Standout Papers

Truncation of Kir6.2 produces ATP-sensitive K+ channels in the absence of the sulphonylurea re... 1997 2026 2006 2016 644
  1. Truncation of Kir6.2 produces ATP-sensitive K+ channels in the absence of the sulphonylurea receptor (1997)
    Stephen J. Tucker, Fiona M. Gribble et al. Nature
  2. Identification and Characterization of GLP-1 Receptor–Expressing Cells Using a New Transgenic Mouse Model (2013)
    Paul Richards, Helen Parker et al. Diabetes
  3. Distribution and characterisation of Glucagon-like peptide-1 receptor expressing cells in the mouse brain (2015)
    Simon C. Cork, James E. Richards et al. Molecular Metabolism
  4. Revisiting the Complexity of GLP-1 Action from Sites of Synthesis to Receptor Activation (2020)
    Brent A. McLean, Chi Kin Wong et al. Endocrine Reviews
  5. Central and peripheral GLP-1 systems independently suppress eating (2021)
    Daniel I. Brierley, Marie K. Holt et al. Nature Metabolism

Immediate Impact

19 by Nobel laureates 32 from Science/Nature 62 standout
Sub-graph 1 of 19

Citing Papers

A body–brain circuit that regulates body inflammatory responses
2024 StandoutNature
The benefits of GLP-1 drugs beyond obesity
2024 StandoutScience
14 intermediate papers

Works of Stefan Trapp being referenced

Revisiting the Complexity of GLP-1 Action from Sites of Synthesis to Receptor Activation
2020 Standout
Identification and Characterization of GLP-1 Receptor–Expressing Cells Using a New Transgenic Mouse Model
2013 Standout
and 11 more

Author Peers

Author Last Decade Papers Cites
Stefan Trapp 1514 1586 1245 1395 73 4.9k
Judith Harvey‐White 1020 1220 1795 1911 64 7.2k
Diana N. Krause 1401 1278 948 1467 99 6.3k
Saoirse E. O’Sullivan 510 813 944 1034 99 5.5k
Robin E. Buckingham 1395 1939 401 829 62 4.8k
Julie Y.H. Chan 1133 1749 784 638 183 5.6k
Sue P. Duckles 821 1982 1526 1743 160 6.9k
Christoph Buettner 1050 1707 394 1279 68 5.6k
Jonathan B. Jaspan 1326 1051 422 1668 90 5.3k
Isabel Matias 1036 988 2097 1926 73 7.5k
Michael D. Randall 701 631 616 770 92 3.9k

All Works

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2026