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GLP-1R-GIPR-PPARα/γ/δ quintuple agonism corrects obesity and diabetes in mice.

Journal articles  - Journal Article
Liskiewicz, D; Novikoff, A; Khalil, A; Akindehin, S; Campbell, JE; Candela, P; Castelino, RL; Coupland, C; Culot, M; Dodson, WS; Douros, JD ...
Published in: Nature
May 2026

There are increasing numbers of effective drugs to improve obesity-linked metabolic dysfunction; GLP-1R-GIPR co-agonism is effective in the management of obesity and type 2 diabetes1,2, and lanifibranor-a nuclear-acting small-molecule triple agonist of PPARα, PPARγ and PPARδ-is in clinical phase 3 trials for the treatment of metabolic dysfunction-associated steatohepatitis3. Here, seeking to further improve the metabolic efficacy of GLP-1R-GIPR co-agonism, we report the development of a unimolecular quintuple agonist that combines the body weight-reducing and blood glucose-lowering effects of GLP-1R-GIPR co-agonism with the insulin-sensitizing and anti-inflammatory effects of lanifibranor via its targeted delivery into GLP-1R- and GIPR-expressing cells. In vitro, GLP-1-GIP-lanifibranor is indistinguishable from GLP-1-GIP in relation to incretin receptor signalling and shows equal stimulation of insulin secretion in isolated mouse islets. In vivo, however, GLP-1-GIP-lanifibranor outperforms GLP-1R-GIPR co-agonism and semaglutide, further decreasing body weight, food intake and hyperglycaemia in obese and insulin-resistant mice through synergistic incretin and PPAR action. The metabolic action of GLP-1-GIP-lanifibranor is blunted in mice with genetic or pharmacological inhibition of GLP-1R, GIPR or PPARδ and is absent in DIO double incretin receptor-knockout mice, collectively suggesting that GLP-1-GIP-lanifibranor has substantial therapeutic value in the treatment of obesity and diabetes.

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Published In

Nature

DOI

EISSN

1476-4687

Publication Date

May 2026

Volume

653

Issue

8115

Start / End Page

776 / 785

Location

England

Related Subject Headings

  • Weight Loss
  • Receptors, Gastrointestinal Hormone
  • PPAR gamma
  • PPAR delta
  • PPAR alpha
  • Obesity
  • Mice, Inbred C57BL
  • Mice
  • Male
  • Insulin Resistance
 

Citation

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Liskiewicz, D., Novikoff, A., Khalil, A., Akindehin, S., Campbell, J. E., Candela, P., … Müller, T. D. (2026). GLP-1R-GIPR-PPARα/γ/δ quintuple agonism corrects obesity and diabetes in mice. Nature, 653(8115), 776–785. https://doi.org/10.1038/s41586-026-10427-5
Liskiewicz, Daniela, Aaron Novikoff, Ahmed Khalil, Seun Akindehin, Jonathan E. Campbell, Pietra Candela, Russell L. Castelino, et al. “GLP-1R-GIPR-PPARα/γ/δ quintuple agonism corrects obesity and diabetes in mice.Nature 653, no. 8115 (May 2026): 776–85. https://doi.org/10.1038/s41586-026-10427-5.
Liskiewicz D, Novikoff A, Khalil A, Akindehin S, Campbell JE, Candela P, et al. GLP-1R-GIPR-PPARα/γ/δ quintuple agonism corrects obesity and diabetes in mice. Nature. 2026 May;653(8115):776–85.
Liskiewicz, Daniela, et al. “GLP-1R-GIPR-PPARα/γ/δ quintuple agonism corrects obesity and diabetes in mice.Nature, vol. 653, no. 8115, May 2026, pp. 776–85. Pubmed, doi:10.1038/s41586-026-10427-5.
Liskiewicz D, Novikoff A, Khalil A, Akindehin S, Campbell JE, Candela P, Castelino RL, Coupland C, Culot M, Dodson WS, Douros JD, Embring H, Feuchtinger A, Finan B, Garcia-Caceres C, Gao X-B, Gosselet F, Grandl G, Gutgesell RM, Haas DT, Jastroch M, Karaoglu E, Kakimoto P, Kaltenbach AC, Keuper M, Kusminski CM, Leander DC, Liskiewicz A, Liu X, Maity-Kumar G, Martinez SM, Mowery SA, Nogueiras R, Paisley M, Perez-Tilve D, Petersen PSS, Pfluger PT, Prakash S, Steffens S, Cebrian-Serrano A, Tost M, Wean J, Weber C, Yoshida J, Gerhart-Hines Z, Horvath TL, Scherer PE, Seeley RJ, DiMarchi RD, Tschöp MH, Krahmer N, Knerr PJ, Müller TD. GLP-1R-GIPR-PPARα/γ/δ quintuple agonism corrects obesity and diabetes in mice. Nature. 2026 May;653(8115):776–785.
Journal cover image

Published In

Nature

DOI

EISSN

1476-4687

Publication Date

May 2026

Volume

653

Issue

8115

Start / End Page

776 / 785

Location

England

Related Subject Headings

  • Weight Loss
  • Receptors, Gastrointestinal Hormone
  • PPAR gamma
  • PPAR delta
  • PPAR alpha
  • Obesity
  • Mice, Inbred C57BL
  • Mice
  • Male
  • Insulin Resistance