1. Design, Synthesis and Evaluation against Mycobacterium tuberculosis of Azole Piperazine Derivatives as Dicyclotyrosine (cYY) Mimics. Abd El-Wahab, H.A.A., M. Accietto, L.B. Marino, K.J. McLean, C.W. Levy, H.M. Abdel-Rahman, M.A. El-Gendy, A.W. Munro, A.S. Aboraia, and C. Simons. Bioorganic & Medicinal Chemistry, 2018. 26(1): p. 161-176. PMID[29183661].
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2. Combinations of Respiratory Chain Inhibitors Have Enhanced Bactericidal Activity against Mycobacterium tuberculosis. Berube, B.J. and T. Parish. Antimicrobial Agents and Chemotherapy, 2018. 62(1): e01677-17. PMID[29061760]. PMCID[PMC5740367].
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3. Biological Activities and Phytochemical Profile of Passiflora mucronata from the Brazilian Restinga. de Araujo, M.H., I.C.V. da Silva, P.F. de Oliveira, A.R.R. Barreto, T.U.P. Konno, F.D. Esteves, T. Barth, F.A. Aguiar, N.P. Lopes, R.K. Dermenjian, D.O. Guimaraes, I.C.R. Leal, E.B. Lasunskaia, and M.F. Muzitano. Revista Brasileira de Farmacognosia, 2017. 27(6): p. 702-710. ISI[000418069300005].
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4. Antibacterial and Sterilizing Effect of Benzylpenicillin in Tuberculosis. Deshpande, D., S. Srivastava, P. Bendet, K.R. Martin, K.N. Cirrincione, P.S. Lee, J.G. Pasipanodya, K. Dheda, and T. Gumbo. Antimicrobial Agents and Chemotherapy, 2018. 62(2): e02232-17. PMID[29180526].
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5. Antioxidant, Anti-Inflammatory, Antiproliferative and Antimycobacterial Activities of the Essential Oil of Psidium guineense Sw. and Spathulenol. do Nascimento, K.F., F.M.F. Moreira, J. Alencar Santos, C.A.L. Kassuya, J.H.R. Croda, C.A.L. Cardoso, M.D.C. Vieira, A.L.T. Gois Ruiz, M. Ann Foglio, J.E. de Carvalho, and A.S.N. Formagio. Journal of Ethnopharmacology, 2018. 210: p. 351-358. PMID[28844678].
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6. Antimycobacterial Activity: A New Pharmacological Target for Conotoxins Found in the First Reported Conotoxin from Conasprella ximenes. Figueroa-Montiel, A., J. Bernaldez, S. Jimenez, B. Ueberhide, L.J. Gonzalez, and A. Licea-Navarro. Toxins, 2018. 10(2): E51. PMID[29360782].
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7. Assessing the Combined Antibacterial Effect of Isoniazid and Rifampin on Four Mycobacterium tuberculosis Strains Using in Vitro Experiments and Response-surface Modeling. Genestet, C., F. Ader, C. Pichat, G. Lina, O. Dumitrescu, S. Goutelle, and T.B.S.G. Lyon. Antimicrobial Agents and Chemotherapy, 2018. 62(1). PMID[29061753].
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8. Ionophore A23187 Shows Anti-tuberculosis Activity and Synergy with Tebipenem. Huang, W., J. Briffotaux, X.W. Wang, L. Liu, P. Hao, M. Cimino, M.V. Buchieri, A. Namouchi, J.A. Ainsa, and B. Gicquel. Tuberculosis, 2017. 107: p. 111-118. PMID[29050757].
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9. In Vitro Activity and MIC of Sitafloxacin against Multidrug-resistant and Extensively Drug-resistant Mycobacterium tuberculosis Isolated in Thailand. Leechawengwongs, M., T. Prammananan, S. Jaitrong, P. Billamas, N. Makhao, N. Thamnongdee, A. Thanormchat, A. Phurattanakornkul, S. Rattanarangsee, C. Ratanajaraya, A. Disratthakit, and A. Chaiprasert. Antimicrobial Agents and Chemotherapy, 2018. 62(1): e00825-17. PMID[29061759]. PMCID[PMC5740303].
