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Item Volatile metabolite compositions of the essential oil from aerial parts of ornamental and artemisinin rich cultivars of Artemisia annua(Taylor & Francis Group, 2008) Goel, Divya; Mallavarupu, Gopal Rao; Kumar, Sushil; Singh, Vijender; Ali, MohammedThe essential oils of the aerial parts (flowers, leaves and stems) of the artemisinin rich cultivar ‘Jeevanraksha’ and artemisinin poor ornamental type cultivar Suraksha of Artemisia annua, grown at New Delhi, were characterized for their metabolite composition by GC and GC/MS analyses. Ninety-seven compounds comprising 91.3% of the total oil of ‘Jeevanraksha’ were identified. Forty-three monoterpenes (56.6%), 32 sesquiterpenes (31.1%), and 2 diterpenes (0.2%) comprised bulk of the oil (87.9%). The oil was devoid of artemisia ketone and contained camphor (13.5%), 1,8-cineole (9.4%), trans-sabinol (7.1%), p-mentha-1(7), 5-dien-2-ol (6.3%), myrcene (4.7%), germacrene D (4.4%), (E)-β-farnesene (3.9%), β-caryophyllene (3.7%), dihydroartemisinic lactone (3.0%) and p-cymene (2.0%) as the major constituents. Eighty-six compounds representing 93.3% of the composition were identified in the Suraksha oil. This oil contained artemisia ketone (47%), 1,8-cineole (8.4%), camphor (5.9%) and α-pinene (5.2%) as the major components. Many compounds were detected in the A. annua oil for the first time. Consistent with hybrid origin of the cultivar ‘Jeevanraksha’, its oil possessed characteristics reported earlier for the corresponding essential oils of the A. annua accessions of Vietnamese origin and North-American accessions.Item Composition of the essential oil from the roots of Artemisia annua(Springer, 2007) Goel, Divya; Goel, Richa; Singh, Vijender; Ali, Mohammed; Mallavarapu, Gopal Rao; Kumar, SushilUpon hydrodistillation, dried roots of Artemisia annua L. cultivar Jwarharti gave a pleasantly fragrant essential oil with a yield of 0.25%. GC and GC–MS analyses of the oil enabled the identification of 52 components representing 83.2% of the oil. The oil was rich in sesquiterpenes and oxygenated sesquiterpenes and had cis-arteannuic alcohol (25.9%), (E)-β-farnesene (6.7%), β-maaliene (6.3%), β-caryophyllene (5.5%), caryophyllene oxide (4.4%) and 2-phenylbenzaldehyde (3.5%) as its major components. The oil was found to possess considerable fumigant activity and ability to repel adult Tribolium castaneum beetles.Item Essential oils of petal, leaf and stem of the antimalarial plant Artemisia annua(Springer, 2006) Goel, Divya; Singh, Vijender; Ali, Mohammed; Mallavarupu, Gopal Rao; Kumar, SushilThe chemical composition of the essential oils obtained from petals, leaves and stems of the flowering stage of plants of Artemisia annua cultivar Jwarharti was analyzed by gas chromatography mass spectrometry (GC-MS); 86, 77, and 63 compounds were identified in the leaf, petal, and stem oils, respectively. Large compositional differences were detected between the three oils. The petal and leaf oils were rich in monoterpenes. The stem oil was rich in sesquiterpenes. Camphor, present in the leaf oil, was absent from petal oil.Item Establishment of artemisinin combination therapy as first line treatment for combating malaria: Artemisia annua cultivation in India needed for providing sustainable supply chain of artemisinin(Indian Academy of Sciences, 2005) Kumar, Sushil; Srivastava, SuchiThe Plasmodium falciparum malaria is responsible for about 500 million clinical attacks and one million deaths each year, mostly in Africa and southeast Asia. On account of the parasite having become resistant to the conventional antimalarials, artemisinin-based combination therapy (ACT) is the only reliable treatment option. The Roll Back Malaria (RBM) and Millennium Development Goals (MDG) campaigns of WHO and UNDP, respectively, have made little headway, mainly because of paucity of artemisinin in world market. Here we show that the cultivation and processing of Artemisia annua, presently the only resource of artemisinins, in India, in partnerships, can help build a sound supply chain of artemisinin.
