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Opportunistic Infections Citation List: May 23 - June 5, 2014

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

1. A Novel Antifungal Protein with Lysozyme-like Activity from Seeds of Clitoria ternatea. K, A. and S. K. Applied Biochemistry and Biotechnology, 2014. 173(3): p. 682-693. PMID[24691882].

[PubMed]. OI_0523-060514.


2. A Novel Echinocandin MIG0310 with Anticandida Activity from Newly Isolated Fusarium Sp. Strain MS-R1. Masaphy, S. Journal of Applied Microbiology, 2014. 116(6): p. 1458-1464. PMID[24674450].

[PubMed]. OI_0523-060514.


3. Chemical Composition, Antibacterial, Antifungal and Antioxidant Activities of Algerian Eryngium tricuspidatum L. Essential Oil. Merghache, D., Z. Boucherit-Otmani, S. Merghache, I. Chikhi, C. Selles, and K. Boucherit. Journal of Natural Products, 2014. 28(11): p. 795-807. PMID[24559136].

[PubMed]. OI_0523-060514.


4. A Novel Antifungal is Active against Candida albicans Biofilms and Inhibits Mutagenic Acetaldehyde Production in Vitro.Nieminen, M.T., L. Novak-Frazer, V. Rautemaa, R. Rajendran, T. Sorsa, G. Ramage, P. Bowyer, and R. Rautemaa. Plos One, 2014. 9(5): p. e97864. PMID[24867320].

[PubMed]. OI_0523-060514.


5. Pyrrolo[1,2-alpha][1,4]benzodiazepines Show Potent in Vitro Antifungal Activity and Significant in Vivo Efficacy in a Microsporum canis Dermatitis Model in Guinea Pigs. Paulussen, C., K. de Wit, G. Boulet, P. Cos, L. Meerpoel, and L. Maes. Journal of Antimicrobial Chemotherapy, 2014. 69(6): p. 1608-1610. PMID[24535279].

[PubMed]. OI_0523-060514.


6. Five New Sesquiterpenoids from Dalbergia odorifera.Wang, H., W.H. Dong, W.J. Zuo, S. Liu, H.M. Zhong, W.L. Mei, and H.F. Dai. Fitoterapia, 2014. 95: p. 16-21. PMID[24613800].

[PubMed]. OI_0523-060514.


7. Dual Antifungal Properties of Cationic Antimicrobial Peptides Polybia-MPI: Membrane Integrity Disruption and Inhibition of Biofilm Formation. Wang, K., J. Yan, W. Dang, J. Xie, B. Yan, W. Yan, M. Sun, B. Zhang, M. Ma, Y. Zhao, F. Jia, R. Zhu, W. Chen, and R. Wang. Peptides, 2014. 56: p. 22-29. PMID[24642357].

[PubMed]. OI_0523-060514.


8. Flavonoids and Stilbenoids from Derris eriocarpa.Zhang, H.X., P.K. Lunga, Z.J. Li, Q. Dai, and Z.Z. Du. Fitoterapia, 2014. 95: p. 147-153. PMID[24685500].

[PubMed]. OI_0523-060514.

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

9. Profiling of rpoB Mutations and MICs for Rifampin and Rifabutin in Mycobacterium tuberculosis. Jamieson, F.B., J.L. Guthrie, A. Neemuchwala, O. Lastovetska, R.G. Melano, and C. Mehaffy. Journal of Clinical Microbiology, 2014. 52(6): p. 2157-2162. PMID[24740074].

[PubMed]. OI_0523-060514.


10. Synthesis, Crystal Studies, Anti-tuberculosis and Cytotoxic Studies of 1-[(2E)-3-Phenylprop-2-enoyl]-1H-benzimidazole Derivatives.Kalalbandi, V.K., J. Seetharamappa, U. Katrahalli, and K.G. Bhat. European Journal of Medicinal Chemistry, 2014. 79: p. 194-202. PMID[24735645].

[PubMed]. OI_0523-060514.


