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Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury

OBJECTIVE: Promotion of endogenous β-cell mass expansion could facilitate regeneration in patients with diabetes. We discovered that the secreted protein CTGF (aka CCN2) promotes adult β-cell replication and mass regeneration after injury via increasing β-cell immaturity and shortening the replicati...

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Autores principales: Riley, Kimberly G., Pasek, Raymond C., Maulis, Matthew F., Dunn, Jennifer C., Bolus, W. Reid, Kendall, Peggy L., Hasty, Alyssa H., Gannon, Maureen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529497/
https://www.ncbi.nlm.nih.gov/pubmed/26266091
http://dx.doi.org/10.1016/j.molmet.2015.05.002
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author Riley, Kimberly G.
Pasek, Raymond C.
Maulis, Matthew F.
Dunn, Jennifer C.
Bolus, W. Reid
Kendall, Peggy L.
Hasty, Alyssa H.
Gannon, Maureen
author_facet Riley, Kimberly G.
Pasek, Raymond C.
Maulis, Matthew F.
Dunn, Jennifer C.
Bolus, W. Reid
Kendall, Peggy L.
Hasty, Alyssa H.
Gannon, Maureen
author_sort Riley, Kimberly G.
collection PubMed
description OBJECTIVE: Promotion of endogenous β-cell mass expansion could facilitate regeneration in patients with diabetes. We discovered that the secreted protein CTGF (aka CCN2) promotes adult β-cell replication and mass regeneration after injury via increasing β-cell immaturity and shortening the replicative refractory period. However, the mechanism of CTGF-mediated β-cell proliferation is unknown. Here we focused on whether CTGF alters cells of the immune system to enhance β-cell replication. METHODS: Using mouse models for 50% β-cell ablation and conditional, β-cell-specific CTGF induction, we assessed changes in immune cell populations by performing immunolabeling and gene expression analyses. We tested the requirement for macrophages in CTGF-mediated β-cell proliferation via clodronate-based macrophage depletion. RESULTS: CTGF induction after 50% β-cell ablation increased both macrophages and T-cells in islets. An upregulation in the expression of several macrophage and T-cell chemoattractant genes was also observed in islets. Gene expression analyses suggest an increase in M1 and a decrease in M2 macrophage markers. Depletion of macrophages (without changes in T cell number) blocked CTGF-mediated β-cell proliferation and prevented the increase in β-cell immaturity. CONCLUSIONS: Our data show that macrophages are critical for CTGF-mediated adult β-cell proliferation in the setting of partial β-cell ablation. This is the first study to link a specific β-cell proliferative factor with immune-mediated β-cell proliferation in a β-cell injury model.
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spelling pubmed-45294972015-08-11 Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury Riley, Kimberly G. Pasek, Raymond C. Maulis, Matthew F. Dunn, Jennifer C. Bolus, W. Reid Kendall, Peggy L. Hasty, Alyssa H. Gannon, Maureen Mol Metab Brief Communication OBJECTIVE: Promotion of endogenous β-cell mass expansion could facilitate regeneration in patients with diabetes. We discovered that the secreted protein CTGF (aka CCN2) promotes adult β-cell replication and mass regeneration after injury via increasing β-cell immaturity and shortening the replicative refractory period. However, the mechanism of CTGF-mediated β-cell proliferation is unknown. Here we focused on whether CTGF alters cells of the immune system to enhance β-cell replication. METHODS: Using mouse models for 50% β-cell ablation and conditional, β-cell-specific CTGF induction, we assessed changes in immune cell populations by performing immunolabeling and gene expression analyses. We tested the requirement for macrophages in CTGF-mediated β-cell proliferation via clodronate-based macrophage depletion. RESULTS: CTGF induction after 50% β-cell ablation increased both macrophages and T-cells in islets. An upregulation in the expression of several macrophage and T-cell chemoattractant genes was also observed in islets. Gene expression analyses suggest an increase in M1 and a decrease in M2 macrophage markers. Depletion of macrophages (without changes in T cell number) blocked CTGF-mediated β-cell proliferation and prevented the increase in β-cell immaturity. CONCLUSIONS: Our data show that macrophages are critical for CTGF-mediated adult β-cell proliferation in the setting of partial β-cell ablation. This is the first study to link a specific β-cell proliferative factor with immune-mediated β-cell proliferation in a β-cell injury model. Elsevier 2015-05-19 /pmc/articles/PMC4529497/ /pubmed/26266091 http://dx.doi.org/10.1016/j.molmet.2015.05.002 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Brief Communication
Riley, Kimberly G.
Pasek, Raymond C.
Maulis, Matthew F.
Dunn, Jennifer C.
Bolus, W. Reid
Kendall, Peggy L.
Hasty, Alyssa H.
Gannon, Maureen
Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury
title Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury
title_full Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury
title_fullStr Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury
title_full_unstemmed Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury
title_short Macrophages are essential for CTGF-mediated adult β-cell proliferation after injury
title_sort macrophages are essential for ctgf-mediated adult β-cell proliferation after injury
topic Brief Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4529497/
https://www.ncbi.nlm.nih.gov/pubmed/26266091
http://dx.doi.org/10.1016/j.molmet.2015.05.002
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