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[The new progress of the study about volatile oil of the angelica].

To summarize the new progress of the study about volatile oil of the angelica, including the distillable methods, the analysis of the chemical components, the pharmacological effects and the clinical applications. We tracked and searched the correlative references and study reports about volatile oil of the angelica in CNKI data base(1994-2004) and Medline data base (1997-2004). We summarized and compared the different distillable methods of volatile oil of the angelica, meanwhile we summarized many study reports about the analysis of the chemical components of volatile oil of the angelica and it's pharmacological effects, including the toxicity of the volatile oil and it's effects on the uterus smooth muscle, cardiovascular system, respiratory system, central nerve system and immune system. Finally we summarized the clinical application of the volatile oil of the angelica. There are three distillable methods of volatile oil of the angelica . The harvest efficiency of volatile oil is different with different distillable methods. The chemical components are very complicated and the new chemical components are separated and identified. The volatile oil has bidirectional effects on the uterus smooth muscle. It can inhibit the contraction of the uterus smooth muscle induced by different mechanisms. Meanwhile it can depress the blood pressure and ameliorate the cardiac ischemia. The volatile oil can resist the arrhythmia and asthma, restrain the central system, improve the immune function. Nowadays the volatile oil of the angelica is applied to therapy the dysmenorrhea and disorder of the catamenia. The chemical components of the volatile oil of the angelica are very complicated, moreover the pharmacological effects of the volatile oil are comprehensive. People make the new progress of the study about volatile oil of the angelica.

4-Butyrolactone↗

[Two chemotypes of Pogostemon cablin and influence of region of cultivation and harvesting time on volatile oil composition].

AIM: To analyze and compare the constituents of the volatile oil of Pogostemon cablin collected from different regions of cultivation and harvesting times in order to evaluate the quality of Shipai Huoxiang and to expound the chemical intension of Pogostemon cablin. METHODS: The combination of GC and MS. RESULTS: The volatile oil compositions of Herba Pogostemonis collected from various of cultivation regions and harvesting times are obviously different. Based on the chemical differences of the volatile oil compositions, Pogostemon cablin is divided into two chemotypes, Pogostone-type and Patchouliol-type. The former was cultivated in Guangzhou and Gaoyao regions, locally named as "Shipai Huoxiang"; the latter was locally named as "Hainan Huoxiang", cultivated in Wuchuan, Suixi and Leizhou regions of Guangdong Province and Wanning region of Hainan Province. The Pogostone-type contains rich oxygenated components, especially pogostone in the volatile oil compositions and poor non-oxygenated composition with patchouliol. The above chemical data may be used as evaluation standard for the authentic Shipai Huoxiang. The Patchouliol-type contains similar quantities of oxygenated and non-oxygenated composition, especially rich patchouliol with poor pogostone in oxygenated compositions, rich delta-guaiene and alpha-guaiene in non-oxygenation compositions. The contents of volatile oil and their constituents were varied due to different harvesting time. The yields of pogostone and volatile oil of Shipai Huoxiang was higher in July. The quality of the samples collected in this month was better. CONCLUSION: According to the volatile oil compositions, there are two chemotypes (Pogostone-type and Patchouliol-type) in Pogostemon cablin plant. These two chemotypes correspond to the genotypes of plastid matK gene and nuclear 18s rRNA gene by cluster analysis.

Ecosystem↗

Repellency of volatile oils from plants against three mosquito vectors.

Volatile oils extracted by steam distillation from four plant species (turmeric (Curcuma longa), kaffir lime (Citrus hystrix), citronella grass (Cymbopogon winterianus) and hairy basil (Ocimum americanum)), were evaluated in mosquito cages and in a large room for their repellency effects against three mosquito vectors, Aedes aegypti, Anopheles dirus and Culex quinquefasciatus. The oils from turmeric, citronella grass and hairy basil, especially with the addition of 5% vanillin, repelled the three species under cage conditions for up to eight hours. The oil from kaffir lime alone, as well as with 5% vanillin added, was effective for up to three hours. With regard to the standard repellent, deet alone provided protection for at least eight hours against Ae. aegypti and Cx. quinquefasciatus, but for six hours against An. dirus. However, deet with the addition of 5% vanillin gave protection against the three mosquito species for at least eight hours. The results of large room evaluations confirmed the responses for each repellent treatment obtained under cage conditions. This study demonstrates the potential of volatile oils extracted from turmeric, citronella grass and hairy basil as topical repellents against both day- and night-biting mosquitoes. The three volatile oils can be formulated with vanillin as mosquito repellents in various forms to replace deet (N,N-diethyl-3-methylbenzamide), the most common chemical repellent currently available.

