The role of pharmacokinetics (PK) and pharmacodynamics (PD) has increased dramatically as anticancer drug discovery and development has shifted towards molecularly-targeted therapies. Increased appreciation of PKJPD relationships has resulted in increased emphasis on generating and analyzing such data, even for agents without defined molecular targets. Increased recognition of drug-drug interactions and pharmaco-genetic differences in drug metabolism, disposition, and susceptibility has increased the need for assays to define relevant polymorphisms and their clinical impact. The Clinical Pharmacology Analytical Facility (CPAF) was established in 1994 to provide state-of-the-art pharmacology research facilities for the University of Pittsburgh Cancer Institute (UPCI). The CPAF relocated in September 2002 to 1,000 square feet of laboratory space in the Research Pavilion of the Hillman Cancer Center. The CPAF supports preclinical and clinical pharmacology research programs. Services include quantitation of drugs, metabolites, and other materials; identification of metabolites; and PK and PD analyses of anticancer agents that are undergoing clinical trials at UPCI. The CPAF also phenotypes and genotypes cytochrome P450 isoforms and other key drug-metabolizing enzymes. It provides important consultative services to UPCI investigators, on the design of pharmacologic studies and drug assay, metabolism, and PK analyses. The CPAF is directed by Dr. Merrill J. Egorin, with input from Dr. Robert Bies. The Facility is overseen by an advisory committee, representing the Schools of Medicine and Pharmacy, and the Biostatistics Facility. During the past year, the CPAF has provided support for 29 clinical trials at UPCI, 14 CTEP-sponsored clinical trials at other NCI-designated cancer centers, and 54 animal pharmacology projects. It also provided analytical chemistry support for 3 in vitro, pharmacology studies. To expand its capabilities and increase its value, the CPAF has enhanced substantially its analytical chemistry instrumentation, its PK modeling software, and its personnel. The Facility has acquired two LC/MS instruments and an LC/MS/MS. The CPAF was recognized by Pharsight Corporation as a Center of Pharmaeokinetic Excellence, thereby allowing it to implement sophisticated software. The requested CCSG funding will support Facility personnel for their efforts in providing consultative services related to assay development, methodology, protocol design, and data interpretation, and their efforts in ensuring that instrumentation and software are suitably maintained and available for application to projects by investigators seeking support from the Facility.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA047904-18
Application #
7111830
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2005-08-01
Budget End
2006-07-31
Support Year
18
Fiscal Year
2005
Total Cost
$46,534
Indirect Cost
Name
University of Pittsburgh
Department
Type
DUNS #
004514360
City
Pittsburgh
State
PA
Country
United States
Zip Code
15213
Ancevski Hunter, Katerina; Socinski, Mark A; Villaruz, Liza C (2018) PD-L1 Testing in Guiding Patient Selection for PD-1/PD-L1 Inhibitor Therapy in Lung Cancer. Mol Diagn Ther 22:1-10
Luu, Thehang; Kim, Kyu-Pyo; Blanchard, Suzette et al. (2018) Phase IB trial of ixabepilone and vorinostat in metastatic breast cancer. Breast Cancer Res Treat 167:469-478
Menk, Ashley V; Scharping, Nicole E; Moreci, Rebecca S et al. (2018) Early TCR Signaling Induces Rapid Aerobic Glycolysis Enabling Distinct Acute T Cell Effector Functions. Cell Rep 22:1509-1521
Redner, Robert L; Beumer, Jan H; Kropf, Patricia et al. (2018) A phase-1 study of dasatinib plus all-trans retinoic acid in acute myeloid leukemia. Leuk Lymphoma 59:2595-2601
Shayan, Gulidanna; Kansy, Benjamin A; Gibson, Sandra P et al. (2018) Phase Ib Study of Immune Biomarker Modulation with Neoadjuvant Cetuximab and TLR8 Stimulation in Head and Neck Cancer to Overcome Suppressive Myeloid Signals. Clin Cancer Res 24:62-72
Frahm, Krystle A; Waldman, Jacob K; Luthra, Soumya et al. (2018) A comparison of the sexually dimorphic dexamethasone transcriptome in mouse cerebral cortical and hypothalamic embryonic neural stem cells. Mol Cell Endocrinol 471:42-50
Pulopulos, Matias M; Vanderhasselt, Marie-Anne; De Raedt, Rudi (2018) Association between changes in heart rate variability during the anticipation of a stressful situation and the stress-induced cortisol response. Psychoneuroendocrinology 94:63-71
Shiffman, Saul; Scholl, Sarah M (2018) Three approaches to quantifying cigarette consumption: Data from nondaily smokers. Psychol Addict Behav 32:249-254
Samuelsson, Laura B; Bovbjerg, Dana H; Roecklein, Kathryn A et al. (2018) Sleep and circadian disruption and incident breast cancer risk: An evidence-based and theoretical review. Neurosci Biobehav Rev 84:35-48
Chen, Dongshi; Ni, Hong-Min; Wang, Lei et al. (2018) PUMA induction mediates acetaminophen-induced necrosis and liver injury. Hepatology :

Showing the most recent 10 out of 1187 publications