Catherine K. Yeung, Ph.D.

Affiliations: 
2005 University of Washington, Seattle, Seattle, WA 
Area:
Pharmaceutical Chemistry, Pharmacy
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"Catherine Yeung"
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Allan E. Rettie grad student 2005 University of Washington
 (Structure and function of the human FMOs: Tissue localization, comparative modeling, and kinetic parameters of FMO3 allelic variants.)
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Publications

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Yeung C, Jones-Isaac K, Lindberg K, et al. (2023) Development of a Kidney Microphysiological System Hardware Platform for Microgravity Studies. Research Square
Kelly E, Lindberg K, Jones-Isaac K, et al. (2023) Impact of microgravity on a three-dimensional microphysiologic culture of the human kidney proximal tubule epithelium: cell response to serum and vitamin D. Research Square
Chang SY, Huang W, Chapron A, et al. (2023) Incorporating Uremic Solute-mediated Inhibition of OAT1/3 Improves PBPK Prediction of Tenofovir Renal and Systemic Disposition in Patients with Severe Kidney Disease. Pharmaceutical Research
Mahadeo A, Yeung CK, Himmelfarb J, et al. (2022) Kidney microphysiological models for nephrotoxicity assessment. Current Opinion in Toxicology. 30
Lidberg K, Muthusamy S, Adil M, et al. (2022) Serum Protein Exposure Activates a Core Regulatory Program Driving Human Proximal Tubule Injury. Journal of the American Society of Nephrology : Jasn
Imaoka T, Huang W, Shum S, et al. (2021) Bridging the gap between in silico and in vivo by modeling opioid disposition in a kidney proximal tubule microphysiological system. Scientific Reports. 11: 21356
Chen WY, Evangelista EA, Yang J, et al. (2021) Kidney Organoid and Microphysiological Kidney Chip Models to Accelerate Drug Development and Reduce Animal Testing. Frontiers in Pharmacology. 12: 695920
Van Ness KP, Cesar F, Yeung CK, et al. (2021) Microphysiological Systems in ADME Sciences. Clinical and Translational Science
Imaoka T, Yang J, Wang L, et al. (2020) Microphysiological System Modeling of Ochratoxin A-Associated Nephrotoxicity. Toxicology. 152582
Chapron A, Chapron BD, Hailey DW, et al. (2020) An Improved Vascularized, Dual-Channel Microphysiological System Facilitates Modeling of Proximal Tubular Solute Secretion. Acs Pharmacology & Translational Science. 3: 496-508
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