein in the hippocampus. Conclusions: linalool decreases behaviour related to depressive disorders but it has no effect on the BDNF protein in chronic restrained stress. 展开更多
关键词 DEPRESSION linalool force swimming test BDNF restrained stress.
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4种植物精油对9种水产病原菌抑制效果
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作者 蔡鸿娇 田厚军 +4 位作者 黄昊 邹文政 林茂 冯少贻 李忠琴 《饲料研究》 北大核心 2025年第5期66-72,共7页
试验旨在探究4种植物精油对9种水产病原菌的抑制效果。以芳樟醇、顺式-茉莉酮、3-蒈烯、α-水芹烯为研究对象,采用牛津杯法和二倍稀释法测定4种植物精油对9种细菌的抑菌效果。结果显示,3-蒈烯浓度为100.00 mL/L时,对爱德华氏菌、V.antiq... 试验旨在探究4种植物精油对9种水产病原菌的抑制效果。以芳樟醇、顺式-茉莉酮、3-蒈烯、α-水芹烯为研究对象,采用牛津杯法和二倍稀释法测定4种植物精油对9种细菌的抑菌效果。结果显示,3-蒈烯浓度为100.00 mL/L时,对爱德华氏菌、V.antiquarius、副溶血弧菌和溶藻弧菌抑菌效果最好,最小抑菌浓度(MIC)分别为50、50、25和50 mL/L,抑菌圈直径>20.00 mm,属于极度敏感。α-水芹烯浓度为100.00 mL/L时,对溶藻弧菌、河流弧菌、副溶血弧菌、金黄色葡萄球菌和V.antiquarius抑菌圈直径>20.00 mm,属于极度敏感。芳樟醇对副溶血弧菌和河流弧菌抑菌效果最强,MIC均为3.125 mL/L,抑菌圈直径>20.00 mm,属于极度敏感。顺式-茉莉酮对河流弧菌和大肠杆菌抑菌效果较好,抑菌圈直径分别为37.30 mm和30.67 mm,属于极度敏感。研究表明,3-蒈烯和α-水芹烯具有广谱抑菌效果。 展开更多
关键词 芳樟醇 顺式-茉莉酮 3-蒈烯 α-水芹烯 抑菌
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‘桂樟1号’叶片生长节律及芳樟醇含量动态变化
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作者 王坤 朱昌叁 +2 位作者 曾祥艳 杨卓颖 李开祥 《广西林业科学》 2025年第4期394-399,共6页
为揭示樟树(Cinnamomum officinarum)品种‘桂樟1号’('Guizhang 1')叶片芳樟醇含量的动态变化规律,以‘桂樟1号’叶片为研究对象,观测其生长节律,采集不同叶龄、不同月份叶片,采用超临界CO_(2)萃取法提取芳樟醇,采用气相色谱... 为揭示樟树(Cinnamomum officinarum)品种‘桂樟1号’('Guizhang 1')叶片芳樟醇含量的动态变化规律,以‘桂樟1号’叶片为研究对象,观测其生长节律,采集不同叶龄、不同月份叶片,采用超临界CO_(2)萃取法提取芳樟醇,采用气相色谱仪分析不同叶龄、不同月份叶片芳樟醇含量。结果表明,不同叶龄叶片芳樟醇含量差异显著;15~65天叶龄时,叶片芳樟醇含量呈先降后升再降趋势,55天叶龄时最高。1年内共抽梢4次;随抽梢次数增加,抽梢长度呈递减趋势;新梢在春夏季节生长较快。随时间增加,第一次抽梢叶片芳樟醇含量呈先升后降的趋势,第二次抽梢叶片芳樟醇含量呈逐渐下降趋势,两次抽梢叶片芳樟醇含量均在6月达到最高值,分别为20.28和19.70μL/g;第三次和第四次抽梢叶片芳樟醇含量均呈先降后升的趋势,最高值均出现在次年1月。采收‘桂樟1号’叶片时,应选择展叶45天后革质化完全的成熟叶片,此时叶片中芳樟醇含量稳定;6月,叶片芳樟醇含量最高,适宜采收。 展开更多
关键词 芳樟醇 生长节律 动态变化 樟树