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10. An Antibacterial beta-Lactone Kills Mycobacterium tuberculosis by Disrupting Mycolic acid Biosynthesis. Lehmann, J., T.Y. Cheng, A. Aggarwal, A.S. Park, E. Zeiler, R.M. Raju, T. Akopian, O. Kandror, J.C. Sacchettini, D.B. Moody, E.J. Rubin, and S.A. Sieber. Angewandte Chemie, 2018. 57(1): p. 348-353. PMID[29067779].
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11. Anti-mycobacterial, -Oxidative, -Proliferative and -Inflammatory Activities of Dichloromethane Leaf Extracts of Gymnosporia senegalensis (Lam.) Loes. Makgatho, M.E., W. Nxumalo, and L.A. Raphoko. South African Journal of Botany, 2018. 114: p. 217-222. ISI[000419710000027].
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12. Lead Identification and Optimization of Bacterial Glutamate Racemase Inhibitors. Malapati, P., V.S. Krishna, R. Nallangi, N. Meda, R.R. Srilakshmi, and D. Sriram. Bioorganic & Medicinal Chemistry, 2018. 26(1): p. 177-190. PMID[29239770].
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13. Environmentally Benign Synthesis and Anti-mycobacterial Evaluation of 9,10-Dihydro-4-methyl-chromeno[8,7-e][1,3]-oxazin-2(8H)-one Derivatives. Mathew, B.P., R. Tandon, N. Batra, D. Agarwal, M. Bose, R.D. Gupta, and M. Nath. Indian Journal of Chemistry Section B-Organic Chemistry Including Medicinal Chemistry, 2017. 56(12): p. 1237-1242. ISI[000418782200002].
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14. Synthesis and Antimycobacterial Activity of Triterpeni Succeeds, Similar A-ring Azepanes. Medvedeva, N.I., O.B. Kazakova, T.V. Lopatina, I.E. Smirnova, G.V. Giniyatullina, I.P. Baikova, and V.E. Kataev. European Journal of Medicinal Chemistry, 2018. 143: p. 464-472. PMID[29202408].
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15. Antituberculosis Activity, Phytochemical Identification of Costus speciosus (J. Koenig) Sm., Cymbopogon citratus (Dc. Ex Nees) Stapf., and Tabernaemontana coronaria (L.) Willd. and Their Effects on the Growth Kinetics and Cellular Integrity of Mycobacterium tuberculosis H37Rv. Mohamad, S., N.N. Ismail, T. Parumasivam, P. Ibrahim, H. Osman, and A.W. H. BMC Complementary and Alternative Medicine, 2018. 18(5): 14pp. PMID[29310671]. PMCID[PMC5759295].
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16. Epigallocatechin gallate, a Green Tea Polyphenol Inhibits Mycobacterium smegmatis: In Silico and in Vitro Studies. Narayanan, S. and K.V. Ramesh. Indian Journal of Pharmaceutical Sciences, 2017. 79(4): p. 625-632. ISI[000419283500017].
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17. Synthesis and Bioactivity of Reduced Chalcones Containing Sulfonamide Side Chains. Noreljaleel, A.E.M., A. Wilhelm, S.L. Bonnet, and J.H. van der Westhuizen. Journal of Natural Products, 2018. 81(1): p. 41-48. PMID[29309141].
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18. Design and Synthesis of Indolopyridone Hybrids as New Antituberculosis Agents. Rather, M.A., F. Rasool, Z.S. Bhat, H.U. Dar, M. Maqbool, S. Amin, S.K. Yousuf, and Z. Ahmad. Microbial Pathogenesis, 2017. 113: p. 330-334. PMID[29079215].
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22. The Effect of Combining Natural Terpenes and Antituberculous Agents against Reference and Clinical Mycobacterium tuberculosis Strains. Sieniawska, E., R. Sawicki, M. Swatko-Ossor, A. Napiorkowska, A. Przekora, G. Ginalska, and E. Augustynowicz-Kopec. Molecules, 2018. 23(1): E176. PMID[29342972].
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