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Opportunistic Infections Citation List:

March 18 - March 31, 2011

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

1. Counterion-Induced Modulation in the Antimicrobial Activity and Biocompatibility of Amphiphilic Hydrogelators: Influence of in-Situ-Synthesized Ag-Nanoparticle on the Bactericidal Property. Dutta, S., A. Shome, T. Kar, and P.K. Das. Langmuir: The ACS Journal of Surfaces and Colloids, 2011. [Epub ahead of print]; PMID[21446701].

[Pubmed]. OI_0318-033111.

2. Gentian Violet Exhibits Activity against Biofilms formed by Oral Candida isolates Obtained from HIV-infected Patients. Traboulsi, R.S., P.K. Mukherjee, J. Chandra, R.A. Salata, R. Jurevic, and M.A. Ghannoum. Gentian Violet Exhibits Activity against Biofilms formed by Oral Candida isolates Obtained from HIV-infected Patients. Antimicrobial Agents and Chemotherapy, 2011. [Epub ahead of print]; PMID[21444708].

[Pubmed]. OI_0318-033111.

3. Synthesis, Antibacterial and Antifungal Activities of Bifonazole Derivatives. El Hage, S., B. Lajoie, C. Feuillolay, C. Roques, and G. Baziard. Archiv Der Pharmazie, 2011. [Epub ahead of print]; PMID[21433056].

[Pubmed]. OI_0318-033111.

4. Isolation and Structural Elucidation of Proline-Containing Cyclopentapeptides from an Endolichenic Xylaria sp. Wu, W., H. Dai, L. Bao, B. Ren, J. Lu, Y. Luo, L. Guo, L. Zhang, and H. Liu. Journal of Natural Products, 2011. [Epub ahead of print]; PMID[21428374].

[Pubmed]. OI_0318-033111.

5. Synthesis and in vitro microbiological evaluation of novel diethyl 6,6'-(1,4-phenylene)bis(4-aryl-2-oxo-cyclohex-3-enecarboxylates). Kanagarajan, V., M.R. Ezhilarasi, and M. Gopalakrishnan. Journal of Enzyme Inhibition and Medicinal Chemistry, 2011. [Epub ahead of print]; PMID[21417963].

[Pubmed]. OI_0318-033111.

6. Evaluation of Antifungal Activity of Medicinal Plant Extracts Against Oral Candida albicans and Proteinases. Hofling, J.F., R.C. Mardegan, P.C. Anibal, V.F. Furletti, and M.A. Foglio. Mycopathologia, 2011. [Epub ahead of print]; PMID[21409409].

[Pubmed]. OI_0318-033111.

7. Chemical Composition and In Vitro Activity of Plant Extracts from Ferula communis and Dittrichia viscosa against Postharvest Fungi. Mamoci, E., I. Cavoski, V. Simeone, D. Mondelli, L. Al-Bitar, and P. Caboni. Molecules, 2011. 16(3): p. 2609-2625; PMID[21441864].

[Pubmed]. OI_0318-033111.

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

8. Synthesis and in vitro antimycobacterial activity of N'-benzylidene-2-oxo-2H-chromene-3-carbohydrazides derivatives. Cardoso, S.H., M.B. Barreto, M.C. Lourenco, O.H.M.D. de, A.L. Candea, C.R. Kaiser, and M.V. de Souza. Chemical Biology and Drug Design, 2011. [Epub ahead of print]; PMID[21414146].

[Pubmed]. OI_0318-033111.

9. Natural Product-Based Phenols as Novel Probes for Mycobacterial and Fungal Carbonic Anhydrases. Davis, R.A., A. Hofmann, A. Osman, R.A. Hall, F.A. Muhlschlegel, D. Vullo, A. Innocenti, C.T. Supuran, and S.A. Poulsen. Journal of Medicinal Chemistry, 2011. 54(6): p. 1682-1692; PMID[21332115].

[Pubmed]. OI_0318-033111.

10. Ethionamide boosters: Synthesis, Biological Activity and Structure-Activity Relationships of a series of 1,2,4-oxadiazole EthR inhibitors. Flipo, M., M. Desroses, N. Lecat-Guillet, B. Dirie, X. Carette, F. Leroux, C. Piveteau, F. Demirkaya, Z. Lens, P. Rucktooa, V. Villeret, T. Christophe, H.K. Jeon, C. Locht, P. Brodin, B.P. Deprez, A. Baulard, and N. Willand. Journal of Medicinal Chemistry, 2011. [Epub ahead of print]; PMID[21417236].

[Pubmed]. OI_0318-033111.