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埃洛石纳米管负载芳樟醇及其防霉抗菌性能 被引量:1
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作者 张原菘 甘雯馨 +3 位作者 曾钦志 赵伟刚 陈奶荣 饶久平 《复合材料学报》 北大核心 2025年第5期2854-2865,共12页
芳樟醇具有良好的抗菌和抗氧化性,但易挥发且热稳定性差。埃洛石纳米管(HNTs)存在特殊中空孔道结构并具有保护和释放活性物质的功能,常作为纳米载体。因此,开展HNTs负载芳樟醇(LNL)的研究并进行抗菌试验。采用真空负压法将LNL负载到3 mo... 芳樟醇具有良好的抗菌和抗氧化性,但易挥发且热稳定性差。埃洛石纳米管(HNTs)存在特殊中空孔道结构并具有保护和释放活性物质的功能,常作为纳米载体。因此,开展HNTs负载芳樟醇(LNL)的研究并进行抗菌试验。采用真空负压法将LNL负载到3 mol/L盐酸酸化后的埃洛石纳米管(AC-HNTs)管腔内部,制备出芳樟醇-酸化埃洛石纳米管(L-AC-HNTs)新型防霉抗菌剂。以竹制品中常见的大肠杆菌(Escherichia coli)、金黄色葡萄球菌(Staphylococcus aureus)、黑曲霉菌(Aspergillus niger)、桔青霉菌(Penicillium oryzae)为目标菌种,考察不同添加量L-AC-HNTs的抑菌效果,测试其热稳定性和缓释性并进行表征分析。结果表明:添加1.5%质量浓度的L-AC-HNTs对以上几种细菌和霉菌的抑菌效果最佳,抑菌率均达到了100%。LAC-HNTs的热分解速率峰值温度达到279.9℃,比纯LNL提高了81.5℃,AC-HNTs在50℃下挥发72 h后对LNL的保留率仍为94.6%,仅损失了3.4%,而纯LNL保留率为8%,酸化刻蚀后LNL负载量从5.0%最高提升至15.6%。L-AC-HNTs具有广谱抑菌性和热稳定性,为其在竹制品中的应用提供参考。 展开更多
关键词 埃洛石纳米管 芳樟醇 防霉抗菌 负载 热稳定性
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近红外光谱预测芳樟、龙脑樟精油主成分含量 被引量:1
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作者 涂白连 刘新亮 +2 位作者 郑永杰 张月婷 伍艳芳 《林业工程学报》 北大核心 2025年第5期82-90,共9页
为更便捷快速地检测芳樟、龙脑樟中的主成分含量,利用近红外光谱分析技术对芳樟和龙脑樟精油和叶片进行了分析和定量检测。分别扫描芳樟和龙脑樟叶片及精油光谱,结合化学计量学方法建立以精油和叶片为材料的芳樟及龙脑樟精油主成分含量... 为更便捷快速地检测芳樟、龙脑樟中的主成分含量,利用近红外光谱分析技术对芳樟和龙脑樟精油和叶片进行了分析和定量检测。分别扫描芳樟和龙脑樟叶片及精油光谱,结合化学计量学方法建立以精油和叶片为材料的芳樟及龙脑樟精油主成分含量快速预测模型。结果显示:芳樟精油模型,使用偏最小二乘法(PLS)计算模型,经一阶导数处理(db1)预处理,在1000.00~1350.62和1399.78~2000.00 nm波段内建立的模型性能最好,校正集相关系数(R_(C))和交互验证集相关系数(R_(V))分别为0.9620和0.9539,校正集均方根误差(RMSEC)和交互验证均方根误差(RMSEV)分别为0.0110和0.0155;芳樟叶片模型在1000.00~2000.00 nm波段、Segment 5 Gap5的3点二阶泰勒求导(ds2)预处理、PLS算法条件下所建模型的效果最佳,R_(C)和R_(V)分别为0.9386和0.9303,RMSEC和RMSEV分别为0.0331和0.0321。龙脑樟精油模型在1000.00~1350.62和1399.78~2000.00 nm波段内,使用PLS计算模型,整体多元散射校正(mf)、db1和结合单位长度归一化(nle)3种方法相结合预处理光谱,所建预测模型具有最佳预测性能,R_(C)和R_(V)分别为0.9852和0.9558,RMSEC和RMSEV分别为0.0759和0.0786;龙脑樟叶片模型选择主成分回归(PCR)建模方法,在1000.00~1350.62和1399.78~2000.00 nm建模波段,经标准正态变换(SNV)预处理后所建龙脑预测模型最佳,R_(C)和R_(V)分别为0.9442和0.9530,RMSEC和RMSEV分别为0.1121和0.1308。所建模型经外部验证,均表现出较好的性能,预测值无明显偏差,表明所建模型均具备良好的预测能力,能准确预测芳樟、龙脑樟精油主成分含量。 展开更多
