Halogen atoms in the modern medicinal chemistry hints for the drug design form 2025

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Excitingly, 16 out of 50 are halogen-containing drugs, indicated to diagnose, mitigate and treat the various human diseases. Among halogens, fluorine and chlorine are highly prevalent in drug discovery and development.
However, halogens in drug - target complexes influence several processes rather than steric aspects alone. For example, the formation of halogen bonds in ligand-target complexes is now recognized as a kind of intermolecular interaction that favorably contributes to the stability of ligand-target complexes.
Medicinal chemists also play a critical role in developing drug delivery systems. They develop formulations and delivery methods that improve the efficacy and safety of drugs. They develop drug delivery systems targeting specific tissues or cells, thereby reducing side effects and improving therapeutic outcomes.
Halogens are also used in the pharmaceutical industry because they can enhance the binding affinity of a drug to its target. This is because halogens can form strong, stable bonds with other atoms, which can help to increase the potency of a drug.
Chlorine and iodine are the halogens most widely used for inactivating microorganisms. Compounds containing chlorine and iodine are, in general, equally effective in destroying vegetative cells, but chlorine compounds are more effective in inactivating spores.
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halogen, any of the six nonmetallic elements that constitute Group 17 (Group VIIa) of the periodic table. The halogen elements are fluorine (F), chlorine (Cl), bromine (Br), iodine (I), astatine (At), and tennessine (Ts).
Structure based drug design (SBDD) and ligand based drug design (LBDD) are the two general types of computer-aided drug design (CADD) approaches in existence.

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