Nadja Schulz
Karolinska Institutet
4 Papers
7 Citations
Nadja Schulz is an academic researcher from Karolinska Institutet. The author has contributed to research in topics: Downregulation and upregulation & Regeneration (biology). The author has an hindex of 3, co-authored 4 publications.
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Papers
In vivo screen identifies a SIK inhibitor that induces β cell proliferation through a transient UPR.
Jérémie Charbord,Lipeng Ren,Rohit Sharma,Anna Johansson,Rasmus Agren,Lianhe Chu,Dominika Tworus,Nadja Schulz,Pierre Charbord,Andrew F. Stewart,Peng Wang,Laura C. Alonso,Olov Andersson +12 more
- 01 May 2021
TL;DR: In this article, a high-throughput chemical screen identifies the salt-inducible kinase inhibitor HG-9-91-01 as a driver of β cell proliferation, acting through an ATF6-dependent unfolded protein response.
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IGFBP1 increases b-cell regeneration by promoting a -t ob-cell transdifferentiation
Jing Lu,Ka-Cheuk Liu,Nadja Schulz,Christos Karampelias,Jérémie Charbord,Agneta Hilding,Linn Rautio,Philippe Bertolino,Claes-Göran Östenson,Kerstin Brismar,Olov Andersson +10 more
- 01 Jan 2016
TL;DR: IGFBP1 is identified as an endogenous promoter of b-cell regeneration and its clinical importance in diabetes is highlighted.
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Critical role for adenosine receptor A2a in β-cell proliferation.
Nadja Schulz,Ka-Cheuk Liu,Jérémie Charbord,Charlotte L. Mattsson,Lingjie Tao,Dominika Tworus,Olov Andersson +6 more
TL;DR: It is shown that adenosine signaling via the A2a receptor has an important role in compensatory β-cell proliferation, a feature that could be harnessed pharmacologically forβ-cell expansion and future therapeutic development for diabetes.
IGFBP1 increases β-cell regeneration by promoting α- to β-cell transdifferentiation.
Jing Lu,Ka-Cheuk Liu,Nadja Schulz,Christos Karampelias,Jérémie Charbord,Agneta Hilding,Agneta Hilding,Linn Rautio,Philippe Bertolino,Claes-Göran Östenson,Claes-Göran Östenson,Kerstin Brismar,Kerstin Brismar,Olov Andersson +13 more
TL;DR: In this article, the authors performed whole-genome expression profiling of zebrafish islets and identified 11 secreted proteins that are upregulated during β-cell regeneration at supraphysiological levels.