Paulus Wohlfart
Overview
Explore the profile of Paulus Wohlfart including associated specialties, affiliations and a list of published articles.
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Articles
29
Citations
507
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Recent Articles
1.
Shvetsova A, Gaynullina D, Winkler P, Wohlfart P, Schubert R
FASEB Bioadv
. 2025 Mar;
7(3):e1490.
PMID: 40060946
Maturation represents a process characterized by adaptive changes, particularly in the circulatory system. However, it is not known whether, in neonates, potassium channels contribute to NO-induced vasorelaxation at all and,...
2.
Oezer K, Kolibabka M, Gassenhuber J, Dietrich N, Fleming T, Schlotterer A, et al.
Acta Diabetol
. 2023 Jul;
60(11):1551-1565.
PMID: 37423944
Aims: Glucagon-like peptide-1 receptor agonists are effective treatments for type 2 diabetes, effectively lowering glucose without weight gain and with low risk for hypoglycemia. However, their influence on the retinal...
3.
Wiggenhauser L, Metzger L, Bennewitz K, Soleymani S, Boger M, Tabler C, et al.
Diabetes
. 2022 Jan;
71(5):1073-1080.
PMID: 35100334
The pdx1-/- zebrafish mutant was recently established as a novel animal model of diabetic retinopathy. In this study, we investigate whether knockout of pdx1 also leads to diabetic kidney disease...
4.
Hansen E, Bertelsen L, Bogh N, Miller J, Wohlfart P, Ringgaard S, et al.
NMR Biomed
. 2021 Dec;
35(6):e4678.
PMID: 34961990
Personalized medicine or individualized therapy promises a paradigm shift in healthcare. This is particularly true in complex and multifactorial diseases such as diabetes and the multitude of related pathophysiological complications....
5.
Zhang D, Krause B, Schmalz H, Wohlfart P, Yard B, Schubert R
Front Pharmacol
. 2021 Sep;
12:702392.
PMID: 34552483
Although the vasoactive properties of carbon monoxide (CO) have been extensively studied, the mechanism by which CO mediates vasodilation is not completely understood. Through-out published studies on CO mediated vasodilation...
6.
Riemann S, Kolibabka M, Busch S, Lin J, Hoffmann S, Gretz N, et al.
Front Physiol
. 2021 May;
12:660164.
PMID: 33981252
Vascular dysfunction and vasoregression are hallmarks of a variety of inflammatory central nervous system disorders and inflammation-related retinal diseases like diabetic retinopathy. Activation of microglia and the humoral innate immune...
7.
Kannt A, Wohlfart P, Madsen A, Veidal S, Feigh M, Schmoll D
Br J Pharmacol
. 2021 Mar;
178(12):2412-2423.
PMID: 33655500
Background And Purpose: Activation of hepatic thyroid hormone receptor β (THR-β) is associated with systemic lipid lowering, increased bile acid synthesis, and fat oxidation. In patients with non-alcoholic steatohepatitis (NASH),...
8.
Ziegler N, Raichur S, Brunner B, Hemmann U, Stolte M, Schwahn U, et al.
Front Endocrinol (Lausanne)
. 2020 Sep;
11:598.
PMID: 32982982
Histone deacetylases (HDACs) are important regulators of epigenetic gene modification that are involved in the transcriptional control of metabolism. In particular class IIa HDACs have been shown to affect hepatic...
9.
Lin J, Hu J, Schlotterer A, Wang J, Kolibabka M, Awwad K, et al.
Theranostics
. 2020 Jul;
10(17):7857-7871.
PMID: 32685025
Vasoregression secondary to glial activation develops in various retinal diseases, including retinal degeneration and diabetic retinopathy. Photoreceptor degeneration and subsequent retinal vasoregression, characterized by pericyte loss and acellular capillary formation...
10.
Poirier B, Briand V, Kadereit D, Schafer M, Wohlfart P, Philippo M, et al.
Sci Signal
. 2020 Jun;
13(634).
PMID: 32487716
Endothelial dysfunction is a hallmark of tissue injury and is believed to initiate the development of vascular diseases. Sphingosine-1 phosphate receptor-1 (S1P) plays fundamental physiological roles in endothelial function and...