GDUFA Research Outcomes
Complex Routes of Delivery
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 enhance the efficiency of bioequivalence (BE) approaches for complex routes of delivery, such as locally-acting gastrointestinal (GI), buccal, sublingual, inhalation, nasal, ophthalmic, otic, and topical dermatological, vaginal and rectal products. The advancement of research in this area focuses on understanding of how ingredients and other aspects of a formulation influence drug absorption via complex routes of delivery, building in vivo predictive models and identifying corresponding failure modes for BE, to support the development of efficient BE approaches for these products.
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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The Use of Atomic Force Microscope0Infrared Spectroscopy to Assess Co-Localization of Fluticasone/ Salmeterol/ Lactose in Advair Diskus� 100/50 Formulations
Joseph, B; Khanal, D; Bielski, Elizabeth; Newman, Bryan; Yilmaz, H; Ahmed, S; Boc, Susan; Chan, H; Banaszak Holl, M
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Microstructural Characterization of Dry Powder Inhaler Formulations Using Orthogonal Analytical Techniques
Farias, Goncalo; Ganley, William; Price, Robert; Conti, Denise S; Mangal, Sharad; Bielski, Elizabeth; Newman, Bryan; Shur, Jagdeep
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Characterizing Adasuve� (Loxapine, 10 mg) Inhalation Powder Particle Size Distribution Using Laser Diffraction
Reed, Nathan; Lee, Y; Ballard, Betsy; Feibus, Katharine; Luke, Markham; Changning, Guo
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Characterization of Spray-dried Phospholipid Porous Particles for Inhalation Drug Delivery
Wanasathop, Apipa; Sonju, Jafrin Jobayer; Boc, Susan; Mohan, Abhinav R; Dhapare, Sneha; Bielski, Elizabeth; Newman, Bryan; Ashraf, Muhammad; Xu, Xiaoming; Yang, Yang
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Determining Topical Product Bioequivalence with Stimulated Raman Scattering Microscopy
Iliopoulos, Fotis; Tu, Dandan; Pence, Isaac J; Li, Xiaolei; Ghosh, Priyanka; Luke, Markham; Raney, Sam G.; Rantou, Eleni; Evans, Conor L
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Evaluation of Chemical Disposition in Skin by Stimulated Raman Scattering Microscopy
Zarmpi, P; Tsikritis, D; Vorng, J-L; Belsey, NA; Bunge, AL; Woodman, TJ; Begona Delgado-Charro, M; Guy, R H
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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, C
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Nasal Steroid Spray Simulations Using Measured Spray Characteristics in Healthy and Rhinitic Nasal Passages
Kimbell, J S; Garcia, G J M; Schroeter, J D; Sheth, P; Vallorz-III, E L; Saluja, B; Babiskin, A H; Tian, G; Walenga, R L
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Confocal Raman Spectroscopic Characterization of Dermatopharmacokinetics Ex Vivo
Zarmpi, Panagiota; Maciel-Tabosa, MA; Vitry, Pauline; Bunge, Annette; Belsey, Natalie; Tsikritsis, Dimitrios; Woodman, Timothy; Delgado-Charro, M Begona; Guy, Richard
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Reverse Engineering the Ozurdex Dexamethasone Intravitreal Implant
Costello, Mark; Liu, J; Wang, Yan; Bin, Qin; Xu, Xiaoming; Li, Qi; Lynd, Nathaniel A; Zhang, F