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Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes

OBJECTIVE: Fulminant type 1 diabetes is characterized by the rapid onset of severe hyperglycemia and ketoacidosis, with subsequent poor prognosis of diabetes complications. Causative mechanisms for accelerated β-cell failure are unclear. RESEARCH DESIGN AND METHODS: Subjects comprised three autopsie...

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Autores principales: Tanaka, Shoichiro, Nishida, Yoriko, Aida, Kaoru, Maruyama, Taro, Shimada, Akira, Suzuki, Masako, Shimura, Hiroki, Takizawa, Soichi, Takahashi, Masashi, Akiyama, Daiichiro, Arai-Yamashita, Sayaka, Furuya, Fumihiko, Kawaguchi, Akio, Kaneshige, Masahiro, Katoh, Ryohei, Endo, Toyoshi, Kobayashi, Tetsuro
Formato: Texto
Lenguaje:English
Publicado: American Diabetes Association 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2750208/
https://www.ncbi.nlm.nih.gov/pubmed/19641142
http://dx.doi.org/10.2337/db09-0091
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author Tanaka, Shoichiro
Nishida, Yoriko
Aida, Kaoru
Maruyama, Taro
Shimada, Akira
Suzuki, Masako
Shimura, Hiroki
Takizawa, Soichi
Takahashi, Masashi
Akiyama, Daiichiro
Arai-Yamashita, Sayaka
Furuya, Fumihiko
Kawaguchi, Akio
Kaneshige, Masahiro
Katoh, Ryohei
Endo, Toyoshi
Kobayashi, Tetsuro
author_facet Tanaka, Shoichiro
Nishida, Yoriko
Aida, Kaoru
Maruyama, Taro
Shimada, Akira
Suzuki, Masako
Shimura, Hiroki
Takizawa, Soichi
Takahashi, Masashi
Akiyama, Daiichiro
Arai-Yamashita, Sayaka
Furuya, Fumihiko
Kawaguchi, Akio
Kaneshige, Masahiro
Katoh, Ryohei
Endo, Toyoshi
Kobayashi, Tetsuro
author_sort Tanaka, Shoichiro
collection PubMed
description OBJECTIVE: Fulminant type 1 diabetes is characterized by the rapid onset of severe hyperglycemia and ketoacidosis, with subsequent poor prognosis of diabetes complications. Causative mechanisms for accelerated β-cell failure are unclear. RESEARCH DESIGN AND METHODS: Subjects comprised three autopsied patients who died from diabetic ketoacidosis within 2–5 days after onset of fulminant type 1 diabetes. We examined islet cell status, including the presence of enterovirus and chemokine/cytokine/major histocompatibility complex (MHC) expressions in the pancreata using immunohistochemical analyses and RT-PCR. RESULTS: Immunohistochemical analysis revealed the presence of enterovirus-capsid protein in all three affected pancreata. Extensive infiltration of CXCR3 receptor–bearing T-cells and macrophages into islets was observed. Dendritic cells were stained in and around the islets. Specifically, interferon-γ and CXC chemokine ligand 10 (CXCL10) were strongly coexpressed in all subtypes of islet cells, including β-cells and α-cells. No CXCL10 was expressed in exocrine pancreas. Serum levels of CXCL10 were increased. Expression of MHC class II and hyperexpression of MHC class I was observed in some islet cells. CONCLUSIONS: These results strongly suggest the presence of a circuit for the destruction of β-cells in fulminant type 1 diabetes. Enterovirus infection of the pancreas initiates coexpression of interferon-γ and CXCL10 in β-cells. CXCL10 secreted from β-cells activates and attracts autoreactive T-cells and macrophages to the islets via CXCR3. These infiltrating autoreactive T-cells and macrophages release inflammatory cytokines including interferon-γ in the islets, not only damaging β-cells but also accelerating CXCL10 generation in residual β-cells and thus further activating cell-mediated autoimmunity until all β-cells have been destroyed.
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spelling pubmed-27502082010-10-01 Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes Tanaka, Shoichiro Nishida, Yoriko Aida, Kaoru Maruyama, Taro Shimada, Akira Suzuki, Masako Shimura, Hiroki Takizawa, Soichi Takahashi, Masashi Akiyama, Daiichiro Arai-Yamashita, Sayaka Furuya, Fumihiko Kawaguchi, Akio Kaneshige, Masahiro Katoh, Ryohei Endo, Toyoshi Kobayashi, Tetsuro Diabetes Original Article OBJECTIVE: Fulminant type 1 diabetes is characterized by the rapid onset of severe hyperglycemia and ketoacidosis, with subsequent poor prognosis of diabetes complications. Causative mechanisms for accelerated β-cell failure are unclear. RESEARCH DESIGN AND METHODS: Subjects comprised three autopsied patients who died from diabetic ketoacidosis within 2–5 days after onset of fulminant type 1 diabetes. We examined islet cell status, including the presence of enterovirus and chemokine/cytokine/major histocompatibility complex (MHC) expressions in the pancreata using immunohistochemical analyses and RT-PCR. RESULTS: Immunohistochemical analysis revealed the presence of enterovirus-capsid protein in all three affected pancreata. Extensive infiltration of CXCR3 receptor–bearing T-cells and macrophages into islets was observed. Dendritic cells were stained in and around the islets. Specifically, interferon-γ and CXC chemokine ligand 10 (CXCL10) were strongly coexpressed in all subtypes of islet cells, including β-cells and α-cells. No CXCL10 was expressed in exocrine pancreas. Serum levels of CXCL10 were increased. Expression of MHC class II and hyperexpression of MHC class I was observed in some islet cells. CONCLUSIONS: These results strongly suggest the presence of a circuit for the destruction of β-cells in fulminant type 1 diabetes. Enterovirus infection of the pancreas initiates coexpression of interferon-γ and CXCL10 in β-cells. CXCL10 secreted from β-cells activates and attracts autoreactive T-cells and macrophages to the islets via CXCR3. These infiltrating autoreactive T-cells and macrophages release inflammatory cytokines including interferon-γ in the islets, not only damaging β-cells but also accelerating CXCL10 generation in residual β-cells and thus further activating cell-mediated autoimmunity until all β-cells have been destroyed. American Diabetes Association 2009-10 2009-07-29 /pmc/articles/PMC2750208/ /pubmed/19641142 http://dx.doi.org/10.2337/db09-0091 Text en © 2009 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. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Original Article
Tanaka, Shoichiro
Nishida, Yoriko
Aida, Kaoru
Maruyama, Taro
Shimada, Akira
Suzuki, Masako
Shimura, Hiroki
Takizawa, Soichi
Takahashi, Masashi
Akiyama, Daiichiro
Arai-Yamashita, Sayaka
Furuya, Fumihiko
Kawaguchi, Akio
Kaneshige, Masahiro
Katoh, Ryohei
Endo, Toyoshi
Kobayashi, Tetsuro
Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes
title Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes
title_full Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes
title_fullStr Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes
title_full_unstemmed Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes
title_short Enterovirus Infection, CXC Chemokine Ligand 10 (CXCL10), and CXCR3 Circuit: A Mechanism of Accelerated β-Cell Failure in Fulminant Type 1 Diabetes
title_sort enterovirus infection, cxc chemokine ligand 10 (cxcl10), and cxcr3 circuit: a mechanism of accelerated β-cell failure in fulminant type 1 diabetes
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2750208/
https://www.ncbi.nlm.nih.gov/pubmed/19641142
http://dx.doi.org/10.2337/db09-0091
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