关键词 近红外光谱 芳樟 龙脑樟 精油 主成分含量
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芳樟醇的抑菌作用及负载于纳米纤维的性能
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作者 黄婷 赵建伟 +2 位作者 李大伟 陈龙 金征宇 《食品科学》 北大核心 2025年第19期18-27,共10页
研究芳樟醇对大肠埃希氏菌、金黄色葡萄球菌和莓实假单胞菌的抑菌作用,并用非热加工的静电纺丝技术将芳樟醇负载于聚己内酯,制备抑菌纳米纤维。结果表明:芳樟醇对金黄色葡萄球菌、莓实假单胞菌和大肠埃希氏菌的最小杀菌浓度分别为1.5、... 研究芳樟醇对大肠埃希氏菌、金黄色葡萄球菌和莓实假单胞菌的抑菌作用,并用非热加工的静电纺丝技术将芳樟醇负载于聚己内酯,制备抑菌纳米纤维。结果表明:芳樟醇对金黄色葡萄球菌、莓实假单胞菌和大肠埃希氏菌的最小杀菌浓度分别为1.5、1.5、5μL/mL。通过静电纺丝将20%芳樟醇共混于聚己内酯中,纤维拉伸均匀无串珠,对大肠埃希氏菌、金黄色葡萄球菌和莓实假单胞菌的抑菌率分别达到74.96%、76.34%和75.46%。芳樟醇可通过破坏细胞膜结构使内容物泄漏而发挥抑菌作用。制得负载芳樟醇的纳米纤维保留了芳樟醇的抑菌活性,对生鲜肉类中的致病菌和腐败菌都有显著的抑菌作用,可应用于生鲜肉类的抑菌保鲜材料。 展开更多
关键词 芳樟醇 抑菌剂 纳米纤维 静电纺丝
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镁对‘赣芳2号’芳樟苗期生长及叶精油的影响
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作者 董恩元 刘新亮 +2 位作者 张杰 符潮 章挺 《林业科学研究》 北大核心 2025年第2期173-184,共12页
[目的]探究芳樟苗期在不同镁(Mg)添加水平下生长、光合特性、生理生化及叶精油的变化,为芳樟苗期科学管理提供理论依据。[方法]以2年生芳樟扦插苗为研究材料,盆栽沙培方式,不添加镁元素为对照(CK),设置19.8 mg·L^(-1)(Mg1)、98.6 m... [目的]探究芳樟苗期在不同镁(Mg)添加水平下生长、光合特性、生理生化及叶精油的变化,为芳樟苗期科学管理提供理论依据。[方法]以2年生芳樟扦插苗为研究材料,盆栽沙培方式,不添加镁元素为对照(CK),设置19.8 mg·L^(-1)(Mg1)、98.6 mg·L^(-1)(Mg2)、493.0 mg·L^(-1)(Mg3)、986.0 mg·L^(-1)(Mg4)4个镁添加水平,分析不同添加水平下幼苗苗高、地径、叶面积、生物量积累、含水率及叶片内源镁含量、叶片生理生化指标:叶绿素、光合特性、可溶性糖、可溶性蛋白、丙二醛(MDA)、超氧化物歧化酶(SOD)、过氧化物酶(POD)以及叶精油含量的差异。[结果]镁添加对芳樟幼苗苗高、单叶面积、生物量积累、叶片含水率及内源镁含量均有显著的提升(p<0.05);叶片中Chla、Chlb、Chl总含量均随着添加浓度的增加呈先增加后降低的趋势,但各处理均高于CK。光合参数中,P_(n)随着镁浓度提高呈先增加后降低变化趋势,Ci则呈相反的变化趋势,与CK相比差异显著;G_(s)、T_(r)对镁添加变化响应较小,差异不显著(p<0.05),添加镁能提高AQY、LCP、LSP等参数增强光合作用;显著降低芳樟幼苗叶片可溶性糖、可溶性蛋白、MDA、SOD、POD的抗性生理指标。叶精油得率在添加浓度98.6 mg·L^(-1)效果最好,较CK提升了12.77%,对芳樟醇产量以及芳樟醇相对含量影响不显著。[结论]适量添加外源性镁可以显著促进芳樟叶片叶绿素的形成,增强光合作用和养分积累、增强代谢过程,提高其抗逆性,最适宜的添加浓度98.6 mg·L^(-1)。 展开更多
