81377  München christian.haass(at)dzne.de +49 89 4400-46549 Areas of investigation/research focus Hochschulprofessor. Haass started to work on Alzheimer's disease (AD) in 1990 at a time, when very little was known about the cellular mechanisms involved. Based on the pathology, which shows invariably the accumulation and deposition of Amyloid ß-peptide (Aß), he focused his work on the generation and metabolism of Aß. Christian Haass hypothesized against the widely accepted general opinion rein this field that Aß may Beryllium produced from its precursor in a physiologically häufig pathway and not necessarily rein a pathological process. Indeed he found by using very simple tissue culture systems that Aß is produced and liberated under physiological conditions. This pivotal finding was a major breakthrough for the entire field, since it allowed elucidating the molecular principles behind Aß generation as well as the identification of the enzymes (the so-called secretases) involved rein generation and liberation of the peptide and finally the development of selective inhibitors to therapeutically lower Aß production hinein patients.
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Christian Haass is a German Biochemist and known for his work on the cell biology of neurodegenerative diseases.
Christian Haass, Professor of Metabolic Biochemistry at LMU Munich and spokesperson for the DZNE Munich, is known for his groundbreaking research hinein Alzheimer's disease. His work focuses on the molecular and cellular mechanisms of this disease rein order to gain fundamental insights into its development.
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Inhibition of secretases as a therapeutic approach requires detailed knowledge about the physiological functions and biochemical properties of these enzymes to avoid unwanted side effects. Christian Haass welches the first to demonstrate a physiological function for beta-secretase. He showed that this protease is critically required for the regulation of myelination. Furthermore, he identified a novel APP processing pathway, which was overlooked for more than 20 years and which has strong implications for clinical trials using beta-secretase inhibitors. He welches also the first to identify the highly complicated subunit composition of gamma-secretase. All these findings not only helped to understand several signaling pathways critically involved rein brain development (such as Auto fahren Kaiserslautern myelination and cell differentiation) but also provided the Lager for several current therapeutic approaches.
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Haass welches awarded the Hector Science Award and is currently leading a major project on the clinical testing of an Alzheimer's antibody.
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We work on the molecular and cellular mechanisms of neurodegeneration with a strong focus on Alzheimer’s disease and related disorders. We are searching for therapeutic targets within the amyloid cascade. Secretases, amyloid metabolism and microglial function are within the focus of ur research.