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dc.contributor.authorDimoglo, Anatholy
dc.contributor.authorKarali, Nilgün Lütfiye
dc.contributor.authorGuersoy, Aysel
dc.contributor.authorKandemirli, Fatma
dc.contributor.authorShvets, Nathaly
dc.contributor.authorKaynak, F. Betuel
dc.contributor.authorOezbey, Sueheyla
dc.contributor.authorKovalishyn, Vasyl
dc.date.accessioned2021-03-03T12:29:23Z
dc.date.available2021-03-03T12:29:23Z
dc.date.issued2007
dc.identifier.citationKarali N. L. , Guersoy A., Kandemirli F., Shvets N., Kaynak F. B. , Oezbey S., Kovalishyn V., Dimoglo A., "Synthesis and structure-antituberculosis activity relationship of 1H-indole-2,3-dione derivatives", BIOORGANIC & MEDICINAL CHEMISTRY, cilt.15, sa.17, ss.5888-5904, 2007
dc.identifier.issn0968-0896
dc.identifier.othervv_1032021
dc.identifier.otherav_2e54942c-161a-4394-850d-64a101eb4336
dc.identifier.urihttp://hdl.handle.net/20.500.12627/35708
dc.identifier.urihttps://doi.org/10.1016/j.bmc.2007.05.063
dc.description.abstractNew series of 5-fluoro-1H-indole-2,3-dione-3-thiosemicarbazones 2a-k and 5-fluoro-l-morpholino/piperidinomethyl-1Hindole-2,3-dione-3-thiosemicarbazones 3a-r were synthesized. The structures of the synthesized compounds were confirmed by spectral data, elemental and single crystal X-ray diffraction analysis. The new 5-fluoro-IH-indole-2,3-dione derivatives, along with previously reported 5-nitro-1H-indole-2,3-dione-3-thiosemicarbazones 2l-v, 1-morpholino/piperidinomethyl-5-nitro-1H-indole-2,3dione-3-thiosemicarbazones 4a-1, and 5-nitro-1H-indole-2,3-dione-3-[(4-oxo-1,3-thiazolidin-2-ylidene)hydrazones] 5a-s, were evaluated for in vitro antituberculosis activity against Mycobacterium tuberculosis H37Rv. Among the tested compounds, 5-nitro-1H-indole-2,3-dione-3-thiosemicarbazones (2p, 2r, and 2s) and its 1-morpholinomethyl derivatives (4a, 4e, 4g, and 4i) exhibited significant inhibitory activity in the primary screen. The antituberculosis activity of molecules with diverse skeletons was investigated by means of the Electronic-Topological Method (ETM). Ten pharmacophores and ten anti-pharmacophores that have been found by this form the basis of the system capable of predicting the structures of potentially active compounds. The forecasting ability of the system has been tested on structures that differ from those synthesized. The probability of correct identification for active compounds was found as equal to 93% in average. To obtain the algorithmic base for the activity prediction, Artificial Neural Networks were used after the ETM (the so-called combined ETM-ANN method). As the result, only 9 pharmacophores and anti-pharmacophores were chosen as the most important ones for the activity. By this, ANNs classified correctly 94.4%, or 67 compounds from 71. (c) 2007 Elsevier Ltd. All rights reserved.
dc.language.isoeng
dc.subjectMoleküler Biyoloji ve Genetik
dc.subjectBiyoinorganik Kimya
dc.subjectTemel Bilimler
dc.subjectBİYOKİMYA VE MOLEKÜLER BİYOLOJİ
dc.subjectMoleküler Biyoloji ve Genetik
dc.subjectYaşam Bilimleri (LIFE)
dc.subjectKİMYA, TIP
dc.subjectKimya
dc.subjectTemel Bilimler (SCI)
dc.subjectKİMYA, ORGANİK
dc.subjectFARMAKOLOJİ VE ECZACILIK
dc.subjectFarmakoloji ve Toksikoloji
dc.subjectSağlık Bilimleri
dc.subjectEczacılık
dc.subjectTemel Eczacılık Bilimleri
dc.subjectYaşam Bilimleri
dc.subjectBiyokimya
dc.subjectSitogenetik
dc.titleSynthesis and structure-antituberculosis activity relationship of 1H-indole-2,3-dione derivatives
dc.typeMakale
dc.relation.journalBIOORGANIC & MEDICINAL CHEMISTRY
dc.contributor.department, ,
dc.identifier.volume15
dc.identifier.issue17
dc.identifier.startpage5888
dc.identifier.endpage5904
dc.contributor.firstauthorID47666


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