11. Deoxysugars as Antituberculars and alpha-Mannosidase Inhibitors.Kashyap, V., S. Sharma, V. Singh, S.K. Sharma, M. Saquib, R. Srivastava, and A.K. Shaw. Antimicrobial Agents and Chemotherapy, 2014. 58(6): p. 3530-3532. PMID[24687500].

[PubMed]. OI_0523-060514.


12. Antimicrobial Prenylated Benzoylphloroglucinol Derivatives and Xanthones from the Leaves of Garcinia goudotiana.Mahamodo, S., C. Riviere, C. Neut, A. Abedini, H. Ranarivelo, N. Duhal, V. Roumy, T. Hennebelle, S. Sahpaz, A. Lemoine, D. Razafimahefa, B. Razanamahefa, F. Bailleul, and B. Andriamihaja. Phytochemistry, 2014. 102: p. 162-168. PMID[24690454].

[PubMed]. OI_0523-060514.


13. Synthesis, Crystal Structures and Characterization of Late First Row Transition Metal Complexes Derived from Benzothiazole Core: Anti-tuberculosis Activity and Special Emphasis on DNA Binding and Cleavage Property. Netalkar, P.P., S.P. Netalkar, S. Budagumpi, and V.K. Revankar. European Journal of Medicinal Chemistry, 2014. 79: p. 47-56. PMID[24721314].

[PubMed]. OI_0523-060514.


14. Facile Synthesis of Benzonitrile/Nicotinonitrile Based S-triazines as New Potential Antimycobacterial Agents. Patel, A.B., K.H. Chikhalia, and P. Kumari. European Journal of Medicinal Chemistry, 2014. 79: p. 57-65. PMID[24721315].

[PubMed]. OI_0523-060514.


15. Killing of Mycobacterium avium by Lactoferricin Peptides: Improved Activity of Arginine- and D-amino-acid-containing Molecules. Silva, T., B. Magalhaes, S. Maia, P. Gomes, K. Nazmi, J.G. Bolscher, P.N. Rodrigues, M. Bastos, and M.S. Gomes. Antimicrobial Agents and Chemotherapy, 2014. 58(6): p. 3461-3467. PMID[24709266].

[PubMed]. OI_0523-060514.


16. Diethyl 2-(phenylcarbamoyl)phenyl phosphorothioates: Synthesis, Antimycobacterial Activity and Cholinesterase Inhibition.Vinsova, J., M. Kratky, M. Komloova, E. Dadapeer, S. Stepankova, K. Vorcakova, and J. Stolarikova. Molecules, 2014. 19(6): p. 7152-7168. PMID[24886941].

[PubMed]. OI_0523-060514.


17. In Vitro and Intracellular Activity of 4-Substituted piperazinyl phenyl oxazolidinone Analogues against Mycobacterium tuberculosis. Wang, D., Y. Zhao, Z. Liu, H. Lei, M. Dong, and P. Gong. Journal of Antimicrobial Chemotherapy, 2014. 69(6): p. 1711-1714. PMID[24526515].

[PubMed]. OI_0523-060514.


18. In Vitro and in Vivo Activities of Three Oxazolidinones against Nonreplicating Mycobacterium tuberculosis.Zhang, M., C. Sala, N. Dhar, A. Vocat, V.K. Sambandamurthy, S. Sharma, G. Marriner, V. Balasubramanian, and S.T. Cole. Antimicrobial Agents and Chemotherapy, 2014. 58(6): p. 3217-3223. PMID[24663022].

[PubMed]. OI_0523-060514.

ANTIMALARIAL COMPOUNDS (Plasmodium spp.)

19. Synthesis and in Vitro Biological Evaluation of Aminoacridines and Artemisinin-acridine Hybrids. Joubert, J.P., F.J. Smit, L. du Plessis, P.J. Smith, and D.D. N'Da. European Journal of Pharmaceutical Sciences, 2014. 56: p. 16-27. PMID[24560941].

[PubMed]. OI_0523-060514.


