Area of research
Molecular Biology · Physiology
Research interest
Research interests include Ion channel regulation and function, Nitric Oxide and Endothelin Effects, Cardiac electrophysiology and arrhythmias, and Ion Channels and Receptors.
Chair-Rising Power as Digital Biomarker: Validation against Jumping Power and Chair-Rising Time in Adults Aged 32–92 Years
An inactivating human TRPC6 channel mutation without focal segmental glomerulosclerosis
High Thyroid-Stimulating Hormone and Low Free Triiodothyronine Levels Are Associated with Chronic Kidney Disease in Three Population-Based Studies from Germany
In Vivo Inhibition of TRPC6 by SH045 Attenuates Renal Fibrosis in a New Zealand Obese (NZO) Mouse Model of Metabolic Syndrome
Role of TRPC6 in kidney damage after acute ischemic kidney injury
Inflamm-Aging and Brain Insulin Resistance: New Insights and Role of Life-style Strategies on Cognitive and Social Determinants in Aging and Neurodegeneration
Age Impairs Soluble Guanylyl Cyclase Function in Mouse Mesenteric Arteries
Short-Chain Fatty Acid Propionate Protects From Hypertensive Cardiovascular Damage
Nitric oxide–sensitive guanylyl cyclase stimulation improves experimental heart failure with preserved ejection fraction
Antihypertensive Treatment Patterns and Blood Pressure Control in Older Adults: Results from the Berlin Aging Study II
Salt-responsive gut commensal modulates TH17 axis and disease
Mild-to-Moderate Chronic Kidney Disease and Geriatric Outcomes: Analysis of Cross-Sectional Data from the Berlin Aging Study II
Salt-responsive gut commensal modulates TH17 axis and disease
RePEc: Research Papers in Economics 2017cited by 0position: middle
TRPC6 G757D Loss-of-Function Mutation Associates with FSGS
Vitamin D Depletion Aggravates Hypertension and Target‐Organ Damage
Vascular Receptor Autoantibodies in Pulmonary Arterial Hypertension Associated with Systemic Sclerosis
Dll4-Notch signaling determines the formation of native arterial collateral networks and arterial function in mouse ischemia models