关键词 芳樟 光合特性 生理生化 芳樟醇
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茶叶中芳樟醇代谢及其调控机制研究进展
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作者 方仕茂 俞李沙 +4 位作者 朱旭君 马媛春 江杰 沈强 房婉萍 《南京农业大学学报》 北大核心 2025年第3期505-514,共10页
茶树(Camellia sinensis)是一种重要的叶用型经济作物,其鲜叶通过不同的加工工艺,可以制成具有独特风味和健康功效的茶产品。芳樟醇是茶叶中主要的气味活性成分之一,以R-(-)-芳樟醇和S-(+)-芳樟醇的异构体形式存在,这2种异构体的含量及... 茶树(Camellia sinensis)是一种重要的叶用型经济作物,其鲜叶通过不同的加工工艺,可以制成具有独特风味和健康功效的茶产品。芳樟醇是茶叶中主要的气味活性成分之一,以R-(-)-芳樟醇和S-(+)-芳樟醇的异构体形式存在,这2种异构体的含量及其比例很大程度上决定了茶鲜叶、干茶及茶汤的香气品质差异。目前,茶树中芳樟醇的生物合成、氧化降解及其糖苷的形成和水解已有研究进展,相关的基因和酶在芳樟醇代谢过程中的功能已初步明确。本文系统总结了茶树体内芳樟醇的存在形式和积累规律,并探讨了采前和采后生物和非生物加工过程的代谢特征。同时,本文还概述了与芳樟醇代谢相关的基因和酶响应不同加工措施的变化。本综述旨在为茶叶中芳樟醇的代谢规律和调控机制提供全面的认识,并为高香型茶树种质资源利用和特异茶叶风味品质的定向设计提供重要的生产指导。 展开更多
关键词 茶树 芳樟醇 代谢 采后加工 调控机制
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芳香抗菌双包络结构芳樟醇/聚酰胺/玉米醇溶蛋白微纳米非织造材料
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作者 王浩鹏 张佳文 +2 位作者 牛云蔚 柯勤飞 赵奕 《纺织学报》 北大核心 2025年第9期94-103,共10页
针对芳樟醇易挥发、热稳定性差、无法自支撑等缺点限制了工程化应用效能的问题,提出纤维微胶囊一体结构的等级制包络稳态化策略。通过设计以聚酰胺-胺型树枝状大分子(PAMAM)为“分子微胶囊”支架,高效包络芳樟醇分子,利用分子动力学模... 针对芳樟醇易挥发、热稳定性差、无法自支撑等缺点限制了工程化应用效能的问题,提出纤维微胶囊一体结构的等级制包络稳态化策略。通过设计以聚酰胺-胺型树枝状大分子(PAMAM)为“分子微胶囊”支架,高效包络芳樟醇分子,利用分子动力学模拟验证PAMAM和芳樟醇的包络机制并研究最佳负载率(负载率为60.3%),将包覆芳樟醇的PAMAM与玉米醇溶蛋白共混纺丝形成等级制双包络结构的长效抗菌芳香微纳米非织造材料。结果表明:双包络稳态化策略可有效使得微纳米非织造材料对芳樟醇的负载率从2.61%提升到13.9%,其热稳定性提高15.38%;力学性能方面,其断裂强力为21.23 cN,断裂伸长率为6.25%,较包络前分别提高了90.52%和53.56%,抑菌圈提升为10.2 mm。 展开更多
关键词 芳香抗菌 功能非织造材料 静电纺微纳米材料 芳樟醇 聚酰胺-胺型树枝状分子
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利用大肠杆菌高效表达紫芝GsSTS50基因的筛选研究
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作者 孙琳琳 齐朋燕 +3 位作者 白荣露 赵春生 王丽芝 韩晓燕 《中草药》 北大核心 2025年第2期626-634,共9页