20. Synthesis and Biological Evaluation of some Novel Pyrido[1,2-a]pyrimidin-4-ones as Antimalarial Agents. Mane, U.R., D. Mohanakrishnan, D. Sahal, P.R. Murumkar, R. Giridhar, and M.R. Yadav. European Journal of Medicinal Chemistry, 2014. 79: p. 422-435. PMID[24763263].

[PubMed]. OI_0523-060514.


21. Synthesis and Antimalarial Activity of Prodigiosenes.Marchal, E., D.A. Smithen, M.I. Uddin, A.W. Robertson, D.L. Jakeman, V. Mollard, C.D. Goodman, K.S. MacDougall, S.A. McFarland, G.I. McFadden, and A. Thompson. Organic & Biomolecular Chemistry, 2014. 12(24): p. 4132-4142. PMID[24834447].

[PubMed]. OI_0523-060514.


22. Antimalarial Chemotherapy: Artemisinin-derived Dimer Carbonates and Thiocarbonates. Mazzone, J.R., R.C. Conyers, A.K. Tripathi, D.J. Sullivan, and G.H. Posner. Bioorganic & Medicinal Chemistry Letters, 2014. 24(11): p. 2440-2443. PMID[24775306].

[PubMed]. OI_0523-060514.


23. Antiplasmodial Activity of Certain Medicinal Plants against Chloroquine Resistant Plasmodium berghei Infected White Albino BALB/c Mice. Rajendran, C., M. Begam, D. Kumar, I. Baruah, H.K. Gogoi, R.B. Srivastava, and V. Veer. Journal of Parasitic Diseases, 2014. 38(2): p. 148-152. PMID[24808642].

[PubMed]. OI_0523-060514.


24. Design, Economical Synthesis and Antiplasmodial Evaluation of Vanillin Derived Allylated Chalcones and their Marked Synergism with Artemisinin against Chloroquine Resistant Strains of Plasmodium falciparum.Sharma, N., D. Mohanakrishnan, U.K. Sharma, R. Kumar, Richa, A.K. Sinha, and D. Sahal. European Journal of Medicinal Chemistry, 2014. 79: p. 350-368. PMID[24747290].

[PubMed]. OI_0523-060514.


25. Second Generation Steroidal 4-Aminoquinolines are Potent, Dual-target Inhibitors of the Botulinum Neurotoxin Serotype A Metalloprotease and P. falciparum Malaria. Videnovic, M., D.M. Opsenica, J.C. Burnett, L. Gomba, J.E. Nuss, Z. Selakovic, J. Konstantinovic, M. Krstic, S. Segan, M. Zlatovic, R.J. Sciotti, S. Bavari, and B.A. Solaja. Journal of Medicinal Chemistry, 2014. 57(10): p. 4134-4153. PMID[24742203].

[PubMed]. OI_0523-060514.


26. Investigation of Indolglyoxamide and Indolacetamide Analogues of Polyamines as Antimalarial and Antitrypanosomal Agents.Wang, J., M. Kaiser, and B.R. Copp. Marine Drugs, 2014. 12(6): p. 3138-3160. PMID[24879541].

[PubMed]. OI_0523-060514.

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

27. Pharmacological Evaluation of Crude Methanolic Extract of Kalanchoe pinnata Leaves. Ahmed, M., Z.U. Wazir, R.A. Khan, M.I. Khan, S. Waqas, and A. Iqbal. Toxicological and Environmental Chemistry, 2013. 95(9): p. 1539-1545. ISI[000334906700009].

[WOS]. OI_0523-060514.


28. Anti-tubercular, Antioxidant and in Vitro Anti-inflammatory Activity of Some Newly Synthesized Chalcones. Alam, S., R. Panda, and M. Kachroo. Indian Journal of Chemistry, 2014. 53(4): p. 440-443. ISI[000335206800010].

[WOS]. OI_0523-060514.


29. Antifungal Activity of Essential Oils of Three Aromatic Plants from Western Algeria against Five Fungal Pathogens of Tomato (Lycopersicon esculentum Mill). Alam, S.B., N.G. Benyelles, M.E.A. Dib, N. Djabou, L. Tabti, J. Paolini, A. Muselli, and J. Costa. Journal of Applied Botany and Food Quality, 2014. 87: p. 56-61. ISI[000334587000008].