Animals↗

[Comparing analysis of components in volatile oils of nutmeg and prepared nutmeg by GC-MS].

OBJECTIVE: To compare components in volatile oils of nutmeg and prepared nutmeg. METHOD: Volatile oil from nutmeg and prepared nutmeg were extracted by vapor distillation. The chemical components in two kinds of volatile oils were determined and indentified by GC-MS. RESULT: The change in quantity and quality of components in volatile oils were observed after processing. 13 new components occurred and 4 components disappeared in volatile oils after processing. The contents of methyleugenol and methylisoeugenol that are active ingredients were increased. The contents of myristicin and safrol that are toxic ingredients in volatile oils were decreased. CONCLUSION: The processing method of nutmeg by soaking with water and roasting with bran is scientific.

Allylbenzene Derivatives↗

[Antiatherogenic effect of Huajiao volatile oil on experimental atherosclerosis in guinea pigs].

OBJECTIVE: To investigate the antiatherogenic effect of Chinese medicine Huajiao volatile oil and its possible mechanisms. METHODS: Atherosclerotic guinea pig models were duplicated by feeding high lipid forage. Thirty-six guinea pigs were randomly divided into three groups: control group, model group and Huajiao volatile oil group. Common forage (control group), high lipid forage (model group) and high lipid forage adding Huajiao volatile oil 10 mg/kg (Huajiao volatile oil group) were given to each group accordingly. After fourteen weeks, all animals were killed for the determination of the serum lipids, apolipoproteins, malonyldialdehyde (MDA), hepatic and aortic cholesterol and triglyceride concentration, and the percentage of aortic lesions covering the intimal surface. RESULTS: At the end of the 14th week, the serum lipids of model group and Huajiao volatile oil group were significantly higher than those of control group. The serum LDL level, LDL/HDL ratio, ApoB and MDA in the Huajiao volatile oil group were significantly reduced, compared with those in model group. The hepatic and aortic cholesterol and triglyceride concentration and aorta plaque area percentage of Huajiao volatile oil group were significantly lower than those of model group. CONCLUSION: Huajiao volatile oil has an inhibitory effect on the development of experimental atherosclerosis lesions in guinea pigs. The mechanism may be related to regulation of lipid metabolism and antioxidation of serum lipids.

Animals↗

[Study on the chemical constituents of the volatile oil from Lysimachia trientaloides Hemsl].

The volatile oil from Lysimachia trientaloides Hemsl. was obtained by steam distillation. The chemical constituents were separated and identified by gas chromatography-mass spectrometry (GC-MS). The relative contents in the volatile oil were determined by peak area normalization. The yield of oil by steam distillation was 0.11%, and 40 chemical constituents were separated and identified. Terpenic series and their oxo-derivatives are major chemical constituents in the oil. The main compounds were patchouli alcohol(22.54%), L-bornyl acetate(16.17%), gamma-gurjunene(3.27%), delta-guaiene(2.62%), nerolidol(2.02%), linalool(1.99%) and palmitic acid(1.96%).

Camphanes↗

[Pharmacological comparison between volatile oil and water extract].

OBJECTIVE: To compare the pharmacological differences between volatile oil and water extract in eight aromatic drugs for resolving dampness. METHOD: Volatile oil and water extract of eight commonly used aromatic drugs for resolving dampness were ig administered to rats respectively, and the effects of volatile oil and water extract on the secretion of gastric juice, volume of gastric mucous blood flow and activity of SOD in gastric mucous membrane were studied. RESULT: It was shown that the effects of aromatic volatile oil in eight drugs on the indexes mentioned above were generally equal or similar to those of water extract, and it was obvious that the volatile oil in some high oil content drugs such as Amonum cardamomum L(Baidoukou), Alpinia katsumadai Hagata (Caodoukou), Amomum villosum Lour (Saren), and Amomum tsao-ko Crevost et Lem (Caogou) had better effects on the secretion of gastric juice and volume of gastric mucous blood flow that those of water extract. CONCLUSION: It has been pharmacologically proved that in using aromatic drugs for resolving dampness, the loss of aromatic (volatile) components should be avoided.

Animals↗

[Study on the volatile oil of Nardostachys chinensis].

The volatile oil of Nardostachys chinensis Batal has been studied by GC-MS, and 21 compounds have been isolated and identified. The total content of the components are 88.51%. Major compounds have been identified as Calarene (29.44%). delta 1(10)-Aristolenone-2 (16.57%) and Jatamansinol (8.80%).

Gas Chromatography-Mass Spectrometry↗

[Studies on the chemical compound of volatile oils from various species of Citrus grandis].

