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Overall, zebrafish offers particular advantages to the study of metabolic diseases. Models for studying obesity, pancreas regeneration, hyperglycemia, and diabetic complications have been established and will promote the understanding of the disease mechanisms, and provide new targets for disease therapy. All authors listed have made a substantial, direct and intellectual contribution to the work, and approved it for publication.

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The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest. Ahima, R. The health risk of obesity—better metrics imperative. Science , — Alvarez, Y. Predominant cone photoreceptor dysfunction in a hyperglycaemic model of non-proliferative diabetic retinopathy. Anderson, J. Zebrafish lipid metabolism: from mediating early patterning to the metabolism of dietary fat and cholesterol.

Chapter 4: Genetic disease carrier testing

Methods Cell Biol. Argenton, F. Early appearance of pancreatic hormone-expressing cells in the zebrafish embryo. Biemar, F.

Pancreas development in zebrafish: early dispersed appearance of endocrine hormone expressing cells and their convergence to form the definitive islet. Bultman, S. Molecular characterization of the mouse agouti locus. Cell 71, — Cai, D. Neuroinflammation and neurodegeneration in overnutrition-induced diseases. Trends Endocrin. Capiotti, K. Persistent impaired glucose metabolism in a zebrafish hyperglycemia model. B Biochem. Carnovali, M. Chronic hyperglycemia affects bone metabolism in adult zebrafish scale model. Endocrine 54, — Trigonelline promotes auditory function through nerve growth factor signaling on diabetic animal models.

Phytomedicine 36, — Chu, C.

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  7. Overexpression of Akt1 enhances adipogenesis and leads to lipoma formation in zebrafish. Connaughton, V. Alternate immersion in an external glucose solution differentially affects blood sugar values in older versus younger zebrafish adults. Zebrafish 13, 87— Curado, S. Conditional targeted cell ablation in zebrafish: a new tool for regeneration studies. Dailey, M. Nutrient-induced intestinal adaption and its effect in obesity. Dalgin, G. Differential levels of Neurod establish zebrafish endocrine pancreas cell fates. Delaspre, F.

    Centroacinar cells are progenitors that contribute to endocrine pancreas regeneration. Diabetes 64, — Den Broeder, M. Zebrafish as a model to study the role of peroxisome proliferating-activated receptors in adipogenesis and obesity. PPAR Res. Altered adipogenesis in zebrafish larvae following high fat diet and chemical exposure is visualised by stimulated raman scattering microscopy. DeRossi, C. Trappc11 is required for protein glycosylation in zebrafish and humans.

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    Cell 27, — Dooley, K. Zebrafish: a model system for the study of human disease. Eames Nalle, S. Analysis of pancreatic disease in zebrafish. Method Cell Biol. Eames, S. Transgenic zebrafish model of the C43G human insulin gene mutation. Diabetes Investig. Blood sugar measurement in zebrafish reveals dynamics of glucose homeostasis.

    Zebrafish 7, — Elo, B. Larval zebrafish as a model for glucose metabolism: expression of phosphoenolpyruvate carboxykinase as a marker for exposure to anti-diabetic compounds. Feierstein, C.

    Frontiers | Zebrafish as a Model for Obesity and Diabetes | Cell and Developmental Biology

    Seeing the whole picture: a comprehensive imaging approach to functional mapping of circuits in behaving zebrafish. Neuroscience , 26— Flegal, K. Association of all-cause mortality with overweight and obesity using standard body mass index categories: a systematic review and meta-analysis. JAMA , 71— Flynn, E. Ontogeny and nutritional control of adipogenesis in zebrafish Danio rerio. Lipid Res. Freifeld, L. Expansion microscopy of zebrafish for neuroscience and developmental biology studies. Fuchsberger, C. The genetic architecture of type 2 diabetes. Nature , 41— Gibert, Y.

    Zebrafish as a genetic model in pre-clinical drug testing and screening. Gleeson, M. Induction of hyperglycaemia in zebrafish Danio rerio leads to morphological changes in the retina. Acta Diabetol.

    Series: Current Topics in Developmental Biology

    Greenspan, P. Nile red: a selective fluorescent stain for intracellular lipid droplets. Cell Biol. Hall, C. Live cell imaging of zebrafish leukocytes. Methods Mol. Hansen, I.