[WOS]. OI_0523-060514.


30. Optimization of an Imidazopyridazine Series of Inhibitors of Plasmodium falciparum Calcium-dependent Protein Kinase 1 (PfCDPK1). Chapman, T.M., S.A. Osborne, C. Wallace, K. Birchall, N. Bouloc, H.M. Jones, K.H. Ansell, D.L. Taylor, B. Clough, J.L. Green, and A.A. Holder. Journal of Medicinal Chemistry, 2014. 57(8): p. 3570-3587. ISI[000335113900030].

[WOS]. OI_0523-060514.


31. The Preliminary Assessment of Anti-microbial Activity of HPLC Separated Components of Kirkia wilmsii. Chigayo, K., P.E.L. Mojapelo, P. Bessong, and J.R. Gumbo. African Journal of Traditional Complementary and Alternative Medicines, 2014. 11(3): p. 275-281. ISI[000334493100038].

[WOS]. OI_0523-060514.


32. Synthesis and Antimicrobial Evaluation of Some New 1,2-bis-(2-(N-Arylimino)-1,3-thiazolidin-3-yl)ethane Derivatives. Dawood, K.M. and H.K.A. Abu-Deif. Chemical & Pharmaceutical Bulletin, 2014. 62(5): p. 439-445. ISI[000335273800006].

[WOS]. OI_0523-060514.


33. Antimicrobial and SEM Studies of Sophorolipids Synthesized using Lauryl Alcohol. Dengle-Pulate, V., P. Chandorkar, S. Bhagwat, and A.A. Prabhune. Journal of Surfactants and Detergents, 2014. 17(3): p. 543-552. ISI[000334682700018].

[WOS]. OI_0523-060514.


34. Biosynthetic Genes and Activity Spectrum of Antifungal Polyynes from Collimonas fungivorans Ter331. Fritsche, K., M. van den Berg, W. de Boer, T.A. van Beek, J.M. Raaijmakers, J.A. van Veen, and J.H.J. Leveau. Environmental Microbiology, 2014. 16(5): p. 1334-1345. ISI[000334802400011].

[WOS]. OI_0523-060514.


35. Antimicrobial, Cytotoxic and Phytotoxic Potency of Ethyl Acetate Extract of Rhizopus stolonifer Culture. Iqbal, M., M. Amin, Z. Iqbal, H. Bibi, A. Iqbal, Z.U. Din, M. Suleman, and H.U. Shah. Tropical Journal of Pharmaceutical Research, 2014. 13(1): p. 87-92. ISI[000334402600013].

[WOS]. OI_0523-060514.


36. N-Substituted 5-amino-6-methylpyrazine-2,3-dicarbonitriles: Microwave-assisted Synthesis and Biological Properties. Jandourek, O., M. Dolezal, P. Paterova, V. Kubicek, M. Pesko, J. Kunes, A. Coffey, J.H. Guo, and K. Kralova. Molecules, 2014. 19(1): p. 651-671. ISI[000334420300040].

[WOS]. OI_0523-060514.


37. Synthesis and Biological Evaluation of Amino acid-linked 1,2,3-Bistriazole Conjugates as Potential Antimicrobial Agents. Kaushik, C.P., K. Lal, A. Kumar, and S. Kumar. Medicinal Chemistry Research, 2014. 23(6): p. 2995-3004. ISI[000334184400029].

[WOS]. OI_0523-060514.


38. Synthesis and Biological Evaluation of 2-Aminobenzamide Derivatives as Antimicrobial Agents: Opening/Closing Pharmacophore Site. Mabkhot, Y.N., A.M. Al-Majid, A. Barakat, S.S. Al-Showiman, M.S. Al-Har, S. Radi, M.M. Naseer, and T.B. Hadda. International Journal of Molecular Sciences, 2014. 15(3): p. 5115-5127. ISI[000334444700101].

[WOS]. OI_0523-060514.


