Dr. Katrin Sangkuhl is a scientific curator at PharmGKB, the online pharmacogenomics knowledge base (www.pharmgkb.org). In this tutorial, Dr. Sangkuhl gives an introduction to the topic of pharmacogenomics - the impact of genetics on drug response. She reviews several pharmacogenetics examples, including codeine/CYP2D6 and clopidogrel/CYP2C19, and provides an overview of the PharmGKB website. The tutorial ends with a description of the clinical relevance of pharmacogenomics testing.
To view the video click here.
Thursday, May 31, 2012
Tuesday, May 29, 2012
Curators Favorite Papers
The current Curators Favorite Papers are about the pharmacogenetics of statins. The review by Postmus et al. discusses achievements, whole-genome analyses and future perspectives [PMID: 22594514]. Van der Baan et al. investigate the value of pharmacogenetic testing in predicting statin response using data from the REGRESS trail [PMID: 22547143]. The Clinical Pharmacogenomics Implementation Consortium published a guideline for SLCO1B1 and simvastatin-induced myopathy [PMID: 22617227].
Friday, May 25, 2012
CPIC publishes guideline for SLCO1B1 and simvastatin-induced myopathy
Statins are among the most commonly prescribed drugs in the world to treat hypercholesterolemia and prevent cardiovascular diseases. They effectively lower cholesterol levels by inhibiting the HMG-CoA reductase, the rate limiting enzyme involved in cholesterol formation. Though well tolerated in general, statins can lead to myopathy with symptoms ranging from mild muscle pain to fatal rhabdomyolysis, especially when they are administered at higher doses and with certain other medications. A common coding SNP, rs4149056, in SLCO1B1 gene has been significant associated with marked increase in systemic exposure to simvastatin and risk of muscle toxicity. The overall effect size and significance of this association were striking for simvastatin with an odds ratio for myopathy of 4.5 (95% CI, 2.6 to 7.7) per copy of the C allele and 16.9 (95% CI, 4.7 to 61.1) among CC homozygotes as compared with the TT genotype (PMID:18650507).
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The Clinical Pharmacogenetics Implementation Consortium (CPIC) has published the clinical dosing guideline for SLCO1B1 genotype and simvastatin dosing in Journal Clinical pharmacology & Therapeutics. This guideline explores the relationship between rs4149056 (c.521T>C, p.V174A, SLCO1B1*5) and clinical outcome for all statins. Given that the evidence linking myopathy to rs4149056 in SLCO1B1 is more compelling for simvastatin than for any other statin, this guideline presents dosing recommendations for simvastatin only. This guideline represents the 6th publication from CPIC. All CPIC guidelines are simultaneously published and updated on PharmGKB.
To find out more,
Please see here for article and supplement.
Please see here for a complete list of CPIC publications and here for CPIC Drug-Gene Pairs..
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The Clinical Pharmacogenetics Implementation Consortium (CPIC) has published the clinical dosing guideline for SLCO1B1 genotype and simvastatin dosing in Journal Clinical pharmacology & Therapeutics. This guideline explores the relationship between rs4149056 (c.521T>C, p.V174A, SLCO1B1*5) and clinical outcome for all statins. Given that the evidence linking myopathy to rs4149056 in SLCO1B1 is more compelling for simvastatin than for any other statin, this guideline presents dosing recommendations for simvastatin only. This guideline represents the 6th publication from CPIC. All CPIC guidelines are simultaneously published and updated on PharmGKB.
To find out more,
Please see here for article and supplement.
Please see here for a complete list of CPIC publications and here for CPIC Drug-Gene Pairs..
Labels:
cpic
Tuesday, May 22, 2012
Vitamin D receptor (VDR) polymorphisms and treatment responses
Due to the pleiotropic effect exerted by the 1,25-dihydroxyvitamin D3–VDR complex, genetic variants in VDR have been found to be associated with a wide variety of diseases and phenotypes, including various cancer, asthma, calcium absorption, bone mineral density (BMD) and hyperparathyroidism. They have also been linked to therapeutic responses to vitamin D and calcium supplements, antiresorptive treatments, calcipotriol and dexamethasone.
Find out more...
View our new VDR VIP with links to important variants, associated drug responses, mapping and publications.Read our new VDR VIP Summary publication.
Labels:
vip
SFSU Personalized Medicine Conference - the role of epigenetics
See you at the San Francisco State University Personalized Medicine Conference 5.0, which this year focuses on epigenetics with speakers from academia and industry.
Thursday 24th May, 8:00am-7:30pm
South San Francisco Conference Center
Thursday 24th May, 8:00am-7:30pm
South San Francisco Conference Center
Labels:
conference
Friday, May 18, 2012
Bay Area Biotechnology Symposium - Pharmaceuticals for the Future
UCSF School of Pharmacy, Industry Outreach Program is hosting a Bay Area Biotechnology Symposium tomorrow discussing the problems and solutions of developing Pharmaceuticals for the Future.
It is open to all audiences...see you there!
Saturday 19th May 2012 9:00am to 1:00pm
Genentech Hall, Byers Auditorium, UCSF Mission Bay Campus, San Francisco.
It is open to all audiences...see you there!
Saturday 19th May 2012 9:00am to 1:00pm
Genentech Hall, Byers Auditorium, UCSF Mission Bay Campus, San Francisco.
Labels:
conference
Monday, May 14, 2012
Curators Favorite Papers
The current Curators Favorite Papers are selected around pharmacogenetics of smoking cessation and nicotine metabolism. The review by Gold & Lerman [PMID: 22290489] discusses evidence for the association of cholinergic and nicotine metabolism gene variations with smoking cessation and therapeutic response. The article by Binnington et al. [PMID: 22569203] studied variants in the CYP2A6 and CYP2B6 gene in association with nicotine metabolism in Alaska Native people. The role of the CYP2A6 gene and its variation in the metabolism of several drugs is summarized in the review by McDonagh et al. [PMID: 22547082].
The PharmGKB Pharmacokinetic and Pharmacodynamic Nicotine Pathways illustrate where the above mentioned gene are involved in nicotine metabolism and action.
The PharmGKB Pharmacokinetic and Pharmacodynamic Nicotine Pathways illustrate where the above mentioned gene are involved in nicotine metabolism and action.
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