Quinoline Derivatives as Promising Scaffolds for Antitubercular Activity: A Comprehensive Review

Heterocyclic compounds and their derivatives play a significant role in the design and development of novel quinoline drugs. Among the various pharmacologically active heterocyclic compounds, quinolines stand out as the most significant rings due to their broad pharmacological roles, specifically an...

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Published inMini reviews in medicinal chemistry Vol. 24; no. 13; p. 1238
Main Authors Owais, Mohammad, Kumar, Arun, Hasan, Syed Misbahul, Singh, Kuldeep, Azad, Iqbal, Hussain, Arshad, Suvaiv, Akil, Mohd
Format Journal Article
LanguageEnglish
Published Netherlands 2024
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Abstract Heterocyclic compounds and their derivatives play a significant role in the design and development of novel quinoline drugs. Among the various pharmacologically active heterocyclic compounds, quinolines stand out as the most significant rings due to their broad pharmacological roles, specifically antitubercular activity, and their presence in plant-based compounds. Quinoline is also known as benzpyridine, benzopyridine, and 1-azanaphthalene. It has a benzene ring fused with a pyridine ring, and both rings share two carbon atoms. The importance of quinoline lies in its incorporation as a key component in various natural compounds found in medicinal plant families like , and others. This article is expected to have a significant impact on the advancement of effective antitubercular drugs. Through harnessing the potent activity of quinoline derivatives, the research aims to make valuable contributions to combating tuberculosis more efficiently and ultimately reducing the global burden of this infectious disease. Numerous nitrogen-containing heterocyclic compounds exhibit significant potential as antitubercular agents. These chemicals have fused aromatic nitrogen-heterocyclic nuclei that can change the number of electrons they have, which can change their chemical, physical, and biological properties. This versatility comes from their ability to bind with the receptors in multiple modes, a critical aspect of drug pharmacological screening. Among these compounds, quinoline stands out as it incorporates a stable fusion of a benzene ring with a pyridine nucleus. Quinolines have demonstrated a diverse range of pharmacological activities, including but not limited to anti-tubercular, anti-tumor, anticoagulant, anti-inflammatory, antioxidant, antiviral, antimalarial, anti-HIV, and antimicrobial effects. Some molecules, such as lone-paired nitrogen species, include pyrrole, pyrazole, and quinoline. These molecules contain nitrogen and take part in metabolic reactions with other molecules inside the cell. However, an excessive accumulation of reactive nitrogen species can lead to cytotoxicity, resulting in damage to essential biological macromolecules. Among these compounds, quinoline stands out as the oldest and most effective one, exhibiting a wide range of significant properties such as antitubercular, antimicrobial, anti-inflammatory, antioxidant, analgesic, and anticonvulsant activities. Notably, naturally occurring quinoline compounds, such as quinine, have proven to be potent antimalarial drugs. This review highlights quinoline derivatives' antitubercular potential, emphasizing recent research advancements. Utilizing IC values, the study emphasizes the efficacy of various quinoline substitutions, hybrids, and electron-withdrawing groups against . Continued research is essential for developing potent, low-toxicity quinoline derivatives to combat tuberculosis.
AbstractList Heterocyclic compounds and their derivatives play a significant role in the design and development of novel quinoline drugs. Among the various pharmacologically active heterocyclic compounds, quinolines stand out as the most significant rings due to their broad pharmacological roles, specifically antitubercular activity, and their presence in plant-based compounds. Quinoline is also known as benzpyridine, benzopyridine, and 1-azanaphthalene. It has a benzene ring fused with a pyridine ring, and both rings share two carbon atoms. The importance of quinoline lies in its incorporation as a key component in various natural compounds found in medicinal plant families like , and others. This article is expected to have a significant impact on the advancement of effective antitubercular drugs. Through harnessing the potent activity of quinoline derivatives, the research aims to make valuable contributions to combating tuberculosis more efficiently and ultimately reducing the global burden of this infectious disease. Numerous nitrogen-containing heterocyclic compounds exhibit significant potential as antitubercular agents. These chemicals have fused aromatic nitrogen-heterocyclic nuclei that can change the number of electrons they have, which can change their chemical, physical, and biological properties. This versatility comes from their ability to bind with the receptors in multiple modes, a critical aspect of drug pharmacological screening. Among these compounds, quinoline stands out as it incorporates a stable fusion of a benzene ring with a pyridine nucleus. Quinolines have demonstrated a diverse range of pharmacological activities, including but not limited to anti-tubercular, anti-tumor, anticoagulant, anti-inflammatory, antioxidant, antiviral, antimalarial, anti-HIV, and antimicrobial effects. Some molecules, such as lone-paired nitrogen species, include pyrrole, pyrazole, and quinoline. These molecules contain nitrogen and take part in metabolic reactions with other molecules inside the cell. However, an excessive accumulation of reactive nitrogen species can lead to cytotoxicity, resulting in damage to essential biological macromolecules. Among these compounds, quinoline stands out as the oldest and most effective one, exhibiting a wide range of significant properties such as antitubercular, antimicrobial, anti-inflammatory, antioxidant, analgesic, and anticonvulsant activities. Notably, naturally occurring quinoline compounds, such as quinine, have proven to be potent antimalarial drugs. This review highlights quinoline derivatives' antitubercular potential, emphasizing recent research advancements. Utilizing IC values, the study emphasizes the efficacy of various quinoline substitutions, hybrids, and electron-withdrawing groups against . Continued research is essential for developing potent, low-toxicity quinoline derivatives to combat tuberculosis.
Author Hasan, Syed Misbahul
Suvaiv
Kumar, Arun
Akil, Mohd
Singh, Kuldeep
Hussain, Arshad
Azad, Iqbal
Owais, Mohammad
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  organization: Department of Chemistry, Integral University, Kursi Road, Lucknow 226026 (U.P.), India
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Issue 13
Keywords quinoline
Tuberculosis
isoniazid
mycobacterium tuberculosis
HIV
heterocyclic compounds
Language English
License Copyright© Bentham Science Publishers; For any queries, please email at epub@benthamscience.net.
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Snippet Heterocyclic compounds and their derivatives play a significant role in the design and development of novel quinoline drugs. Among the various...
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StartPage 1238
SubjectTerms Animals
Antitubercular Agents - chemistry
Antitubercular Agents - pharmacology
Humans
Microbial Sensitivity Tests
Molecular Structure
Mycobacterium tuberculosis - drug effects
Quinolines - chemistry
Quinolines - pharmacology
Title Quinoline Derivatives as Promising Scaffolds for Antitubercular Activity: A Comprehensive Review
URI https://www.ncbi.nlm.nih.gov/pubmed/38185891
Volume 24
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