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A Pharmacological Review: Leptadenia reticulata (Wight & Arn.); Jivanti: the Real Life Giving Plant

;27:395-400. 8. Subramanian PS, Lakshman AJ. On the constituents of Leptadenia reticulata Weight and Arn. Occurrence of simiarenol. Ind J Chem 1977;5:180. 9. Sastry BS, Vijayalaxmi T, Venkata RD, et al. Chemical constituents of stem bark of Leptadenia reticulata. Ind Drug 1985;22:612. 10. Srivastav S, Deepak D, Khare A. Three novel pregnane glycosides from Leptadenia reticulata Wight and Arn Tetrahedron. 1994;50(3):789-98. 11. Kalidass C, Glory M, Francis B, et al. Antibacterial activity of L. reticulata (Retz.). Ancient Science

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In vitro cytotoxicity of allelopathic plants Adonis vernalis L. Origanum vulgare ssp. vulgare L. and Nepeta nuda subsp. nuda

Treatment of Cancers, Nutrients , 2016 , 8(8), 495. [18]. Fridlender, M.; Kapulnik, Y.; Koltai, H., Plant derived substances with anti-cancer activity: from folklore to practice, Front. Plant Sci ., 2015 , 6, 799. [19]. Babula, P.; Masarik, M.; V. Adam, Provaznik, I.; Kizek, R., From Na+/K+-ATPase and Cardiac Glycosides to Cytotoxicity and Cancer Treatment, Anticancer Agents Med. Chem ., 2013 , 13(7), 1069-1087. [20]. Alzeer, J.; Vummidi, B. R.; Arafeh, R.; Rimawi, W.; Saleem, H.; Luedtke, Nathan W., The influence of extraction solvents on the

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The role of vitamins in the diet of the elderly II. Water-soluble vitamins

: a critical review of the epidemiologic evidence. Annals of Internal Medicine , 131. (1999) 363–375. [7] A. R. Folsom, F. J. Nieto, P. G. McGovern, M. Y. Tsai, M. R. Malinow, J. H. Eckfeldt, D. L. Hess, C. E. Davis, Prospective study of coronary heart disease incidence in relation to fasting total homocysteine, related genetic polymorphisms, and B vitamins: The atherosclerosis risk in communities (ARIC) study. Circulation , 98. (1998) 204–210. [8] J. F. Gregory, Nutritional properties and significance of vitamin glycosides. Annual Review of Nutrition

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Ultra-High Temperature Effect on Bioactive Compounds and Sensory Attributes of Orange Juice Compared with Traditional Processing

., Vicario, I. M., Heredia, F. J. (2007). Provitamin A carotenoids and ascorbic acid contents of the different types of orange juices marketed in Spain. Food Chem., 101 (1), 177–184. Mouly, P., Gaydou E. M., Auffray, A. (1998). Simultaneous separation of flavanone glycosides and polymethoxylated flavones in citrus juices using liquid chromatography. J. Chromatogr. , 800 (2), 171–179. Omidbaigi, R., Nasiri, M. F., Sadr, Z. B., Kock, O. (2004). Hesperidin in citrus species, quantitative distribution during fruit maturation and optimal harvesting time. Nat

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Study of troponin, creatine kinase biomarkers, and histopathological lesions in experimental Nerium oleander toxicity in rats and mice

children and adults ( 9 ). Previously, accidental or experimental oleander toxicosis was described in sheep ( 1 ), goats ( 5 ), horses ( 14 ), donkeys ( 27 ), rabbits ( 3 ), rats ( 16 , 25 ), and mice ( 16 , 20 ). Many bioactive components have been identified within oleander plants which exhibit important insecticidal, antifungal, antimicrobial, anti-cancer, and anti-inflammatory activities, and show CNS depressant properties, cardiotonic activity, and diuretic effect ( 10 , 13 , 18 ). Cardiac glycosides are responsible for exerting cardiotonic effects and have

