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Molecular characterization of ESBL gene in Citrobacter spp. and antibacterial activity of omega-3 against resistant isolates

pneumoniae and Citrobacter freundii Isolates. Al-Kufa University J. for Biology 8(3): 300-312, 2016. 7. Harvey, R.A. and Champe, D.C.: Lippincott’s Illustrated Reviews: Pharmacology 5th ed., Lippincott Williams and Wilkins, USA. 382-385, 2012. 8. Fuad, al.: In Vitro Antibacterial Activity of Common Antibiotics and Herb Extracts to Clinical Isolates of Escherichia coli Collected from UTI Patient. Int. J. of Rese in Pharmacel and Biomedi Sciences. 3(2): 987-992, 2012. 9. Wang, H. et al.: Comparison of phytochemical

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Furochinoline alkaloids in plants from Rutaceae family – a review


Over the past five years, phytochemical and pharmacological studies have been conducted on material extracted from members of the Rutaceae family. In such work, new furochinoline-structured alkaloids were isolated from Ruta sp. and Dictamnus sp. Beyond the aforementioned, other substances with promising activity were isolated from the less-known species of Zanthoxylum, Evodia, Lonchocarpus, Myrthopsis and Teclea. Currently used forms of extraction, as well as methods of isolation and detection, allow the obtaining of pure, biologically active compounds. Many of these have antifungal, anti-bacterial and anti-plasmodial properties. Others are still being researched as potential drugs, which, in future, may be used in treating those afflicted with HIV and cancer. This article is designed to give the readers a thorough review of the active natural products from the Rutaceae family.

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Identificatin and quantiative analysis of amyrins in Humulus lupulus L.

References 1. Chadwick L.R., Pauli G.F., Farnsworth N.R.: The pharmacognosy of Humulus lupulus L. (hops) with an emphasis on estrogenic properties. Phytomedicine 13, 119, 2006. 2. Colgate E.C. et al.: Xanthohumol, a prenylflavonoid derived from hops induces apoptosis and inhibits NF-kappaB activation in prostate epithelial cells. Cancer Letters 246, 201, 2007. 3. Gerhauser C.: Broad spectrum antiinfective potential of xanthohumol from hop (Humulus lupulus L.) in comparison with activities of other hop

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Application of low-level laser radiation with TiO2, Ag/TiO2 and S/TiO2 on Streptococcus salivarius isolated from the oral cavity

communities in sickness and in health. Trends. Microbiol., 13. 589. 2005. 11. Juliana P.M.L. et al.: The antimicrobial activity of photodynamic therapy against Streptococcus mutans using dif ferent photosensitizers. J. Photochem. and Photobiol. B: Biology, 106. 40. 2012. 12. Nagata J. Y. et al.: Antibacterial photodynamic therapy for dental caries: Evaluation of the photosensitizers used and light source properties. Photodiag. and Photodyn. Ther., 9. 122. 2012. 13. Paschoal M. A. et al.: Photodynamic potential of curcumin and

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In vitro evaluation of anticancer activity of sodium hyaluronate-titanium dioxide bionanocomposite

antibacterial iron (II, III) oxide–levan nanocomposite. J Appl Polym Sci. 2017;134(12): 44613. 4. Sharifi R, Khazaei S, Mozaffari HR, Amiri SM, Iranmanesh P, Mousavi SA. Effect of massage on the success of anesthesia and infiltration injection pain in maxillary central incisors: Double-blind, crossover trial. Dent Hypotheses . 2017;8(3):61-4. 5. Mozaffari HR, Izadi B, Sadeghi M, Rezaei F, Sharifi R, Jalilian F. Prevalence of oral and pharyngeal cancers in Kermanshah province, Iran: A ten-year period. Int J Cancer Res. 2016;12(3-4):169-175. 6. Mozaf fari

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Production of oxide coatings by sol-gel method and electrophoresis

.: Effect of titanium on selected oral bacterial species in vitro. Eur. J. Oral. Sci., 103, 382, 1995. 12. Liuxue Z., et al.: Low temperature deposition of TiO2 thin films on polyvinyl alcohol fibers with photocatalytical and antibacterial activities. Appl. Surf. Sci., 254, 1771, 2008. 13. Milella E. et al.: Preparation and characterisation of titania/ hydroxyapatite composite coatings obtained by sol-gel process. Biomaterials, 22, 1425, 2001. 14. Szałakowska E., Masalski J., Głuszek J.: Electrochemical evaluationof

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In vitro propagated Mentha rotundifolia (L.) Huds and antioxidant activity of its essential oil

propagation, callusing, cell suspension culture and secondary metabolites production in sweet marjoram Origanum vulgare L. and Syrian marjoram majoran syriaca L. Rafin ( Origanum syriacum L.). M. Sci. Thesis. Irbid, Jordan University of Science and Technology;1999. 24. Derwich E, Chabir R, Taouil R, Senhaji O. In vitro antioxidant activity and GC/MS studies on the leaves of Mentha piperita (Lamiaceae) from Morocco. Int J Pharm Sci Drug Res . 2011;3(2): 130-6. 25. Burt S. Essential oils: their antibacterial properties and potential applications in foods

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Bioactivity-guided isolation of alkamides from a cytotoxic fraction of the ethyl acetate extract of Anacyclus pyrethrum (L.) DC. roots.

. London: Chapman and Hall ltd; 1984. 22. Bidau CJ, Amat AG, Yajia ME, Marti DA, Gimenez MD, Riglos AG and al. Evaluation of cytotoxic and mitodepressive activity of aqueous extracts from thirteen Argentine medicinal plants. Acta Farm. Bonaerense . 2006;25(4):555-9. 23. Lagnika L, Anago E, Sanni A. Screening for antibacterial, antioxidant activity and toxicity of some medicinal plants used in Benin folkloric medicine. Journal of Medicinal Plants Research . 2011;5(5):773-7. 24. Syahmi AR, Vijayarathna S, Sasidharan S, Latha LY, Kwan YP, Lau YL and al

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