Thiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis
Thiazole, triazole, thio and semicarbazones are privileged motifs that act as pharmacophores in bioactive compounds for various diseases, such as Tuberculosis (TB). Tuberculosis (TB) is an infectious disease caused mainly by Mycobacterium tuberculosis and was responsible for 4,000 deaths a day in 20...
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oai:doaj.org-article:b027c5d317da4736bcf8498204e7bf7f2021-12-03T04:01:34ZThiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis2772-417410.1016/j.ejmcr.2021.100002https://doaj.org/article/b027c5d317da4736bcf8498204e7bf7f2021-07-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2772417421000029https://doaj.org/toc/2772-4174Thiazole, triazole, thio and semicarbazones are privileged motifs that act as pharmacophores in bioactive compounds for various diseases, such as Tuberculosis (TB). Tuberculosis (TB) is an infectious disease caused mainly by Mycobacterium tuberculosis and was responsible for 4,000 deaths a day in 2019 worldwide. The resistance and the gap of new drugs is the main cause of the slow drop in TB infections. In this review article, we analyse recent contributions of thiazole, triazole, thio and semicarbazone scaffolds to anti-TB drugs. Beyond these recent trends, we demonstrate the potential of the thiazole, triazole, thio and semicarbazone approach in the medicinal chemistry field of anti-M. tuberculosis drug discovery.Cauê Benito ScarimFernando Rogério PavanElsevierarticleThiazoleTriazoleThio and semicarbazonesMycobacterium tuberculosisNew compoundsPharmacy and materia medicaRS1-441Other systems of medicineRZ201-999ENEuropean Journal of Medicinal Chemistry Reports, Vol 1, Iss , Pp 100002- (2021) |
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Thiazole Triazole Thio and semicarbazones Mycobacterium tuberculosis New compounds Pharmacy and materia medica RS1-441 Other systems of medicine RZ201-999 |
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Thiazole Triazole Thio and semicarbazones Mycobacterium tuberculosis New compounds Pharmacy and materia medica RS1-441 Other systems of medicine RZ201-999 Cauê Benito Scarim Fernando Rogério Pavan Thiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis |
description |
Thiazole, triazole, thio and semicarbazones are privileged motifs that act as pharmacophores in bioactive compounds for various diseases, such as Tuberculosis (TB). Tuberculosis (TB) is an infectious disease caused mainly by Mycobacterium tuberculosis and was responsible for 4,000 deaths a day in 2019 worldwide. The resistance and the gap of new drugs is the main cause of the slow drop in TB infections. In this review article, we analyse recent contributions of thiazole, triazole, thio and semicarbazone scaffolds to anti-TB drugs. Beyond these recent trends, we demonstrate the potential of the thiazole, triazole, thio and semicarbazone approach in the medicinal chemistry field of anti-M. tuberculosis drug discovery. |
format |
article |
author |
Cauê Benito Scarim Fernando Rogério Pavan |
author_facet |
Cauê Benito Scarim Fernando Rogério Pavan |
author_sort |
Cauê Benito Scarim |
title |
Thiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis |
title_short |
Thiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis |
title_full |
Thiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis |
title_fullStr |
Thiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis |
title_full_unstemmed |
Thiazole, triazole, thio- and semicarbazone derivatives - Promising moieties for drug development for the treatment of tuberculosis |
title_sort |
thiazole, triazole, thio- and semicarbazone derivatives - promising moieties for drug development for the treatment of tuberculosis |
publisher |
Elsevier |
publishDate |
2021 |
url |
https://doaj.org/article/b027c5d317da4736bcf8498204e7bf7f |
work_keys_str_mv |
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1718373950666309632 |