Molecular hybridization: a powerful tool for multitarget drug discovery

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Abstract

INTRODUCTION: The current drug discovery paradigm of 'one drug, multiple targets' has gained attention from both the academic medicinal chemistry community and the pharmaceutical industry. This is in response to the urgent need for effective agents to treat multifactorial chronic diseases. The molecular hybridization strategy is a useful tool that has been widely explored, particularly in the last two decades, for the design of multi-target drugs. AREAS COVERED: This review examines the current state of molecular hybridization in guiding the discovery of multitarget small molecules. The article discusses the design strategies and target selection for a multitarget polypharmacology approach to treat various diseases, including cancer, Alzheimer's disease, cardiac arrhythmia, endometriosis, and inflammatory diseases. EXPERT OPINION: Although the examples discussed highlight the importance of molecular hybridization for the discovery of multitarget bioactive compounds, it is notorious that the literature has focused on specific classes of targets. This may be due to a deep understanding of the pharmacophore features required for target binding, making targets such as histone deacetylases and cholinesterases frequent starting points. However, it is important to encourage the scientific community to explore diverse combinations of targets using the molecular hybridization strategy.

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endometriosis

MeSH descriptors

Alzheimer Disease Alzheimer Disease Alzheimer Disease Alzheimer Disease Alzheimer Disease Alzheimer Disease Alzheimer Disease Alzheimer Disease Alzheimer Disease Alzheimer Disease Drug Discovery Drug Discovery Drug Discovery Drug Discovery Drug Discovery Drug Discovery Drug Discovery Drug Discovery Drug Design Drug Design

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europepmc
last seen: 2026-06-28T06:08:18.748782+00:00
pubmed
last seen: 2026-06-28T06:06:34.684636+00:00
unpaywall
last seen: 2026-05-14T19:30:52.867331+00:00
License: public-domain-us · commercial use OK · attribution required
Courtesy of the U.S. National Library of Medicine