Abstract
Cytochromes P450 are members of a superfamily of hemoproteins that catalyze a variety of oxidative reactions in the metabolism of endogenous and exogenous hydrophobic substrates. Fifty-eight cytochrome P450 (CYP) isoenzymes belonging to 18 families have been identified in human cells; the corresponding genes are highly polymorphic, and genetic variability underlies interindividual differences in drug response. The polymorphisms of CYP2D6 significantly affect the pharmacokinetics of about 50% of the drugs in clinical use, which are CYP2D6 substrates. The number of functional CYP2D6 alleles per genome determines the existence of four different phenotypes, i.e. poor, intermediate, extensive, and ultrarapid metabolizers. CYP2D6 genetic variants include copy number variations, single nucleotide substitutions, frameshift and insertion/deletion mutations. This review reports some of the different methodological approaches used to screen for CYP2D6 variants and focuses on methods that have improved variation detection, from conventional techniques to more recent microarray technology and high throughput DNA sequencing. In addition, this review reports some results on clinical relevance of CYP2D6 polymorphisms and provides examples of variability in drug response associated with interindividual phenotypic differences.
Keywords: Clinical outcome, CYP2D6 polymorphisms, customized therapy, drug metabolism, genotyping techniques, interindividual variability, phenotypes
Current Drug Metabolism
Title: How and Why to Screen for CYP2D6 Interindividual Variability in Patients Under Pharmacological Treatments
Volume: 11 Issue: 3
Author(s): Manuela De Gregori, Massimo Allegri, Simona De Gregori, Giulia Garbin, Carmine Tinelli, Mario Regazzi, Stefano Govoni and Guglielmina Nadia Ranzani
Affiliation:
Keywords: Clinical outcome, CYP2D6 polymorphisms, customized therapy, drug metabolism, genotyping techniques, interindividual variability, phenotypes
Abstract: Cytochromes P450 are members of a superfamily of hemoproteins that catalyze a variety of oxidative reactions in the metabolism of endogenous and exogenous hydrophobic substrates. Fifty-eight cytochrome P450 (CYP) isoenzymes belonging to 18 families have been identified in human cells; the corresponding genes are highly polymorphic, and genetic variability underlies interindividual differences in drug response. The polymorphisms of CYP2D6 significantly affect the pharmacokinetics of about 50% of the drugs in clinical use, which are CYP2D6 substrates. The number of functional CYP2D6 alleles per genome determines the existence of four different phenotypes, i.e. poor, intermediate, extensive, and ultrarapid metabolizers. CYP2D6 genetic variants include copy number variations, single nucleotide substitutions, frameshift and insertion/deletion mutations. This review reports some of the different methodological approaches used to screen for CYP2D6 variants and focuses on methods that have improved variation detection, from conventional techniques to more recent microarray technology and high throughput DNA sequencing. In addition, this review reports some results on clinical relevance of CYP2D6 polymorphisms and provides examples of variability in drug response associated with interindividual phenotypic differences.
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Cite this article as:
De Gregori Manuela, Allegri Massimo, De Gregori Simona, Garbin Giulia, Tinelli Carmine, Regazzi Mario, Govoni Stefano and Nadia Ranzani Guglielmina, How and Why to Screen for CYP2D6 Interindividual Variability in Patients Under Pharmacological Treatments, Current Drug Metabolism 2010; 11 (3) . https://dx.doi.org/10.2174/138920010791196274
DOI https://dx.doi.org/10.2174/138920010791196274 |
Print ISSN 1389-2002 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5453 |
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