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Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice

Autoimmune β-cell death leads to type 1 diabetes, and with findings that Ca(2+)-independent phospholipase A(2)β (iPLA(2)β) activation contributes to β-cell death, we assessed the effects of iPLA(2)β inhibition on diabetes development. Administration of FKGK18, a reversible iPLA(2)β inhibitor, to NOD...

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Autores principales: Bone, Robert N., Gai, Ying, Magrioti, Victoria, Kokotou, Maroula G., Ali, Tomader, Lei, Xiaoyong, Tse, Hubert M., Kokotos, George, Ramanadham, Sasanka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4303959/
https://www.ncbi.nlm.nih.gov/pubmed/25213337
http://dx.doi.org/10.2337/db14-0097
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author Bone, Robert N.
Gai, Ying
Magrioti, Victoria
Kokotou, Maroula G.
Ali, Tomader
Lei, Xiaoyong
Tse, Hubert M.
Kokotos, George
Ramanadham, Sasanka
author_facet Bone, Robert N.
Gai, Ying
Magrioti, Victoria
Kokotou, Maroula G.
Ali, Tomader
Lei, Xiaoyong
Tse, Hubert M.
Kokotos, George
Ramanadham, Sasanka
author_sort Bone, Robert N.
collection PubMed
description Autoimmune β-cell death leads to type 1 diabetes, and with findings that Ca(2+)-independent phospholipase A(2)β (iPLA(2)β) activation contributes to β-cell death, we assessed the effects of iPLA(2)β inhibition on diabetes development. Administration of FKGK18, a reversible iPLA(2)β inhibitor, to NOD female mice significantly reduced diabetes incidence in association with 1) reduced insulitis, reflected by reductions in CD4(+) T cells and B cells; 2) improved glucose homeostasis; 3) higher circulating insulin; and 4) β-cell preservation. Furthermore, FKGK18 inhibited production of tumor necrosis factor-α (TNF-α) from CD4(+) T cells and antibodies from B cells, suggesting modulation of immune cell responses by iPLA(2)β-derived products. Consistent with this, 1) adoptive transfer of diabetes by CD4(+) T cells to immunodeficient and diabetes-resistant NOD.scid mice was mitigated by FKGK18 pretreatment and 2) TNF-α production from CD4(+) T cells was reduced by inhibitors of cyclooxygenase and 12-lipoxygenase, which metabolize arachidonic acid to generate bioactive inflammatory eicosanoids. However, adoptive transfer of diabetes was not prevented when mice were administered FKGK18-pretreated T cells or when FKGK18 administration was initiated with T-cell transfer. The present observations suggest that iPLA(2)β-derived lipid signals modulate immune cell responses, raising the possibility that early inhibition of iPLA(2)β may be beneficial in ameliorating autoimmune destruction of β-cells and mitigating type 1 diabetes development.
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spelling pubmed-43039592016-01-31 Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice Bone, Robert N. Gai, Ying Magrioti, Victoria Kokotou, Maroula G. Ali, Tomader Lei, Xiaoyong Tse, Hubert M. Kokotos, George Ramanadham, Sasanka Diabetes Islet Studies Autoimmune β-cell death leads to type 1 diabetes, and with findings that Ca(2+)-independent phospholipase A(2)β (iPLA(2)β) activation contributes to β-cell death, we assessed the effects of iPLA(2)β inhibition on diabetes development. Administration of FKGK18, a reversible iPLA(2)β inhibitor, to NOD female mice significantly reduced diabetes incidence in association with 1) reduced insulitis, reflected by reductions in CD4(+) T cells and B cells; 2) improved glucose homeostasis; 3) higher circulating insulin; and 4) β-cell preservation. Furthermore, FKGK18 inhibited production of tumor necrosis factor-α (TNF-α) from CD4(+) T cells and antibodies from B cells, suggesting modulation of immune cell responses by iPLA(2)β-derived products. Consistent with this, 1) adoptive transfer of diabetes by CD4(+) T cells to immunodeficient and diabetes-resistant NOD.scid mice was mitigated by FKGK18 pretreatment and 2) TNF-α production from CD4(+) T cells was reduced by inhibitors of cyclooxygenase and 12-lipoxygenase, which metabolize arachidonic acid to generate bioactive inflammatory eicosanoids. However, adoptive transfer of diabetes was not prevented when mice were administered FKGK18-pretreated T cells or when FKGK18 administration was initiated with T-cell transfer. The present observations suggest that iPLA(2)β-derived lipid signals modulate immune cell responses, raising the possibility that early inhibition of iPLA(2)β may be beneficial in ameliorating autoimmune destruction of β-cells and mitigating type 1 diabetes development. American Diabetes Association 2015-02 2014-09-11 /pmc/articles/PMC4303959/ /pubmed/25213337 http://dx.doi.org/10.2337/db14-0097 Text en © 2015 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered.
spellingShingle Islet Studies
Bone, Robert N.
Gai, Ying
Magrioti, Victoria
Kokotou, Maroula G.
Ali, Tomader
Lei, Xiaoyong
Tse, Hubert M.
Kokotos, George
Ramanadham, Sasanka
Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice
title Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice
title_full Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice
title_fullStr Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice
title_full_unstemmed Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice
title_short Inhibition of Ca(2+)-Independent Phospholipase A(2)β (iPLA(2)β) Ameliorates Islet Infiltration and Incidence of Diabetes in NOD Mice
title_sort inhibition of ca(2+)-independent phospholipase a(2)β (ipla(2)β) ameliorates islet infiltration and incidence of diabetes in nod mice
topic Islet Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4303959/
https://www.ncbi.nlm.nih.gov/pubmed/25213337
http://dx.doi.org/10.2337/db14-0097
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