Refereed journal article or data article (A1)

Cellular distribution and contribution of cyclooxygenase (COX)-2 to diabetogenesis in NOD mouse




List of AuthorsLuo C, Kallajoki M, Gross R, Mulari M, Teros T, Ylinen L, Makinen M, Laine J, Simell O

PublisherSPRINGER-VERLAG

Publication year2002

JournalCell and Tissue Research

Journal name in sourceCELL AND TISSUE RESEARCH

Journal acronymCELL TISSUE RES

Volume number310

Issue number2

Start page169

End page175

Number of pages7

ISSN0302-766X

DOIhttp://dx.doi.org/10.1007/s00441-002-0628-6


Abstract
Unlike most other mammalian cells, beta-cells of Langerhans constitutively express cyclooxygenase (COX)-2 rather than COX-1. COX-2 is also constitutively expressed in type 1 diabetes (T1D) patients' periphery blood monocytes and macrophage. To understand the role of COX-2 in the beta-cell, we investigated COX-2-expression in beta-cells and islet infiltrates of NOD and BALB/c mice using fluorescence immunohistochemistry and cytochemical confocal microscopy and Western blotting. Immunostaining showed that COX-2 is expressed in islet-infiltrating macrophages, and that the expression of insulin and COX-2 disappeared concomitantly from the beta-cells when NOD mice progressed toward overt diabetes. Also cultured INS-1E cells coexpressed insulin and COX-2 but clearly in different subcellular compartments. Treatment with celecoxib increased insulin release from these cells in a dose-dependent manner in glucose concentrations ranging from 5 to 17 mM. Excessive COX-2 expression by the islet-infiltrating macrophages may contribute to the beta-cell death during insulitis. The effects of celecoxib on INS-1E cells suggest that PGE(2) and other downstream products of COX-2 may contribute to the regulation of insulin release from the cells.


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