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Opportunistic Infections Citation List:

February 4 - February 17, 2011

ANTIFUNGAL COMPOUNDS ( includes Cryptococcus, Aspergillus, Candida, & Histoplasma)

1. Chemical composition and antifungal activity of the essential oils of Lavandula viridis L'Her. Zuzarte, M., M.J. Goncalves, C. Cavaleiro, J. Canhoto, L. Vale-Silva, M.J. Silva, E. Pinto, and L. Salgueiro. Journal of Medical Microbiology, 2011. [Epub ahead of print]; PMID[21321363].

[Pubmed]. HIV_0204-021711.

2. Synthesis, conformational analysis and biological properties of a dicarba derivative of the antimicrobial peptide, brevinin-1BYa. Hossain, M.A., L. Guilhaudis, A. Sonnevend, S. Attoub, B.J. van Lierop, A.J. Robinson, J.D. Wade, and J.M. Conlon. European Biophysics Journal, 2011. [Epub ahead of print]; PMID[21312033].

[Pubmed]. HIV_0204-021711.

3. Environmental Burkholderia cepacia Strain Cs5 Acting by Two Analogous Alkyl-Quinolones and a Didecyl-Phthalate Against a Broad Spectrum of Phytopathogens Fungi. Kilani-Feki, O., G. Culioli, A. Ortalo-Magne, N. Zouari, Y. Blache, and S. Jaoua. Current Microbiology, 2011. [Epub ahead of print]; PMID[21311886].

[Pubmed]. HIV_0204-021711.

4. Antifungal activity of ZnO nanoparticles-the role of ROS mediated cell injury. Lipovsky, A., Y. Nitzan, A. Gedanken, and R. Lubart. Nanotechnology, 2011. 22(10): p. 105101; PMID[21289395].

[Pubmed]. HIV_0204-021711.

5. Antimicrobial decapeptide KSL-W attenuates Candida albicans virulence by modulating its effects on Toll-like receptor, human beta-defensin, and cytokine expression by engineered human oral mucosa. Semlali, A., K.P. Leung, S. Curt, and M. Rouabhia. Peptides, 2011. [Epub ahead of print]; PMID[21291939].

[Pubmed]. HIV_0204-021711.

6. Inhibitory Effects of Gossypol-Related Compounds on Growth of Aspergillus flavus. Mellon, J.E., C.A. Zelaya, and M.K. Dowd. Letters in Applied Microbiology, 2011. [Epub ahead of print]; PMID[21291481].

[Pubmed]. HIV_0204-021711.

ANTIBACTERIAL COMPOUNDS (includes Mycobacterium spp., Drug Resistant, MAC, MDR)

7. Properties and Potency of Small Molecule Agents for Treatment of Mycobacterium Tuberculosis Infections of the Central Nervous System. Bartzatt, R. Central Nervous System Agents in Medicinal Chemistry, 2011. [Epub ahead of print]; PMID[21294705].

[Pubmed]. HIV_0204-021711.

8. Design, Synthesis, and Biological Evaluation of New Cinnamic Derivatives as Antituberculosis Agents. De, P., G. Koumba Yoya, P. Constant, F. Bedos-Belval, H. Duran, N. Saffon, M. Daffe, and M. Baltas. Journal of Medicinal Chemistry, 2011. [Epub ahead of print]; PMID[21309577].

[Pubmed]. HIV_0204-021711.

9. Analysis of beta-amino alcohols as inhibitors of the potential anti-tubercular target N-acetyltransferase. Fullam, E., A. Abuhammad, D.L. Wilson, M.C. Anderton, S.G. Davies, A.J. Russell, and E. Sim. Bioorganic and Medicinal Chemistry Letters, 2011. 21(4): p. 1185-1190; PMID[21251821].

[Pubmed]. HIV_0204-021711.

10. Synthesis and antitubercular evaluation of novel substituted aryl and thiophenyl tethered dihydro-6H-quinolin-5-ones. Kantevari, S., S.R. Patpi, B. Sridhar, P. Yogeeswari, and D. Sriram. Bioorganic and Medicinal Chemistry Letters, 2011. 21(4): p. 1214-1217; PMID[21237641].

