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Nanomechanics of Drug-target Interactions and Antibacterial Resistance Detection
Published on: October 25, 2013
Medicinal Chemistry of Inhibitors Targeting Resistant Bacteria
Kadja Luana Chagas Monteiro1, Osmar Nascimento Silva2, Igor José Dos Santos Nascimento1
1Research Group on Therapeutic Strategies - GPET, Laboratory of Synthesis and Research in Medicinal Chemistry - LSPMED, Institute of Chemistry and Biotechnology, Federal University of Alagoas, 57072-970, Maceió, Alagoas, Brazil.
Abstract:
The discovery of antibiotics was a revolutionary feat that provided countless health benefits. The identification of penicillin by Alexander Fleming initiated the era of antibiotics, represented by constant discoveries that enabled effective treatments for the different classes of diseases caused by bacteria. However, the indiscriminate use of these drugs allowed the emergence of resistance mechanisms of these microorganisms against the available drugs. In addition, the constant discoveries in the 20th century generated a shortage of new molecules, worrying health agencies and professionals about the appearance of multidrug-resistant strains against available drugs. In this context, the advances of recent years in molecular biology and microbiology have allowed new perspectives in drug design and development, using the findings related to the mechanisms of bacterial resistance to generate new drugs that are not affected by such mechanisms and supply new molecules to be used to treat resistant bacterial infections. Besides, a promising strategy against bacterial resistance is the combination of drugs through adjuvants, providing new expectations in designing new antibiotics and new antimicrobial therapies. Thus, this manuscript will address the main mechanisms of bacterial resistance under the understanding of medicinal chemistry, showing the main active compounds against efflux mechanisms, and also the application of the use of drug delivery systems, and finally, the main potential natural products as adjuvants or with promising activity against resistant strains.
Insights
Antibiotic resistance is a growing threat due to overuse. New strategies, including drug combinations and natural products, are crucial for developing novel treatments against resistant bacteria.
Area of Science:
- Microbiology
- Medicinal Chemistry
- Pharmacology
Background:
- Antibiotics revolutionized medicine, but widespread use has led to bacterial resistance.
- A decline in new antibiotic discoveries exacerbates the threat of multidrug-resistant strains.
- Emerging resistance necessitates innovative approaches to antimicrobial drug development.
Purpose of the Study:
- To explore bacterial resistance mechanisms from a medicinal chemistry perspective.
- To identify new therapeutic strategies against resistant bacterial infections.
- To review novel compounds, drug delivery systems, and natural products for combating antibiotic resistance.
Main Methods:
- Analysis of bacterial resistance mechanisms, focusing on efflux pumps.
- Investigation of medicinal chemistry principles in designing new antibacterial agents.
- Evaluation of drug delivery systems and natural products as potential antimicrobial therapies.
Main Results:
- Identified key active compounds targeting bacterial efflux mechanisms.
- Highlighted the role of drug delivery systems in enhancing antimicrobial efficacy.
- Showcased promising natural products with adjuvant or direct antimicrobial activity.
Conclusions:
- Medicinal chemistry and advanced drug delivery offer new avenues to overcome bacterial resistance.
- Natural products represent a valuable resource for developing next-generation antibiotics and therapies.
- Integrated strategies combining novel compounds, adjuvants, and delivery systems are essential for future antimicrobial treatments.
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