Literature DB >> 15571328

Immunohistochemical demonstration of leptin in pancreatic islets of non-obese diabetic and CD-1 mice: co-localization in glucagon cells and its attenuation at the onset of diabetes.

S Reddy1, E M Lau, J M Ross.   

Abstract

Leptin is a 16 kD polypeptide hormone produced predominantly by white adipose tissue and exerts profound effects on food intake and energy balance. More recent studies have shown extra sites of leptin production in human and rodent tissues and have ascribed additional roles for the hormone, e.g., in immune and reproductive functions. A role for the hormone has also been implicated in insulin-dependent diabetes mellitus in the non-obese diabetic (NOD) mouse. However, whether leptin originates from islet cells of the mouse is not known. Here dual-label immunohistochemistry was employed to examine leptin expression in islet cells, and its distribution and cellular sources in pancreatic sections of female NOD/Ak and CD-1 mice of various ages. For comparison, leptin immunolabelling was examined in adult pancreatic sections from male NOD/Ak CD-1, Balb/c and FVB/N mice and female severe combined immunodeficient CB. 17 mice. Pancreatic tissues from adult female guinea pig, sheep and cattle and neonatal pigs were also studied. Our results show that in the day 1 NOD and CD-1 mice, leptin immunolabelling was observed in selective glucagon cells within the developing islets while at days 15 and 22, it became more intense and co-incident. This pattern of staining was maintained at days 40, 90, 150 and 250. In the female NOD mouse, leptin was absent in intra-islet immune cells. Its expression was variable in islets from male NOD and CD-1 mice. In spontaneously diabetic female NOD mice and following acceleration of diabetes with cyclophosphamide, despite the persistence of strong immunolabelling for glucagon in the re-distributed alpha cells, leptin expression was either absent, diminished or present in only a proportion of alpha cells. The reduction in leptin labelling was often associated with diabetic islets which had insulitis in association with only a small number of residual beta cells. Leptin expression was absent in guinea pig, ovine, bovine and neonatal porcine islet cells, despite the expression of intensely labelled glucagon cells. The present results demonstrate leptin co-localization in glucagon cells of the mouse islet. Its expression diminishes in the presence of inadequate insulin. Leptin produced within the mouse islet may have bi-directional influences on leptin and insulin regulation and may play local functions in islet development and metabolism.

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Year:  2004        PMID: 15571328     DOI: 10.1023/b:hijo.0000045963.10002.4b

Source DB:  PubMed          Journal:  J Mol Histol        ISSN: 1567-2379            Impact factor:   2.611


  38 in total

1.  Leptin induces oxidative stress in human endothelial cells.

Authors:  A Bouloumie; T Marumo; M Lafontan; R Busse
Journal:  FASEB J       Date:  1999-07       Impact factor: 5.191

Review 2.  Nutritional regulation of leptin in humans.

Authors:  R A Coleman; T S Herrmann
Journal:  Diabetologia       Date:  1999-06       Impact factor: 10.122

3.  Hexosamines and nutrient excess induce leptin production and leptin receptor activation in pancreatic islets and clonal beta-cells.

Authors:  V Emilsson; J O'Dowd; A L Nolan; M A Cawthorne
Journal:  Endocrinology       Date:  2001-10       Impact factor: 4.736

4.  Leptin protects mice from starvation-induced lymphoid atrophy and increases thymic cellularity in ob/ob mice.

Authors:  J K Howard; G M Lord; G Matarese; S Vendetti; M A Ghatei; M A Ritter; R I Lechler; S R Bloom
Journal:  J Clin Invest       Date:  1999-10       Impact factor: 14.808

5.  Expression of leptin and its receptor in the murine ovary: possible role in the regulation of oocyte maturation.

Authors:  Natalie K Ryan; Carole M Woodhouse; Kylie H Van der Hoek; Robert B Gilchrist; David T Armstrong; Robert J Norman
Journal:  Biol Reprod       Date:  2002-05       Impact factor: 4.285

6.  Leptin induces mitochondrial superoxide production and monocyte chemoattractant protein-1 expression in aortic endothelial cells by increasing fatty acid oxidation via protein kinase A.

Authors:  S I Yamagishi ; D Edelstein; X L Du; Y Kaneda; M Guzmán; M Brownlee
Journal:  J Biol Chem       Date:  2001-05-07       Impact factor: 5.157

7.  Leptin surge precedes onset of autoimmune encephalomyelitis and correlates with development of pathogenic T cell responses.

Authors:  Veronica Sanna; Antonio Di Giacomo; Antonio La Cava; Robert I Lechler; Silvia Fontana; Serafino Zappacosta; Giuseppe Matarese
Journal:  J Clin Invest       Date:  2003-01       Impact factor: 14.808

8.  Positional cloning of the mouse obese gene and its human homologue.

Authors:  Y Zhang; R Proenca; M Maffei; M Barone; L Leopold; J M Friedman
Journal:  Nature       Date:  1994-12-01       Impact factor: 49.962

Review 9.  Leptin in the regulation of immunity, inflammation, and hematopoiesis.

Authors:  G Fantuzzi; R Faggioni
Journal:  J Leukoc Biol       Date:  2000-10       Impact factor: 4.962

10.  Leptin modulates the T-cell immune response and reverses starvation-induced immunosuppression.

Authors:  G M Lord; G Matarese; J K Howard; R J Baker; S R Bloom; R I Lechler
Journal:  Nature       Date:  1998-08-27       Impact factor: 49.962

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  3 in total

1.  Histopathological changes in insulin, glucagon and somatostatin cells in the islets of NOD mice during cyclophosphamide-accelerated diabetes: a combined immunohistochemical and histochemical study.

Authors:  Shiva Reddy; Praneeti Pathipati; Yan Bai; Elizabeth Robinson; Jacqueline M Ross
Journal:  J Mol Histol       Date:  2005-05       Impact factor: 2.611

2.  Inhibitory effects of leptin on pancreatic alpha-cell function.

Authors:  Eva Tudurí; Laura Marroquí; Sergi Soriano; Ana B Ropero; Thiago M Batista; Sandra Piquer; Miguel A López-Boado; Everardo M Carneiro; Ramón Gomis; Angel Nadal; Ivan Quesada
Journal:  Diabetes       Date:  2009-04-28       Impact factor: 9.461

3.  Leptin and ghrelin expressions in the gastrointestinal tracts of calves and cows.

Authors:  Hideaki Hayashi; Mutsumi Yamakado; Mana Yamaguchi; Takaharu Kozakai
Journal:  J Vet Med Sci       Date:  2020-02-21       Impact factor: 1.267

  3 in total

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