[Pubmed]. HIV_0204-021711.

11. Cytotoxic and Antimicrobial Activities of Aporphine Alkaloids Isolated from Stephania venosa (Blume) Spreng. Makarasen, A., W. Sirithana, S. Mogkhuntod, N. Khunnawutmanotham, N. Chimnoi, and S. Techasakul. Planta Medica, 2011. [Epub ahead of print]; PMID[21305448].

[Pubmed]. HIV_0204-021711.

12. Microwave assisted one-pot synthesis of highly potent novel isoniazid analogues. Manjashetty, T.H., P. Yogeeswari, and D. Sriram. Bioorganic and Medicinal Chemistry Letters, 2011. [Epub ahead of print]; PMID[21320779].

[Pubmed]. HIV_0204-021711.

13. Antituberculosis potential of some ethnobotanically selected Malaysian plants. Mohamad, S., N.M. Zin, H.A. Wahab, P. Ibrahim, S.F. Sulaiman, A.S. Zahariluddin, and S.S. Noor. Journal of Ethnopharmacology, 2011. 133(3): p. 1021-1026; PMID[21094237].

[Pubmed]. HIV_0204-021711.

14. Synthesis and antimycobacterial properties of N-substituted 6-amino-5-cyanopyrazine-2-carboxamides. Zitko, J., M. Dolezal, M. Svobodova, M. Vejsova, J. Kunes, R. Kucera, and P. Jilek. Bioorganic and Medicinal Chemistry, 2011. 19(4): p. 1471-1476; PMID[21273083].

[Pubmed]. HIV_0204-021711.

Citations from the ISI Web of Knowledge Listings for O.I.

15. Antimicrobial properties of 4-Carboxyl-2, 6-dinitrophenylazohydroxynaphthalenes. Adegoke, O.A., A.O. Ogunleye, O.T. Lawal, O.S. Idowu, and M.A. Adeniyi-Akee. African Journal of Microbiology Research, 2010. 4(22): p. 2444-2450; ISI[000285847700019].

[WOS]. HIV_0204-021711.

16. Isolation of 3-(4-hydroxyphenyl) Methylpropenoate and Bioactivity Evaluation of Gomphrena Celosioides Extracts. Dosumu, O.O., P.A. Idowu, P.A. Onocha, and O. Ekundayo. Excli Journal, 2010. 9: p. 173-180; ISI[000285692800002].

[WOS]. HIV_0204-021711.

17. Essential oil composition and antimicrobial activity of Sphallerocarpus gracilis seeds against selected food-related bacteria. Gao, C.Y., C.R. Tian, Y.H. Lu, J.G. Xu, J.Y. Luo, and X.P. Guo. Food Control, 2011. 22(3-4): p. 517-522; ISI[000285952500027].

[WOS]. HIV_0204-021711.

18. Effect of fertilizer treatment on the antimicrobial activity of the leaves of Ocimum gratissimum (L.) and Gongronema latifolium (Benth). Osuagwu, G.G.E. and H.O. Edeoga. African Journal of Biotechnology ISI[000285846200007].

[WOS]. HIV_0204-021711.

19. Antifungal and Antibacterial Activities of Four Malaysian Sponge Species (Petrosiidae). Qaralleh, H., S. Idid, S. Saad, D. Susanti, M. Taher, and K. Khleifat. Journal De Mycologie Medicale, 2010. 20(4): p. 315-320; ISI[000285677900008].

[WOS]. HIV_0204-021711.

20. Antifungal and antifeedant activities of extracellular product of Streptomyces spp. ERI-04 isolated from Western Ghats of Tamil Nadu. Valanarasu, M., P. Kannan, S. Ezhilvendan, G. Ganesan, S. Ignacimuthu, and P. Agastian. Journal De Mycologie Medicale, 2010. 20(4): p. 290-297; ISI[000285677900005].

[WOS]. HIV_0204-021711.

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