目的 紫芝Ganoderma sinense次生代谢产物含量较低,筛选一种可以显著提高紫芝次生代谢物产量的方法。方法基于紫芝基因组数据库筛选出编码芳樟醇合酶的基因GsSTS50,通过改善融合酶、共表达基因和引入异源甲羟戊酸(mevalonate pathway,M... 目的 紫芝Ganoderma sinense次生代谢产物含量较低,筛选一种可以显著提高紫芝次生代谢物产量的方法。方法基于紫芝基因组数据库筛选出编码芳樟醇合酶的基因GsSTS50,通过改善融合酶、共表达基因和引入异源甲羟戊酸(mevalonate pathway,MVA)代谢途径等方法使GsSTS50基因在大肠杆菌中高效表达,利用顶空固相微萃取-气相色谱-质谱联用(HS-SPME-GC-MS)检测大肠杆菌培养物中芳樟醇的含量。结果 优化融合酶的策略,使大肠杆菌中芳樟醇产量提高了约4.9倍;通过引入异源MVA途径,改造后菌株芳樟醇产量比初始培养提高了约49倍;将多个基因共表达的同时引入异源途径,优化菌株芳樟醇产量比原始菌株提高了42倍。结论 经过改造的重组菌株生产产物的量均有显著提高,为后续灵芝等担子菌中萜类化合物以及其他萜类物质产量的提升提供了参考。 展开更多
关键词 紫芝 芳樟醇 顶空固相微萃取-气相色谱-质谱联用 甲羟戊酸代谢途径 生物代谢
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蝴蝶兰花香研究进展
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作者 杨敏 马晓华 +4 位作者 胡青荻 冯磊 胡亚平 张旭乐 郑坚 《中国农学通报》 2025年第28期40-47,共8页
本文围绕蝴蝶兰属植物香气特征展开综述,聚焦其香味主要成分构成、代谢合成路径及其分子调控机制。系统梳理了具香型蝴蝶兰品种资源、核心花香成分类型、香味释放的关键影响因素,以及主要挥发性物质代谢通路中的关键调控节点。研究证实... 本文围绕蝴蝶兰属植物香气特征展开综述,聚焦其香味主要成分构成、代谢合成路径及其分子调控机制。系统梳理了具香型蝴蝶兰品种资源、核心花香成分类型、香味释放的关键影响因素,以及主要挥发性物质代谢通路中的关键调控节点。研究证实,萜类化合物是蝴蝶兰花香成分的主要化学成分,且其释放速率受内源性昼夜节律、光信号和温度等环境因子调控。萜烯类合成酶基因(TPS)和bHLH转录因子是影响蝴蝶兰香味成分代谢途径的关键基因。鉴于现有研究对蝴蝶兰属植物香味成分完整代谢通路及分子调控机制研究相对缺乏,本研究提出未来应着力挖掘香味合成关键功能基因,构建完善的代谢调控网络模型,这将是深化蝴蝶兰花香性状遗传改良研究的重要方向。 展开更多
关键词 蝴蝶兰 花香 成分 萜类 芳樟醇 生物合成 调控机制
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芳樟醇合成调控机制及其生态功能研究
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作者 冯玲佳 刘毓婕 +2 位作者 何林彤 王新超 叶萌 《园艺学报》 北大核心 2025年第8期2270-2290,共21页
芳樟醇是一种重要的单萜类植物次生代谢物,广泛分布于植物的花、果、叶、茎和根中。其生物合成主要在质体内通过MEP途径完成,受到转录、表观遗传及转录后等多层次的分子调控。作为植物香气的关键成分,芳樟醇在植物与传粉昆虫、植食性昆... 芳樟醇是一种重要的单萜类植物次生代谢物,广泛分布于植物的花、果、叶、茎和根中。其生物合成主要在质体内通过MEP途径完成,受到转录、表观遗传及转录后等多层次的分子调控。作为植物香气的关键成分,芳樟醇在植物与传粉昆虫、植食性昆虫及其天敌之间的生态相互作用中发挥着重要作用。此外,芳樟醇还参与植物对病原体和非生物胁迫的防御响应。本文中综述了芳樟醇的合成路径与调控机制,系统总结了其在吸引传粉者、抗病虫害及应对非生物胁迫等方面的研究进展,探讨其在植物适应复杂环境中的重要意义。同时,对芳樟醇在田间生态环境中的调控效应、单一对映体及衍生物的功能特异性、以及多重胁迫中的协同作用机制研究提出了展望,以期为园艺作物绿色农业应用提供理论支撑和技术指导。 展开更多
关键词 芳樟醇 萜类次生代谢物 生物合成 调控机制 生态功能
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