Area of research
Hepatology · Molecular Biology
Research interest
Research interests include Liver physiology and pathology, Organ Transplantation Techniques and Outcomes, Protein Tyrosine Phosphatases, and Liver Disease Diagnosis and Treatment.
Steatohepatitis-induced vascular niche alterations promote melanoma metastasis
Endothelial c-Maf prevents MASLD-like liver fibrosis by regulating chromatin accessibility to suppress pathogenic microvascular cell subsets
Endothelial cells drive organ fibrosis in mice by inducing expression of the transcription factor SOX9
Activation of Wnt/<b>β</b>-catenin signaling is critical for the tumorigenesis of choroid plexus
Integration of transcriptomics, proteomics and loss-of-function screening reveals WEE1 as a target for combination with dasatinib against proneural glioblastoma
Liver sinusoidal endothelial cells orchestrate NK cell recruitment and activation in acute inflammatory liver injury
ALK1 controls hepatic vessel formation, angiodiversity, and angiocrine functions in hereditary hemorrhagic telangiectasia of the liver
Lyve-1 deficiency enhances the hepatic immune microenvironment entailing altered susceptibility to melanoma liver metastasis
Liver sinusoidal endothelial cells orchestrate NK cell recruitment and activation in acute inflammatory liver injury
Angiodiversity and organotypic functions of sinusoidal endothelial cells
Bone marrow sinusoidal endothelium controls terminal erythroid differentiation and reticulocyte maturation
Single-Cell RNA Sequencing of Tumor-Infiltrating NK Cells Reveals that Inhibition of Transcription Factor HIF-1α Unleashes NK Cell Activity
Endothelial GATA4 controls liver fibrosis and regeneration by preventing a pathogenic switch in angiocrine signaling
Reconstruction of Nasal Defects With Dermal Skin Substitutes—A Retrospective Study of 36 Defects
Reconstruction of defects of the proximal nasal sidewall using the procerus perforator flap
Rekonstruktion eines Defektes am proximalen Nasenabhang mittels Procerus‐Insellappenplastik
GATA4-dependent organ-specific endothelial differentiation controls liver development and embryonic hematopoiesis
Angiocrine Wnt signaling controls liver growth and metabolic maturation in mice
Angiocrine Bmp2 signaling in murine liver controls normal iron homeostasis
Endothelial transdifferentiation in hepatocellular carcinoma: loss of Stabilin‐2 expression in peri‐tumourous liver correlates with increased survival