The volatile oils in Citrus grandis from various species were compared by GC-MS. The results showed that the content of volatile oil from Citrus grandis and Citrus grandis (L.) Osbek var. tomentosa Hort. was from 0.7% to 0.9%. Over 30 chemical compounds were identified from the volatile oils and the types of the compounds were almost the same. But gamma-terpinen could not be identified from Citrus grandis which was rich in Citrus gransis (L.) Osbeck var. tomentosa Hort.

Citrus↗

Chemical composition and anti-mosquito potential of rhizome extract and volatile oil derived from Curcuma aromatica against Aedes aegypti (Diptera: Culicidae).

Crude rhizome extracts and volatile oils of Curcuma aromatica were evaluated for chemical composition and anti-mosquito potential, including larvicidal, adulticidal, and repellent activities against the Aedes aegypti mosquito. Chemical identification achieved by GC/MS analysis revealed that xanthorrhizol, 1H-3a, 7-methanoazulene and curcumene at 35.08 and 13.65%, 21.81 and 30.02%, and 13.75 and 25.71%, were the main constituents in hexane extracts and volatile oils, respectively. Volatile oil of Cu. aromatica possessed a significantly higher larvicidal activity against the 4th instar larvae of Ae. aegypti than that of hexane extracts, with LC50 values of 36.30 and 57.15 ppm, respectively. In testing for adulticidal activity, on the other hand, hexane-extracted Cu. aromatica (LC50: 1.60 microg/mg female) was found to be slightly more effective against female Ae. aegypti than volatile oil (LC50: 2.86 microg/mg female). However, the repellency of these two products against Ae. aegypti adult females differed significantly. The hexane-extracted Cu. aromatica, with a median complete protection time of 1 h (range = 1-1.5 h) when applied at a concentration of 25%, appeared to have significantly higher repellency than that of distillate oil (0.5 h, range = 0-0.5 h). The different results obtained from both products of Cu. aromatica were probably due to variety in quantity and type of active ingredients as well as the biological and physiological characteristics that differed between both developmental stages of mosquitoes, larvae, and adults.

Adolescent↗

[Effect of turmeric volatile oil on the respiratory tract].

OBJECTIVE: Researching the effect of turmeric volatile oil on functions of the respiratory tract. METHOD: The action of turmeric volatile oil on sputum removing, cough and asthma relieving was observed by vapour inhaling. RESULT: The volatile oil is significantly active in removing sputum, relieving cough and preventing asthma. CONCLUSION: Turmeric volatile oil may be an efficacious drug for the treatment of respiratory diseases.

Animals↗

Chemical composition of the fixed and volatile oils of Nigella sativa L. from Iran.

The chemical composition of the extracted fixed oil (total fatty acid composition) and volatile oil of Nigella sativa L. seeds grown in Iran were determined by GC and GC/MS. Eight fatty acids (99.5%) and thirty-two compounds (86.7%) have been identified in the fixed and volatile oils, respectively. The main fatty acids of the fixed oil were linoleic acid (55.6%), oleic acid (23.4%), and palmitic acid (12.5%). The major compounds of the volatile oil were trans-anethole (38.3%), p-cymene (14.8%), limonene (4.3%), and carvone (4.0%).

Cyclohexane Monoterpenes↗

Chemical composition and insecticidal activity of the volatile oils of leaves and flowers of Lantana camara L. cultivated in Egypt.

GC and GC/MS analysis of the hydrodistilled volatile oils of the leaves and flowers of Lantana camara L. cv. flava (Verbenaceae) cultivated in Egypt revealed both qualitative and quantitative variations. Experimentally, twenty-nine and twenty-two components were identified in the volatile oils of leaves and flowers representing 91.91% and 95.24% of the total composition of both oils respectively. The major constituents of the leaves volatile oil were caryophyllene (9.76%), cineol <1.8-> (9.37%) and pinene (8.15%). The flowers volatile oils were caryophyllene (18.20%), humulene (12.22 %) and bicyclegermacrene (10.33%). Comparing the chemical composition of the volatile oils of the leaves and flowers of L. canara cv., flava from different origins, seasons and even experimental conditions revealed that there are significant qualitative and quantitative variations. The larvicidal effect of the volatile oils of L. camara cv., flava leaves and flowers of was tested against the maturation of Musca domestica L. larvae in the laboratory at concentrations (0.0125%, 0.025%. 0.05%, 0.1% and 0.2%). They showed mortality rate ranged from 80%- 100%. On the other hand, 10-20% of the developed pupae emerged to adults. Adults' fecundity was in larvae given a concentration of 0.0125%. In conclusion, the volatile oils of the leaves and flowers of L. camara cv., flava can be safely recommended in controlling M. domestica 3rd stage larvae.

Animals↗