Ontogeny of the endocrine pancreatic cells of the gilthead sea bream, Sparus aurata (Teleost).
暂无分享,去创建一个
[1] L. E. Nelson,et al. Regulation of somatostatins and their receptors in fish. , 2005, General and comparative endocrinology.
[2] B. Pohajdak,et al. Development of the islets, exocrine pancreas, and related ducts in the Nile tilapia, Oreochromis niloticus (Pisces: Cichlidae) , 2004, Journal of morphology.
[3] M. P. García Hernández,et al. Development of the digestive tract of gilthead sea bream (Sparus aurata L.). Light and electron microscopic studies , 2004 .
[4] M. P. García Hernández,et al. Ontogeny of the endocrine pancreas in sea bass (Dicentrarchus labrax): an ultrastructural study. I. The primordial cord and the primitive, single and primordial islets , 1994, Cell and Tissue Research.
[5] B. Agulleiro,et al. Ontogeny of the endocrine pancreas in sea bass (Dicentrarchus labrax): an ultrastructural study. II. The big and secondary islets , 1994, Cell and Tissue Research.
[6] M. P. García Hernández,et al. Electron-microscopic immunocytochemical study of the endocrine pancreas of sea bass (Dicentrarchus labrax) , 1993, Cell and Tissue Research.
[7] A. Jönsson. Co-localization of peptides in the Brockmann bodies of the cod (Gadus morhua) and the rainbow trout (Oncorhynchus mykiss) , 1993, Cell and Tissue Research.
[8] M. L. González de Canales,et al. A histochemical and immunohistochemical study of digestive enzymes and hormones during the larval development of the sea bream, Sparus aurata L. , 1993, The Histochemical Journal.
[9] M. P. García Hernández,et al. Ontogeny of the endocrine pancreas in sea bass (Dicentrarchus labrax) , 1992, Cell and Tissue Research.
[10] J. Rombout,et al. Pancreatic endocrine cells of Barbus conchonius (Teleostei, Cyprinidae), and their relation to the enteroendocrine cells , 1979, Cell and Tissue Research.
[11] J. Rombout,et al. An immunocytochemical and electron-microscopical study of endocrine cells in the gut and pancreas of a stomachless teleost fish, Barbus conchonius (Cyprinidae) , 2004, Cell and Tissue Research.
[12] L. Larsson,et al. Simultaneous demonstration of multiple antigens by indirect immunofluorescence or immunogold staining , 2004, Histochemistry.
[13] R. Scharfmann,et al. Development of the pancreas in medaka , 2002, Mechanisms of Development.
[14] J. Martial,et al. Differential expression of two somatostatin genes during zebrafish embryonic development , 2002, Mechanisms of Development.
[15] Tohru Suzuki,et al. Development of neuropeptide Y-related peptides in the digestive organs during the larval stage of Japanese flounder, Paralichthys olivaceus. , 2002, General and comparative endocrinology.
[16] J. Conlon. The origin and evolution of peptide YY (PYY) and pancreatic polypeptide (PP) , 2002, Peptides.
[17] W. Driever,et al. Pancreas development in zebrafish: early dispersed appearance of endocrine hormone expressing cells and their convergence to form the definitive islet. , 2001, Developmental biology.
[18] Xin-wei Lin,et al. Somatostatin family of peptides and its receptors in fish. , 2000, Canadian journal of physiology and pharmacology.
[19] T. Kurokawa,et al. Development of cholecystokinin and pancreatic polypeptide endocrine systems during the larval stage of Japanese flounder, Paralichthys olivaceus. , 2000, General and comparative endocrinology.
[20] S. Bonner-Weir. Islet growth and development in the adult. , 2000, Journal of molecular endocrinology.
[21] S. Bonner-Weir. Perspective: Postnatal Pancreatic β Cell Growth. , 2000, Endocrinology.
[22] J. Kittilson,et al. Structure-Function Relationships of the Signaling System for the Somatostatin Peptide Hormone Family1 , 2000 .
[23] D. Larhammar,et al. Neuropeptide Y family of peptides: structure, anatomical expression, function, and molecular evolution. , 2000, Biochemistry and cell biology = Biochimie et biologie cellulaire.
[24] J. Youson,et al. Ultrastructure and immunocytochemistry of the islet organ of osteoglossomorpha (Teleostei). , 1999, General and comparative endocrinology.
[25] J. Youson,et al. Ontogenetic and phylogenetic development of the endocrine pancreas (islet organ) in fish. , 1999, General and comparative endocrinology.
[26] F. Argenton,et al. Early appearance of pancreatic hormone-expressing cells in the zebrafish embryo , 1999, Mechanisms of Development.