11. 2,3-Dideoxy hex-2-enopyranosid-4-uloses as promising new anti-tubercular agents: Design, synthesis, biological evaluation and SAR studies. Saquib, M., I. Husain, S. Sharma, G. Yadav, V.K. Singh, S.K. Sharma, P. Shah, M.I. Siddiqi, B. Kumar, J. Lal, G.K. Jain, B.S. Srivastava, R. Srivastava, and A.K. Shaw. European Journal of Medicinal Chemistry, 2011.[Epub ahead of print]; PMID[21440336].

[Pubmed]. OI_0318-033111.

ANTIMALARIAL COMPOUNDS (Plasmodium spp.)

12. Aminoindoles: a Novel Scaffold with Potent Activity against Plasmodium falciparum. Barker, R.H., Jr., S. Urgaonkar, R. Mazitschek, C. Celatka, R. Skerlj, J.F. Cortese, E. Tyndall, H. Liu, M. Cromwell, A.B. Sidhu, J.E. Guerrero-Bravo, K.N. Crespo-Llado, A.E. Serrano, J.W. Lin, C.J. Janse, S.M. Khan, M. Duraisingh, B.I. Coleman, I. Angulo-Barturen, M.B. Jimenez-Diaz, N. Magan, V. Gomez, S. Ferrer, M. Santos Martinez, S. Wittlin, P. Papastogiannidis, T. O'Shea, J.D. Klinger, M. Bree, E. Lee, M. Levine, R.C. Wiegand, B. Munoz, D.F. Wirth, J. Clardy, I. Bathurst, and E. Sybertz. Antimicrobial Agents and Chemotherapy, 2011. [Epub ahead of print]; PMID[21422215].

[Pubmed]. OI_0318-033111.

13. Screening for small molecule modulators of Hsp70 chaperone activity using protein aggregation suppression assays: inhibition of the plasmodial chaperone PfHsp70-1. Cockburn, I.L., E.R. Pesce, J.M. Pryzborski, M.T. Davies-Coleman, P.G. Clark, R.A. Keyzers, L.L. Stephens, and G.L. Blatch. Biological Chemistry, 2011. [Epub ahead of print]; PMID[21426241].

[Pubmed]. OI_0318-033111.

14. Antiparasitic Compounds from Cupania cinerea with Activities against Plasmodium falciparum and Trypanosoma bruceirhodesiense. Gachet, M.S., O. Kunert, M. Kaiser, R. Brun, M. Zehl, W. Keller, R.A. Munoz, R. Bauer, and W. Schuehly. Journal of Natural Products, 2011. [Epub ahead of print]; PMID[21438586].

[Pubmed]. OI_0318-033111.

15. Traditional herbal antimalarial therapy in Kilifi district, Kenya. Gathirwa, J.W., G.M. Rukunga, P.G. Mwitari, N.M. Mwikwabe, C.W. Kimani, C.N. Muthaura, D.M. Kiboi, R.M. Nyangacha, and S.A. Omar. Journal of Ethnopharmacology, 2011. 134(2): p. 434-442; PMID[21211554].

[Pubmed]. OI_0318-033111.

16. Genetic analysis in mice identifies cysteamine as a novel partner for artemisinin in the treatment of malaria. Min-Oo, G. and P. Gros. Mammalian Genome, 2011. [Epub ahead of print]; PMID[21437649].

[Pubmed]. OI_0318-033111.

17. In vitro Screening of Traditional South African Malaria Remedies against Trypanosoma brucei rhodesiense, Trypanosoma cruzi, Leishmania donovani, and Plasmodium falciparum. Mokoka, T.A., S. Zimmermann, T. Julianti, Y. Hata, N. Moodley, M. Cal, M. Adams, M. Kaiser, R. Brun, N. Koorbanally, and M. Hamburger. Planta Medica, 2011. [Epub ahead of print]; PMID[21412695].

[Pubmed]. OI_0318-033111.

18. Antiplasmodial and cytotoxic activity of coumarin derivatives from dried roots of Angelica gigas Nakai in vitro. Moon, H.I., J.H. Lee, Y.C. Lee, and K.S. Kim. Immunopharmacology and Immunotoxicology, 2011. [Epub ahead of print]; PMID[21428713].

[Pubmed]. OI_0318-033111.

19. Identification of Novel Malarial Cysteine Protease Inhibitors Using Structure-Based Virtual Screening of a Focused Cysteine Protease Inhibitor Library. Shah, F., P. Mukherjee, J. Gut, J. Legac, P.J. Rosenthal, B.L. Tekwani, and M.A. Avery. Journal of Chemical Information and Modeling, 2011. [Epub ahead of print]; PMID[21428453].

[Pubmed]. OI_0318-033111.

20. Antiplasmodial and Antitrypanosomal Activity of Tanshinone-Type Diterpenoids from Salvia miltiorrhiza. Slusarczyk, S., S. Zimmermann, M. Kaiser, A. Matkowski, M. Hamburger, and M. Adams. Planta Medica, 2011. [Epub ahead of print]; PMID[21412700].

