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Pui Wen Cheung, M.D.

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Research
The research activities and funding listed below are automatically derived from NIH ExPORTER and other sources, which might result in incorrect or missing items. Faculty can login to make corrections and additions.
  1. 1K08DK115901-01 (Cheung, Pui) Sep 1, 2018 - Aug 31, 2023
    NIH-NIDDK
    Characterization of Novel Signaling Pathways Involved in Water Balance Disorders
    Role: Principal Investigator
  2. K08DK115901 (CHEUNG, PUI WEN) Sep 1, 2018 - Jul 31, 2023
    NIH/NIDDK
    Characterization of Novel Signaling Pathways Involved in Water Balance Disorders
    Role: Principal Investigator
  3. (Pui Cheung) Jul 1, 2017 - Jun 30, 2022
    American Heart Association
    Characterization of Novel Signaling Pathways Involved in Water Balance Disorders
    Role: Principal Investigator
  4. (Pui Cheung) Jul 1, 2016 - Jun 30, 2017
    American Society of Nephrology
    Inhibition of EGFR Signaling as a Novel Therapy for Nephrogenic Diabetes Insipidus
    Role: Principal Investigator

Bibliographic
Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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PMC Citations indicate the number of times the publication was cited by articles in PubMed Central, and the Altmetric score represents citations in news articles and social media. (Note that publications are often cited in additional ways that are not shown here.) Fields are based on how the National Library of Medicine (NLM) classifies the publication's journal and might not represent the specific topic of the publication. Translation tags are based on the publication type and the MeSH terms NLM assigns to the publication. Some publications (especially newer ones and publications not in PubMed) might not yet be assigned Field or Translation tags.) Click a Field or Translation tag to filter the publications.
  1. Cooper CM, Cheung PW, Penney EB, Linnoila JJ. Case 15-2020: A 79-Year-Old Man with Hyponatremia and Involuntary Movements of the Arm and Face. N Engl J Med. 2020 May 14; 382(20):1943-1950. PMID: 32402166.
    Citations:    
  2. Bouley R, Yui N, Terlouw A, Cheung PW, Brown D. Chlorpromazine Induces Basolateral Aquaporin-2 Accumulation via F-Actin Depolymerization and Blockade of Endocytosis in Renal Epithelial Cells. Cells. 2020 Apr 23; 9(4). PMID: 32340337.
    Citations:    
  3. Cheung PW, Bouley R, Brown D. Targeting the Trafficking of Kidney Water Channels for Therapeutic Benefit. Annu Rev Pharmacol Toxicol. 2020 01 06; 60:175-194. PMID: 31561739.
    Citations:    
  4. Cheung PW, Terlouw A, Janssen SA, Brown D, Bouley R. Inhibition of non-receptor tyrosine kinase Src induces phosphoserine 256-independent aquaporin-2 membrane accumulation. J Physiol. 2019 03; 597(6):1627-1642. PMID: 30488437.
    Citations:    Fields:    
  5. Cheung PW, Ueberdiek L, Day J, Bouley R, Brown D. Protein phosphatase 2C is responsible for VP-induced dephosphorylation of AQP2 serine 261. Am J Physiol Renal Physiol. 2017 Aug 01; 313(2):F404-F413. PMID: 28381458.
    Citations: 2     Fields:    Translation:AnimalsCells
  6. Cheung PW, Nomura N, Nair AV, Pathomthongtaweechai N, Ueberdiek L, Jenny Lu HA, Brown D, Bouley R. EGF Receptor Inhibition by Erlotinib Increases Aquaporin 2-Mediated Renal Water Reabsorption. J Am Soc Nephrol. 2016 Mar 09. PMID: 26961350.
    Citations: 1     Fields:    
  7. Cheung PW, Nomura N, Nair AV, Pathomthongtaweechai N, Ueberdiek L, Lu HA, Brown D, Bouley R. EGF Receptor Inhibition by Erlotinib Increases Aquaporin 2-Mediated Renal Water Reabsorption. J Am Soc Nephrol. 2016 Oct; 27(10):3105-3116. PMID: 27694161.
    Citations: 6     Fields:    Translation:AnimalsCells
  8. Handler SM, Cheung PW, Culley CM, Perera S, Kane-Gill SL, Kellum JA, Marcum ZA. Determining the incidence of drug-associated acute kidney injury in nursing home residents. J Am Med Dir Assoc. 2014 Oct; 15(10):719-24. PMID: 24814042.
    Citations: 6     Fields:    Translation:HumansPHPublic Health
  9. Arnold JT, Gray NE, Jacobowitz K, Viswanathan L, Cheung PW, McFann KK, Le H, Blackman MR. Human prostate stromal cells stimulate increased PSA production in DHEA-treated prostate cancer epithelial cells. J Steroid Biochem Mol Biol. 2008 Sep; 111(3-5):240-6. PMID: 18621129.
    Citations: 20     Fields:    Translation:HumansCells
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Funded by the NIH National Center for Advancing Translational Sciences through its Clinical and Translational Science Awards Program, grant number UL1TR002541.