[27] J. Wright,et al. Immunocytochemical characterization of the pancreatic islet cells of the Nile Tilapia (Oreochromis niloticus). , 1999, General and comparative endocrinology.
[28] R. Putti,et al. Morphological basis of the interactions between endocrine cell types in the pancreatic islets of the teleost, Blennius gattoruggine. , 1998, Tissue & cell.
[29] J. Youson,et al. Immunohistochemical studies of the endocrine cells within the gastro-entero-pancreatic system of Osteoglossomorpha, an ancient teleostean group. , 1998, General and comparative endocrinology.
[30] B. Romestand,et al. Insulin during the early postembryonic development of the gilt-head sea bream, Sparus aurata: ultrastructural, immunohistochemical, and biochemical studies. , 1998, General and comparative endocrinology.
[31] Y. Kao,et al. REGULATION OF METAMORPHOSIS-ASSOCIATED CHANGES IN THE LIPID METABOLISM OF SELECTED VERTEBRATES , 1998 .
[32] D. Steiner,et al. Conservation of PDX-1 structure, function, and expression in zebrafish. , 1998, Endocrinology.
[33] A. Schier,et al. Mutations affecting development of zebrafish digestive organs. , 1996, Development.
[34] D. Larhammar. Evolution of neuropeptide Y, peptide YY and pancreatic polypeptide , 1996, Regulatory Peptides.
[35] H. Segner,et al. Ontogeny of IGF-1 and the classical islet hormones in the turbot, Scophthalmus maximus , 1995, Peptides.
[36] M. Sheridan. Regulation of lipid metabolism in poikilothermic vertebrates , 1994 .
[37] C. Beorlegui,et al. Endocrine cells and nerves in the pyloric ceca and the intestine of Oncorhynchus mykiss (Teleostei): an immunocytochemical study. , 1992, General and comparative endocrinology.
[38] M. E. Abad,et al. Somatostatin 14- and somatostatin 25-like peptides in pancreatic endocrine cells of Sparus aurata (teleost): a light and electron microscopic immunocytochemical study. , 1992, General and comparative endocrinology.
[39] C. Scanes,et al. The Endocrinology of growth, development, and metabolism in vertebrates , 1992 .
[40] M. E. Abad,et al. Pancreatic endocrine cells in sea bass (Dicentrarchus labrax L.) I. Immunocytochemical characterization of glucagon- and PP-related peptides. , 1991, General and comparative endocrinology.
[41] M. E. Abad,et al. Pancreatic endocrine cells in sea bass (Dicentrarchus labrax L.) II. Immunocytochemical study of insulin and somatostatin peptides. , 1991, General and comparative endocrinology.
[42] T. Mommsen. Insulin in fishes and agnathans:history, structure and metabolic regulation , 1991 .
[43] T. W. Moon,et al. Metabolic response of teleost hepatocytes to glucagon-like peptide and glucagon. , 1990, The Journal of endocrinology.
[44] J. Gabrion,et al. Maturation of the endocrine pancreas in the sea bass, Dicentrarchus labrax L. (Teleostei): an immunocytochemical and ultrastructural study. I. Glucagon-producing cells. , 1990, General and comparative endocrinology.
[45] J. Rombout,et al. Identification of two somatostatin-immunoreactive cell types in the principal islet of Sparus auratus L. (Teleostei) by immunogold staining. , 1990, General and comparative endocrinology.
[46] J. Rombout,et al. Immunocytochemical and ultrastructural characterization of coexistence of pancreatic polypeptide and glucagon-like immunoreactivity in the pancreatic endocrine cells of Sparus auratus L. (Teleostei). , 1988, General and comparative endocrinology.
[47] M. Nozaki,et al. Different cellular distributions of two somatostatins in brain and pancreas of salmonids, and their associations with insulin- and glucagon-secreting cells. , 1988, General and comparative endocrinology.
[48] J. Rombout,et al. A comparative immunocytochemical study of the gastro-entero-pancreatic (GEP) endocrine system in a stomachless and a stomach-containing teleost. , 1987, General and comparative endocrinology.
[49] R. Elde,et al. Separate cell types that express two different forms of somatostatin in anglerfish islets can be immunohistochemically differentiated. , 1987, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[50] J. Rombout,et al. An immunocytochemical and ultrastructural study of the endocrine pancreas of Sparus auratus L. (Teleostei). , 1986, General and comparative endocrinology.
[51] Belsare Dk. Studies on the development of endocrine glands in fishes. III. Morphogenesis of the endocrine pancreas in Clarias batrachus L. , 1974 .