[Pubmed]. OI_0318-033111.

21. Synthesis of new (-)-bestatin-based inhibitor libraries reveals a novel binding mode in the s1 pocket of the essential malaria m1 metalloaminopeptidase. Velmourougane, G., M.B. Harbut, S. Dalal, S. McGowan, C.A. Oellig, N. Meinhardt, J.C. Whisstock, M. Klemba, and D.C. Greenbaum. Journal of Medicinal Chemistry, 2011. 54(6): p. 1655-1666; PMID[21366301].

[Pubmed]. OI_0318-033111.

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

22. Phytochemical characterization of the extracts of Aframomum danielli flower, leaf, stem and root. Afolabi, M.O., G.O. Adegoke, and F.M. Mathooko. African Journal of Agricultural Research, 2011. 6(1): p. 97-101; ISI[000287927200014].

[WOS]. OI_0318-033111.

23. Molecular modeling and antimycobacterial studies of Mannich bases: 5-hydroxy-2-methyl-4H-pyran-4-ones. Berk, B., D. Us, S. Oktem, Z.T. Kocagoz, B. Caglayan, I.A. Kurnaz, and D.D. Erol. Turkish Journal of Chemistry, 2011. 35(2): p. 317-330; ISI[000288096600014].

[WOS]. OI_0318-033111.

24. Solanum melongena: A potential source of antifungal agent. Das, J., J.P. Lahan, and R.B. Srivastava. Indian Journal of Microbiology, 2010. 50: p. S62-S69; ISI[000288449500011].

[WOS]. OI_0318-033111.

25. Isolation and characterization of novel protein with anti-fungal and anti-inflammatory properties from Aloe vera leaf gel. Das, S., B. Mishra, K. Gill, M.S. Ashraf, A.K. Singh, M. Sinha, S. Sharma, I. Xess, K. Dalal, T.P. Singh, and S. Dey. International Journal of Biological Macromolecules, 2011. 48(1): p. 38-43; ISI[000287279700007].

[WOS]. OI_0318-033111.

26. Antimicrobial and antioxidant activities of solvent extracts and the essential oil composition of Laurencia obtusa and Laurencia obtusa var. pyramidata. Demirel, Z., F.F. Yilmaz-Koz, N.U. Karabay-Yavasoglu, G. Ozdemir, and A. Sukatar. Romanian Biotechnological Letters, 2011. 16(1): p. 5927-5936; ISI[000287993800012].

[WOS]. OI_0318-033111.

27. Antifungal and antibacterial effects of some acrocarpic mosses. Elibol, B., T. Ezer, R. Kara, G.Y. Celik, and E. Colak. African Journal of Biotechnology, 2011. 10(6): p. 986-989; ISI[000287931700014].

[WOS]. OI_0318-033111.

28. Comazaphilones A-F, Azaphilone Derivatives from the Marine Sediment-Derived Fungus Penicillium commune QSD-17. Gao, S.S., X.M. Li, Y. Zhang, C.S. Li, C.M. Cui, and B.G. Wang. Journal of Natural Products, 2011. 74(2): p. 256-261; ISI[000287637300021].

[WOS]. OI_0318-033111.

29. Metal-containing polyurethanes from tetradentate Schiff bases: synthesis, characterization, and biocidal activities. Hasnain, S., M. Zulfequar, and N. Nishat. Journal of Coordination Chemistry, 2011. 64(6): p. 952-964; ISI[000288270500003].

[WOS]. OI_0318-033111.

30. Chemical Composition and Antimicrobial Activity of the Essential Oil of the Leaves of Feronia elephantum (Rutaceae) from North West Karnataka. Joshi, R.K., V.M. Badakar, S.D. Kholkute, and N. Khatib. Natural Product Communications, 2011. 6(1): p. 141-143; ISI[000286793200034].

[WOS]. OI_0318-033111.

31. Synthesis and antimicrobial activity of some new quinazolin-4(3H)-one derivatives. Kadi, A.A. Journal of Saudi Chemical Society, 2011. 15(2): p. 95-100; ISI[000287992800001].

[WOS]. OI_0318-033111.

32. Synthesis and Antimicrobial Activity of Some Aldehyde Derivatives of 3-Acetylchromen-2-one. Lakshminarayanan, B., V. Rajamanickam, T. Subburaju, L.A.P. Rajkumar, and H. Revathi. E-Journal of Chemistry, 2010. 7: p. S400-S404; ISI[000286972200056].

[WOS]. OI_0318-033111.

33. Antibacterial and Antifungal Activity of different Lichens Extracts and Lichen Acid. Marijana, K. and R. Branislav. Research Journal of Biotechnology, 2011. 6(1): p. 23-26; ISI[000287941100006].

[WOS]. OI_0318-033111.

