Author
Listed:
- Carla Horvath
(ETH Zurich)
- Joëlle Houriet
(University of Geneva, CMU
University of Geneva, CMU)
- Alexandra Kellenberger
(ETH Zurich)
- Caroline Moser
(ETH Zurich)
- Lucia Balazova
(ETH Zurich
Slovak Academy of Sciences)
- Miroslav Balaz
(ETH Zurich
Slovak Academy of Sciences
Comenius University)
- Hua Dong
(Stanford University School of Medicine)
- Aron Horvath
(Balgrist Campus)
- Isabel Reinisch
(ETH Zurich)
- Vissarion Efthymiou
(ETH Zurich)
- Adriano Rutz
(University of Geneva, CMU
University of Geneva, CMU)
- Laurence Marcourt
(University of Geneva, CMU
University of Geneva, CMU)
- Christopher Kitalong
(Balgrist Campus)
- Bertrand Graz
(University of Geneva, CMU
Pacific Academic Institute for Research
Community Health Association – Geneva)
- Victor Yano
(Pacific Academic Institute for Research)
- Emerson Ferreira Queiroz
(University of Geneva, CMU
University of Geneva, CMU)
- Jean-Luc Wolfender
(University of Geneva, CMU
University of Geneva, CMU)
- Christian Wolfrum
(ETH Zurich
Nanyang Technical University (NTU))
Abstract
Natural remedies are used as standalone treatments or complementary to modern medicine to control type 2 diabetes. In Palau, the traditional leaf decoction of Phaleria nisidai (PNe) is selected to treat hyperglycemia and its efficacy has been supported by a small clinical trial. As part of a reverse pharmacology approach, we here investigated the anti-diabetic potential of PNe and its bioactive compounds to alleviate insulin resistance in diet-induced obese, male mice. Dietary supplementation with PNe improves insulin sensitivity and promotes glucose uptake into adipose depots. In vitro, PNe triggers glucose disposal into murine and human adipocytes by upregulating Glut1 expression through PKC-ERK1/2 signaling. To identify active constituents in PNe, we conducted bioactivity-guided fractionations and deciphered genkwanin flavone glycosides as bioactive principles. Moreover, we demonstrate that the aglycone genkwanin (GE) improves insulin resistance to a comparable extent to the anti-diabetic drug, metformin. Our findings present GE as promising glucoregulatory phytochemical that facilitates glucose uptake into adipocytes, thereby reducing systemic glucose load and enhancing insulin sensitivity.
Suggested Citation
Carla Horvath & Joëlle Houriet & Alexandra Kellenberger & Caroline Moser & Lucia Balazova & Miroslav Balaz & Hua Dong & Aron Horvath & Isabel Reinisch & Vissarion Efthymiou & Adriano Rutz & Laurence M, 2025.
"Genkwanin glycosides are major active compounds in Phaleria nisidai extract mediating improved glucose homeostasis by stimulating glucose uptake into adipose tissues,"
Nature Communications, Nature, vol. 16(1), pages 1-25, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-62689-8
DOI: 10.1038/s41467-025-62689-8
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