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Evaluation of Mango Byproduct Extracts as Antioxidant Against Pb-Acetate-Induced Oxidative Stress and Genotoxicity in Mice

C-glycosides, anthocyanins, and pectin. J. Agr. Food Chem., 2005, 53, 1563–1570. 14. Beutler E., Kelly B.M., Duron O., Improved method for the determination of blood glutathione. J. Lab. Clinic. Med., 1963, 61, 882-888. 15. Blois M.S., Antioxidant determinations by the use of a stable free radical. Nature, 1958, 181, 1199–1200. 16. Celik A., Ogenler O., Comelekoglu U., The evaluation of micronucleus frequency by acridine orange fluorescent staining in peripheral blood of rats treated with lead acetate. Mutagenesis, 2005, 20, 411–415. 17. Chauhan L.K., Pant

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Antifungal Azole Metabolites: Significance in Pharmaceutical and Biomedical Analysis

spectroscopy. Antimicrob Agents Chemother 2006; 50 (12): 4018-26. Lommen A, Godejohann M, Venema DP, Hollman PCH, Spraul M. Application of directly coupled HPLC-NMR-MS to the identification and confirmation of quercetin glycosides and phloretin glycosides in apple peel. Anal Chem 2000; 72: 1793-7. Albert K, Dachtler M, Glaser T, Händel H, Lacker T, Schlotterbeck G., et al. On-line coupling of separation techniques to NMR. J High Resol Chromatogr 1999; 22: 135-43. Lindon LC, Nicholson JK

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Fractionation of Buckwheat Seed Phenolics and Analysis of Their Antioxidant Activity

., Lachman J., Vavreinova S., Buckwheat - the source of antioxidant activity in functional foods. Food Res. Inter., 2002, 35, 207-211. 14. Hopia A., Heinonen M., Antioxidant activity of fl avonol aglycones and their glycosides in methyl linoleate. J. Am. Oil Chem. Soc., 1999, 76, 139-144. 15. Inglett G.E., Chen D., Berhow M., Lee S., Antioxidant activity of commercial buckwheat fl ours and their free and bound phenolic compositions. Food Chem., 2011, 125, 923-929. 16. Jiang P., Burczynski F., Campbell C., Pierce G., Austria J

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Variations in leaf total protein, phenolic and thiol contents amongst old varieties of mulberry from the Gorizia region

Fagus sylvatica under experimental free-air ozone exposure. Environ. Pollut. 2015;137:476-482. 9. Ipavec VM. Murve in kavalirji. Svilogojstvo na Goriškem. Inštitut za slovensko narodopisje, Ljubljana, 2008. 10. Kandylis K, Hadjigeorgiu I, Harizanis P. The nutritive value of mulberry leaves (Morus alba) as a feed supplement for sheep. Trop. Anim. Health Pro. 2008;41:17-24. 11. Katsube T, Imawaka N, Kawano Y, Yamazaki Y, Shiwaku K, Yamane Y. Antioxidant flavonol glycosides in mulberry (Morus alba L.) leaves isolated based

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Neuroprotective effect of Erigeron Breviscapus (vant) Hand-mazz extract on retinal ganglion cells in rabbits with chronic elevated intraocular pressure

). Yao Xue Xue Bao. 2001; 36: 360-3. 31. Zhang WD, Chen WS, Wang YH, Liu WY, Kong DY, Li HT. Two new glycosides from Erigeron breviscapus (Vant.) Hand.-Mazz. Zhongguo (in Chinese). Zhong Yao Za Zhi 2001; 26:689-90. 32. Chu Q, Wu T, Fu L, Ye J. Simultaneous determination of active ingredients in Erigeron breviscapus (Vant.) Hand-Mazz. By capillary electrophoresis with electrochemical detection. J Pharm Biomed Anal. 2005; 37: 535-41. 33. Bastianetto S, Zheng WH, Quirion R. The Ginkgo biloba extract (EGb 761) protects and

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