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Explore the effects of high-quality garlic on markers of arteriosclerosis and inflammation, studying mechanisms, compounds, and improved formulations for optimal health benefits. Human intervention studies evaluate garlic's impact on inflammation, atherosclerosis, and cancer.
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EU-Project: Garlic & Health Effects of High Quality Garlic on Markers of Arteriosclerosis and Inflammation in vitro and in vivo Rolf Gebhardt University of Leipzig Medical Fakulty Institute of Biochemistry
Elucidation of mechanism Analysis of active of action compounds Improved drug formulation High quality garlic Improvement of garlicOptimal use of garlic plants and growth conditions for therapeutic application - Human Intervention Study Garlic & Health: Health part - general aim Main Goal: - Elucidation of garlic action - Interactive improvement of garlic quality Main Focus:- Inflammation and cytokine signaling - Atherosclerosis and serum cholesterol - Cancer and biotransformation
Effects of Garlic on Cytokine Production Induced by LPS in Blood Cells: H.-P. Keiss, V. Dirsch, A. Vollmar University of Munich
Cholesterol Biosynthesis is highly regulated at various steps among others HMGCoA reductase is a key enzyme Many important biomolecules are derived from intermediates of cholesterol biosynthesis --> the biosynthetic pathway should never be completely inhibited
Comparison of different garlic-derived organosulfur compounds for inhibition of cholesterol biosynthesis
Inhibition of HMGCoA reductase and cholesterol biosynthesis Test Compound EC50 values HMGCoA Cholesterol reductase biosynthesis Allicin > 300 17 Diallyl disulfide > 250 65 Allyl mercaptan > 1500 450 S-allyl cysteine n.d. > 1500 Diallyl sulfide > 1000 735 Dipropyl disulfide > 1500 > 1000
Schematic view of the probable mode of action of several garlic-derived organosulfur compounds
Correlation between AMPK activity and inhibition of cholesterol biosynthesis Correlation coefficient: r = - 0.96 for all conditions: - absence of DADS (closed symbols) - presence of DADS (open symbols)
Central Role of AMP-dependent kinase (AMPK) as a mediator of stress signals, e.g. low energy charge Energy consuming pathways e.g. fatty acid and cholesterol synthesis are shut down
Cellular Stress + DADS ATP / AMP + + AMPK Inhibition of cholesterol and lipid biosynthesis antidiabetic effects AMPK mediates the effect of DADS on various metabolic functions
Studies on Lipid Metabolism in vivo: Use of transgenic ApoE Leiden mice as a model system for arteriosclerosis S. Espirito-Santo, H. Princen TNO Leiden, The Netherlands
Studies on Arteriosclerosis: K. Meyer, R. Gebhardt, S. Espirito-Santo, H. Princen
Pathological Implicationsof MMP-TIMP-Imbalance: MMP TIMP Morphogenesis, Differentiation, Wound healing, etc. TIMP MMP TIMP MMP Arteriosclerosis Fibrosis Arthritis Diabetic Nephro- Rheumatoid Arthritis pathy Inflammation Glomerulosclerosis Tumour-Growth Scleroderma -Metastasis -Angiogenesis Ulcers Parodontosis
Inhibition of MMP-9 and TIMP-1 Production by DADS, AM and SAC HUVEC stimulated with PMA, forskolin and TNF-alpha MMP-9 (activity assay) TIMP-1 (ELISA)
Summary: 1. Garlic substances like DADS show antiinflammatory modulation of cytokine production 2. DADS may inhibit hepatic cholesterol biosynthesis in certain diseased states 3. Garlic did not alter lipid profiles in vivo 4. DADS did modulate MMP-production by endothelial cells but again: in vivo no antiarteriosclerotic effects could be demonstrated