GDUFA Research Outcomes
Quantitative Methods & Models
The Generic Drug User Fee Amendments (GDUFA) science and research program facilitates patient access to high-quality generic drugs by advancing research in areas where generic product development has been limited or prevented due to knowledge gaps about the kind of evidence needed to demonstrate that a generic product is the same as its brand name reference listed drug product. Leaders and experts across the generic industry collaborate to establish GDUFA research priorities for the most pressing scientific challenges they face with generic product development. Scientists and clinicians from industry, academia, and the U.S. Food and Drug Administration (FDA) strategically design research in these areas so that the outcomes help to build scientific bridges across the knowledge gaps, thereby facilitating pharmaceutical manufacturers to develop generic drugs that were previously challenging or unfeasible to develop.
A major GDUFA science and research priority is to facilitate the utility of model-integrated evidence (MIE) to support demonstrations of bioequivalence (BE). The advancement of research in this area focuses on developing tools and advancing approaches to integrate complementary in silico (modeling), in vivo, and in vitro evidence in ways that collectively mitigate the risk of failure modes for BE and support a framework for virtual BE studies. For example, while it may not be feasible to adequately characterize the long-term bioavailability of drugs from LAI products using in vivo or in vitro methods alone, it may be feasible to integrate limited in vivo and in vitro data with PBPK models that generate the remaining evidence needed to support a demonstration of BE. This area includes research on the use of MIE to evaluate failure modes for BE and to optimize the design of BE studies.
Outcomes including scientific publications, presentations, and posters arising from GDUFA-funded research in this priority area are available in this section.
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Development of an In Vitro Method for In Vivo Prediction of Regional Deposition of Nasal Powders
Holtgrewe, Nicholas; Walenga, Ross; Bielski, Elizabeth; Guo, Changning
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Mechanistic In Vitro Oral Absorption Model to Predict Mucosal Permeability of Oral Cavity Drug Products
Kalra, Priyata; Lukacova, Viera; Dwivedi, Pankaj; Khondoker, Alam; Tsakalozou, E; Pauletti, Giovanni; Zhou, Haiying
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Application of Physiologically Based Pharmacokinetic Modeling to Support Bioequivalence Evaluation of Mesalamine Delayed Release Tablets
Thomas, Sherin; Wu, Fang; Zhao, Liang; Fang, Lanyan
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Clinical Ocular Exposure Extrapolation Using PBPK Modeling and Simulation: Ofloxacin Ointment Case Study
Alqaraghuli, Farah; Le Merdy, Maxime; Tan, Ming-Liang; Lukacova, V
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Identify Biopredictive Dissolution for Predicting In Vivo Performance of a BCS II Drug Product Under Fed Conditions
Du, Ping; Fang, Lanyan; Zhao, Liang; Wu, Fang
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Mapping Skin Properties in Psoriasis for Improved Understanding of Topical Absorption
Mangion, SE; Dalton, JK; Mackenzie, L; Tsakalozou, Eleftheria; Clarke, JF; Polak, Sebastian; Roberts, Michael
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PBPK Modeling to Predict the Effect of Gastric pH on Bioequivalence of Dabigatran Etexilate Capsules
Pal, Arindom; Mousa, Youssef; Fang, Lanyan; Zhao, Liang; Wu, Fang
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Understanding the Impact of Disease on Pediatric Regional Intranasal Drug Delivery with Nasal Sprays
Hejazi, Mohammad; Owen, Xiomara; Wilkins, John; Schuman, Theodore; Hindle, Michael; Longest, Worth; Walenga, Ross; Kaviratna, Anubhav; Newman, Bryan; Golshahi, Laleh
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Formulation Effects of Marketed Oral Cavity Products on In Vitro Buccal Permeability
Dwivedi, Pankaj; Alam, Khondoker; Tsakalozou, Eleftheria; Al Ghabeish, Manar; Pauletti, Giovanni
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Sensitivity of Charcoal Block PK Metrics to Differences in Regional Deposition for Budesonide and Formoterol Fumarate Dihydrate
Walenga, Ross; Tsakalozou, Eleftheria; Chopski, Steven; Fang, Lanyan; Zhao, Liang