Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles
Global people are suffering from the legion of diseases. Cytotoxic property of the chemical compound would not solely influence effective drug properties and reduce unnecessary side effects. Proteins/enzymes responsible for microbe proliferation or survival are specifically targeted and inhibited su...
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doaj-8d0dea35f4fa4ed59c4b309dc804b2662020-11-25T03:16:26ZengElsevierHeliyon2405-84402020-04-0164e03656Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azolesAtukuri Dorababu0Corresponding author.; Department of Studies in Chemistry, SRMPP Govt. First Grade College, Huvinahadagali, 583219, Karnataka, IndiaGlobal people are suffering from the legion of diseases. Cytotoxic property of the chemical compound would not solely influence effective drug properties and reduce unnecessary side effects. Proteins/enzymes responsible for microbe proliferation or survival are specifically targeted and inhibited successfully making the cells to undergo apoptosis. Furthermore, isoforms of essential enzymes have distinct physiological functions; thereby inhibition of essential enzyme isoforms is an apt way to the clinical approach of disease neutralization. Drugs are designed so as to play significant roles such as signaling pathways in the oncogenic process including cell proliferation, invasion, and angiogenesis. The present review comprises collective information of the recent synthesis of various organic drug compounds in brief, which could inhibit particular enzyme. The review also covers the correlation of the structure of a drug molecule designed and its inhibitory activity. Also, the most significant enzyme inhibitors are highlighted and structural moieties/core units responsible for remarkable inhibitory values are emphasized.http://www.sciencedirect.com/science/article/pii/S2405844020305016Natural product chemistryOrganic chemistryEnzyme inhibitorsCarbonic anhydraseCOXPyrazole |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Atukuri Dorababu |
spellingShingle |
Atukuri Dorababu Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles Heliyon Natural product chemistry Organic chemistry Enzyme inhibitors Carbonic anhydrase COX Pyrazole |
author_facet |
Atukuri Dorababu |
author_sort |
Atukuri Dorababu |
title |
Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles |
title_short |
Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles |
title_full |
Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles |
title_fullStr |
Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles |
title_full_unstemmed |
Synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles |
title_sort |
synthesis, pharmacological evaluation and structure-activity relationship of recently discovered enzyme antagonist azoles |
publisher |
Elsevier |
series |
Heliyon |
issn |
2405-8440 |
publishDate |
2020-04-01 |
description |
Global people are suffering from the legion of diseases. Cytotoxic property of the chemical compound would not solely influence effective drug properties and reduce unnecessary side effects. Proteins/enzymes responsible for microbe proliferation or survival are specifically targeted and inhibited successfully making the cells to undergo apoptosis. Furthermore, isoforms of essential enzymes have distinct physiological functions; thereby inhibition of essential enzyme isoforms is an apt way to the clinical approach of disease neutralization. Drugs are designed so as to play significant roles such as signaling pathways in the oncogenic process including cell proliferation, invasion, and angiogenesis. The present review comprises collective information of the recent synthesis of various organic drug compounds in brief, which could inhibit particular enzyme. The review also covers the correlation of the structure of a drug molecule designed and its inhibitory activity. Also, the most significant enzyme inhibitors are highlighted and structural moieties/core units responsible for remarkable inhibitory values are emphasized. |
topic |
Natural product chemistry Organic chemistry Enzyme inhibitors Carbonic anhydrase COX Pyrazole |
url |
http://www.sciencedirect.com/science/article/pii/S2405844020305016 |
work_keys_str_mv |
AT atukuridorababu synthesispharmacologicalevaluationandstructureactivityrelationshipofrecentlydiscoveredenzymeantagonistazoles |
_version_ |
1724636197573099520 |