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Current Status and Structure Activity Relationship of Privileged Azoles as Antifungal Agents (2016-2020)
A Ahmadi1, E Mohammadnejadi1, P Karami2
1Students Research Committee, School of Pharmacy, Ardabil University of Medical Sciences, Ardabil, Iran.
Abstract:
Fungal infections have greatly contributed to infectious-related deaths in the past century. This issue has become worse with the advent of immunity-impairing conditions such as HIV. The eukaryote nature of fungal pathogens makes them harder to eradicate than bacterial infections. Given the importance of the problem, considerable efforts have been made to the synthesis and biological assessment of azole-based chemical scaffolds and their bioisosteres. The emergence of validated macromolecular targets within different fungal species has inspired structure-based drug design strategies toward diverse azole-based agents. Despite advantageous features, the emergence of drug-resistant fungal species has restricted the applicability of current azoles as first-line antifungal agents. Consequently, it appears advisable to elucidate the structure activity relationships (SAR) and chemical biodiversity within antifungal azoles. This review is devoted to a brief look at clinically applied drugs, structure-based classification of azole antifungals and their SAR. The reviewed molecules belong to the antifungal structures that were reported throughout 2016-2020.
Insights
Antifungal azoles are crucial for treating fungal infections, but resistance is rising. This review explores azole antifungals, their structure-activity relationships (SAR), and recent developments (2016-2020) to combat resistance.
Area of Science:
- Medicinal Chemistry
- Mycology
- Pharmacology
Background:
- Fungal infections cause significant mortality, exacerbated by conditions like HIV.
- Eukaryotic fungal pathogens are inherently difficult to eradicate.
- Azole antifungals are vital, but drug resistance necessitates new strategies.
Purpose of the Study:
- To review clinically applied azole antifungal drugs.
- To classify azole antifungals based on structure.
- To elucidate structure-activity relationships (SAR) of antifungal azoles.
Main Methods:
- Literature review of antifungal azoles reported between 2016-2020.
- Structure-based classification of azole compounds.
- Analysis of structure-activity relationships (SAR).
Main Results:
- Overview of current azole antifungal agents.
- Classification of azoles based on molecular structure.
- Detailed SAR analysis highlighting key structural features for antifungal activity.
Conclusions:
- Understanding SAR is critical for developing new azole antifungals.
- Addressing drug resistance requires continued research into azole chemical diversity.
- Recent advancements (2016-2020) offer insights into novel antifungal azole design.
Related Concept Videos
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Structure-Activity Relationships and Drug Design
SAR studies the intricate relationship between a drug's chemical structure and biological activity. It focuses on understanding how modifications to a drug's structure can influence...