39. Synthesis and Antimicrobial Screening of Some Novel Chalcones and Flavanones Substituted with Higher Alkyl Chains. Mallavadhani, U.V., L. Sahoo, K.P. Kumar, and U.S. Murty. Medicinal Chemistry Research, 2014. 23(6): p. 2900-2908. ISI[000334184400020].

[WOS]. OI_0523-060514.


40. In Vitro Evaluation of Antimicrobial Effect of Miswak against Common Oral Pathogens. Naseem, S., K. Hashmi, F. Fasih, S. Sharafat, and R. Khanani. Pakistan Journal of Medical Sciences, 2014. 30(2): p. 398-403. ISI[000334562700035].

[WOS]. OI_0523-060514.


41. Chemical Characterization by GC-MS and in Vitro Activity against Candida albicans of Volatile Fractions Prepared from Artemisia dracunculus, Artemisia abrotanum, Artemisia absinthium and Artemisia vulgaris. Obistioiu, D., R.T. Cristina, I. Schmerold, R. Chizzola, K. Stolze, I. Nichita, and V. Chiurciu. Chemistry Central Journal, 2014. 8. ISI[000334627900001].

[WOS]. OI_0523-060514.


42. Time-dependent Diaryl Ether Inhibitors of InhA: Structure-activity Relationship Studies of Enzyme Inhibition, Antibacterial Activity, and in Vivo Efficacy. Pan, P., S.E. Knudson, G.R. Bommineni, H.J. Li, C.T. Lai, N.N. Liu, M. Garcia-Diaz, C. Simmerling, S.S. Patil, R.A. Slayden, and P.J. Tonge. ChemMedChem, 2014. 9(4): p. 776-791. ISI[000333749200014].

[WOS]. OI_0523-060514.


43. Design and Synthesis of Triazolopyrimidine acylsulfonamides as Novel Anti-mycobacterial Leads Acting through Inhibition of Acetohydroxyacid Synthase. Patil, V., M. Kale, A. Raichurkar, B. Bhaskar, D. Prahlad, M. Balganesh, S. Nandan, and P.S. Hameed. Bioorganic & Medicinal Chemistry Letters, 2014. 24(9): p. 2222-2225. ISI[000334337100038].

[WOS]. OI_0523-060514.


44. Chemical and Biological Study on the Essential Oil of Artemisia caerulescens L. ssp densiflora (Viv). Petretto, G.L., M. Chessa, A. Piana, M.D. Masia, M. Foddai, G. Mangano, N. Culeddu, F.U. Afifi, and G. Pintore. Natural Product Research, 2013. 27(19): p. 1709-1715. ISI[000333569500001].

[WOS]. OI_0523-060514.


45. Microwave Induced Three-component Synthesis and Antimycobacterial Activity of Benzopyrazolo[3,4-b]quinolindiones. Quiroga, J., Y. Diaz, J. Bueno, B. Insuasty, R. Abonia, A. Ortiz, M. Nogueras, and J. Cobo. European Journal of Medicinal Chemistry, 2014. 74: p. 216-224. ISI[000333780800020].

[WOS]. OI_0523-060514.


46. Synthesis, Characterization, Antibacterial, Antifungal and Anthelmintic Activities of a New 5-Nitroisatin Schiff Base and its Metal Complexes. Rao, R., K.R. Reddy, and K.N. Mahendra. Bulgarian Chemical Communications, 2014. 46(1): p. 11-17. ISI[000334656200002].

[WOS]. OI_0523-060514.


47. Evaluation of Anti-candida Activity of Vitis vinifera L. Seed Extracts Obtained from Wine and Table Cultivars. Simonetti, G., A.R. Santamaria, F.D. D'Auria, N. Mulinacci, M. Innocenti, F. Cecchini, E. Pericolini, E. Gabrielli, S. Panella, D. Antonacci, A.T. Palamara, A. Vecchiarelli, and G. Pasqua. BioMed Research International, 2014. 127021: p. 11. ISI[000335230500001].

[WOS]. OI_0523-060514.

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