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Field
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to translate molecular and genetic insights from FastBio into a predictive framework for cardiovascular disease prevention, with a particular focus on predicting individual responses in LDL cholesterol following
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experience required. Preferred Qualifications Has a strong background in molecular biology, genomics, and bioinformatics is desired. Background in cardiovascular and/or kidney diseases is a plus. Has first
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Conduct research on chronic metabolic diseases, including obesity, diabetes, ageing, cardiovascular diseases, Metabolic Dysfunction Associated Steatohepatitis (MASH), neurodegenerative disorders, and
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interpretable models of molecular disease mechanisms, with a focus on identifying proteins and pathways involved in cardiovascular disease. PhD project: Causal multi-omics modeling of disease biology We
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cardiovascular medicine. Mechanical Circulatory Support (MCS) technologies offer life-saving potential, yet optimal patient selection, timing, and device strategies require deeper mechanistic and clinical insight
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Max Planck Institute for Heart and Lung Research, Bad Nauheim | Bad Nauheim, Hessen | Germany | 16 days ago
Planck Institute for Heart and Lung Research in Bad Nauheim is an internationally renowned research institute. It conducts basic research primarily in the field of the cardiovascular system and organ
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, including arterial stiffness, left ventricular hypertrophy and vascular calcification (VC). VC is a major cardiovascular complication of CKD, associated with a mortality risk up to 1000-fold higher than in
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metabolism and function in diabetic cardiomyopathy (DbCM). The project combines cardiovascular physiology, molecular biology, metabolism, and translational research within the international SHEA-META
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extract is associated with kidney damage, kava extract with liver toxicity, and ephedra extract with cardiovascular insults. These examples highlight the need for a robust and structured strategy to better
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poorly understood. In this PhD project, you will investigate how adipose tissue-derived signals alter cardiac metabolism and function in diabetic cardiomyopathy (DbCM). The project combines cardiovascular