34. Synthesis, characterization and antimicrobial studies of Co-II, Ni-II, Cu-II and Zn-II complexes involving a bidentate Schiff base ligand. Nair, M.S. and D. Arish. Journal of the Indian Chemical Society, 2011. 88(2): p. 265-270; ISI[000288232000014].

[WOS]. OI_0318-033111.

35. Biological Screening of Zizyphus Oxyphylla Edgew Stem. Nisar, M., W.A. Kaleem, M. Qayum, I.K. Marwat, M. Zia-ul-Haq, I. Ali, and M.I. Choudhary. Pakistan Journal of Botany, 2011. 43(1): p. 311-317; ISI[000288090700032].

[WOS]. OI_0318-033111.

36. Synthesis and Antifungal Activity of 3-Aryl-4,4(5H)-dicarbonitrile-5-phenylisoxazolines. Nosachev, S.B., O.V. Degtyarev, V.V. Zhizhikina, and A.G. Tyrkov. Pharmaceutical Chemistry Journal, 2010. 44(9): p. 493-494; ISI[000288437300007].

[WOS]. OI_0318-033111.

37. Badami. Spectroscopic, in vitro antibacterial, and antifungal studies of Co(II), Ni(II), and Cu(II) complexes with 4-chloro-3-coumarinaldehyde Schiff bases. Patil, S.A., S.N. Unki, A.D. Kulkarni, V.H. Naik, U. Kamble, and P.S. Journal of Coordination Chemistry, 2011. 64(2): p. 323-336; ISI[000287028500012].

[WOS]. OI_0318-033111.

38. Synthesis and Antimicrobial Activity of Novel 2-(aryl)-3 5-(2-oxo-2H-3-chromenyl)-1,3-oxazol-2-yl -1,3-thiazolan-4-one s. Reddy, C.S., M.V. Devi, G.R. Kumar, L.S. Rao, and A. Nagaraj. Journal of Heterocyclic Chemistry, 2011. 48(1): p. 176-182; ISI[000287169400025].

[WOS]. OI_0318-033111.

39. Enaminones as Building Blocks for the Synthesis of Substituted Pyrazoles with Antitumor and Antimicrobial Activities. Riyadh, S.M. Molecules, 2011. 16(2): p. 1834-1853; ISI[000287745400054].

[WOS]. OI_0318-033111.

40. Synthesis of some new alpha-oxo-N-phenyl-(4-fluoroaryl)-2-azetidinones by conventional and microwave methods and their spermicidal, antimicrobial activities. Sharma, S., H. Madan, and A. Sharma. Journal of the Indian Chemical Society, 2011. 88(2): p. 283-288; ISI[000288232000019].

[WOS]. OI_0318-033111.

41. Synthesis, Spectroscopic Characterization and Preliminary Antimicrobial Studies of Mn(II) and Cu(II) Complexes of two Thiolates; S,S '-(2,6-Diaminopyridine-3,5-diyl) Dibenzenecarbothioate (DBCT) and S-Benzyl Benzenecarbothioate (BBCT). Ukoha, P.O., C.U. Alioke, N.L. Obasi, and K.F. Chah. E-Journal of Chemistry, 2011. 8(1): p. 231-239; ISI[000286973000035].

[WOS]. OI_0318-033111.

42. Synthesis and in vitro antimycobacterial activities of novel 6-substituted-3(2H)-pyridazinone-2-acetyl-2-(substituted/nonsubstituted acetophenone) hydrazone. Utku, S., M. Gokce, G. Aslan, G. Bayram, M. Ulger, G. Emekdas, and M.F. Sanhin. Turkish Journal of Chemistry, 2011. 35(2): p. 331-339; ISI[000288096600015].

[WOS]. OI_0318-033111.

43. Cytotoxicity decreasing effect and antimycobacterial activity of chitosan conjugated with antituberculotic drugs. Vavrikova, E., J. Mandikova, F. Trejtnar, K. Horvati, S. Bosze, J. Stolarikova, and J. Vinsova. Carbohydrate Polymers, 2011. 83(4): p. 1901-1907; ISI[000286965400062].

[WOS]. OI_0318-033111.

44. Synthesis and Antifungal Activity of Some Carbamate Containing Azaheterocycles. Velikorodov, A.V., V.B. Kovalev, O.V. Degtyarev, and O.L. Titova. Pharmaceutical Chemistry Journal, 2011. 44(10): p. 536-539; ISI[000288437700005].

[WOS]. OI_0318-033111.

45. Bioactive metabolites from Stenocarpella maydis, a stalk and ear rot pathogen of maize. Wicklow, D.T., K.D. Rogers, P.F. Dowd, and J.B. Gloer. Fungal Biology, 2011. 115(2): p. 133-142; ISI[000288306400005].

[WOS]. OI_0318-033111.

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