The UI High Throughput Screening Core (HTS) is a new Holden Comprehensive Cancer Center (HCCC) shared research resource that provides a high-throughput platform integrating robotics, detection systems, chemical /biologics libraries, data management, and expertise. HTS provides HCCC members with scalable early, pre-clinical development of therapeutics, including small molecule therapeutics, antibodies, siRNAs, antisense oligonucleotides and other biologics including patient-derived cell therapeutics. It also supports high throughput screening for studies exploring the biology of cancer. The automatic, miniaturized and parallel high-throughput approaches foster hit and lead generation for drug discovery and development through screening of systematic, unbiased large chemical/biologics libraries. These strategies also facilitate molecular probe discovery for mechanism-of-action (MOA) studies of chemical biology through screening of focused intellectually designed compound collections. In addition, these high- throughput approaches aid the interrogation of cells, especially those derived from patients. The HTS was established in 2012 by university sponsors including the HCCC and an NIH S10 Shared Instrumentation grant funding. HTS is equipped to perform high-throughput screening in 96-, 384- and 1536- well formats, with plate reader detection (Perkin-Elmer EnVision) using absorbance, fluorescence and luminescence, including advanced FRET and BRET techniques. HTS can also perform high content screening (HCS, Perkin-Elmer Operetta Confocal Imaging System) to detect and quantify phenotypic changes, i.e. cell differentiation, cell migration, neurite outgrowth, and target trafficking; or by fluorescence intensities for target protein expression, transcription factor or signaling pathway analysis. Systems available in the HTS are integrated with robotics for plate handling and assay execution, suitable for small- or large-scale compound library screens with ?walk-away? levels of automation. HTS currently holds five ?small molecule? libraries containing approximately 140,000 compounds. In addition, HTS is in the process of determining the need and feasibility of obtaining a biologics library, i.e. genome-wide siRNA, antibodies, and diverse cell lines. Overall, HTS is a shared research resource focused on scalable screening approaches for drug discovery and development, and molecular probe discovery for mechanism-of-action studies for cancer investigators across campus and beyond.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA086862-17
Application #
9252409
Study Section
Subcommittee A - Cancer Centers (NCI-A)
Project Start
Project End
Budget Start
2017-04-01
Budget End
2018-03-31
Support Year
17
Fiscal Year
2017
Total Cost
$215,664
Indirect Cost
$74,246
Name
University of Iowa
Department
Type
Domestic Higher Education
DUNS #
062761671
City
Iowa City
State
IA
Country
United States
Zip Code
52246
Guy, Christopher L; Weiss, Elisabeth; Jan, Nuzhat et al. (2018) Technical Note: A method for quality assurance of landmark sets for use in evaluation of deformable image registration accuracy of lung parenchyma. Med Phys :
Vander Weg, Mark W; Coday, Mace; Stockton, Michelle B et al. (2018) Community-based physical activity as adjunctive smoking cessation treatment: Rationale, design, and baseline data for the Lifestyle Enhancement Program (LEAP) randomized controlled trial. Contemp Clin Trials Commun 9:50-59
Paul, Sanjoy; McDonald, W Hayes; Moye-Rowley, W Scott (2018) Negative regulation of Candida glabrata Pdr1 by the deubiquitinase subunit Bre5 occurs in a ubiquitin independent manner. Mol Microbiol 110:309-323
Swami, Umang; Zakharia, Yousef; Zhang, Jun (2018) Understanding Microbiome Effect on Immune Checkpoint Inhibition in Lung Cancer: Placing the Puzzle Pieces Together. J Immunother 41:359-360
Khakhina, Svetlana; Simonicova, Lucia; Moye-Rowley, W Scott (2018) Positive autoregulation and repression of transactivation are key regulatory features of the Candida glabrata Pdr1 transcription factor. Mol Microbiol 107:747-764
Weeks, Kristin S; Kahl, Amanda R; Lynch, Charles F et al. (2018) Racial/ethnic differences in thyroid cancer incidence in the United States, 2007-2014. Cancer 124:1483-1491
Curry, Susan J; Krist, Alex H; Owens, Douglas K (2018) Annual Report to the Nation on the Status of Cancer, Part II: Recent changes in prostate cancer trends and disease characteristics. Cancer :
Marsden, Autumn N; Derry, Sarah W; Schneider, Igor et al. (2018) The Nkd EF-hand domain modulates divergent wnt signaling outputs in zebrafish. Dev Biol 434:63-73
Rafiullah; Ali, Asad; Mohiuddin, Hafsa et al. (2018) Innovations in the Management of Hepatocellular Carcinoma. Am J Ther 25:e362-e368
Beadle, Beth M; Anderson, Carryn M (2018) CTV Guidance for Head and Neck Cancers. Int J Radiat Oncol Biol Phys 100:903-905

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