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Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages

Acute schistosomiasis is characterized by pro-inflammatory responses against tissue- or organ-trapped parasite eggs along with granuloma formation. Here, we describe studies in Cx3cr1(−/−) mice and demonstrate the role of Cx3cr1 in the pathoetiology of granuloma formation during acute schistosomiasi...

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Autores principales: Ran, Lin, Yu, Qilin, Zhang, Shu, Xiong, Fei, Cheng, Jia, Yang, Ping, Xu, Jun-Fa, Nie, Hao, Zhong, Qin, Yang, Xueli, Yang, Fei, Gong, Quan, Kuczma, Michal, Kraj, Piotr, Gu, Weikuan, Ren, Bo-Xu, Wang, Cong-Yi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4486856/
https://www.ncbi.nlm.nih.gov/pubmed/26035381
http://dx.doi.org/10.1242/dmm.018242
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author Ran, Lin
Yu, Qilin
Zhang, Shu
Xiong, Fei
Cheng, Jia
Yang, Ping
Xu, Jun-Fa
Nie, Hao
Zhong, Qin
Yang, Xueli
Yang, Fei
Gong, Quan
Kuczma, Michal
Kraj, Piotr
Gu, Weikuan
Ren, Bo-Xu
Wang, Cong-Yi
author_facet Ran, Lin
Yu, Qilin
Zhang, Shu
Xiong, Fei
Cheng, Jia
Yang, Ping
Xu, Jun-Fa
Nie, Hao
Zhong, Qin
Yang, Xueli
Yang, Fei
Gong, Quan
Kuczma, Michal
Kraj, Piotr
Gu, Weikuan
Ren, Bo-Xu
Wang, Cong-Yi
author_sort Ran, Lin
collection PubMed
description Acute schistosomiasis is characterized by pro-inflammatory responses against tissue- or organ-trapped parasite eggs along with granuloma formation. Here, we describe studies in Cx3cr1(−/−) mice and demonstrate the role of Cx3cr1 in the pathoetiology of granuloma formation during acute schistosomiasis. Mice deficient in Cx3cr1 were protected from granuloma formation and hepatic injury induced by Schistosoma japonicum eggs, as manifested by reduced body weight loss and attenuated hepatomegaly along with preserved liver function. Notably, S. japonicum infection induced high levels of hepatic Cx3cr1 expression, which was predominantly expressed by infiltrating macrophages. Loss of Cx3cr1 rendered macrophages preferentially towards M2 polarization, which then led to a characteristic switch of the host immune defense from a conventional Th1 to a typical Th2 response during acute schistosomiasis. This immune switch caused by Cx3cr1 deficiency was probably associated with enhanced STAT6/PPAR-γ signaling and increased expression of indoleamine 2,3-dioxygenase (IDO), an enzyme that promotes M2 polarization of macrophages. Taken together, our data provide evidence suggesting that CX3CR1 could be a viable therapeutic target for treatment of acute schistosomiasis.
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spelling pubmed-44868562015-07-10 Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages Ran, Lin Yu, Qilin Zhang, Shu Xiong, Fei Cheng, Jia Yang, Ping Xu, Jun-Fa Nie, Hao Zhong, Qin Yang, Xueli Yang, Fei Gong, Quan Kuczma, Michal Kraj, Piotr Gu, Weikuan Ren, Bo-Xu Wang, Cong-Yi Dis Model Mech Research Article Acute schistosomiasis is characterized by pro-inflammatory responses against tissue- or organ-trapped parasite eggs along with granuloma formation. Here, we describe studies in Cx3cr1(−/−) mice and demonstrate the role of Cx3cr1 in the pathoetiology of granuloma formation during acute schistosomiasis. Mice deficient in Cx3cr1 were protected from granuloma formation and hepatic injury induced by Schistosoma japonicum eggs, as manifested by reduced body weight loss and attenuated hepatomegaly along with preserved liver function. Notably, S. japonicum infection induced high levels of hepatic Cx3cr1 expression, which was predominantly expressed by infiltrating macrophages. Loss of Cx3cr1 rendered macrophages preferentially towards M2 polarization, which then led to a characteristic switch of the host immune defense from a conventional Th1 to a typical Th2 response during acute schistosomiasis. This immune switch caused by Cx3cr1 deficiency was probably associated with enhanced STAT6/PPAR-γ signaling and increased expression of indoleamine 2,3-dioxygenase (IDO), an enzyme that promotes M2 polarization of macrophages. Taken together, our data provide evidence suggesting that CX3CR1 could be a viable therapeutic target for treatment of acute schistosomiasis. The Company of Biologists 2015-07-01 /pmc/articles/PMC4486856/ /pubmed/26035381 http://dx.doi.org/10.1242/dmm.018242 Text en © 2015. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Ran, Lin
Yu, Qilin
Zhang, Shu
Xiong, Fei
Cheng, Jia
Yang, Ping
Xu, Jun-Fa
Nie, Hao
Zhong, Qin
Yang, Xueli
Yang, Fei
Gong, Quan
Kuczma, Michal
Kraj, Piotr
Gu, Weikuan
Ren, Bo-Xu
Wang, Cong-Yi
Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages
title Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages
title_full Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages
title_fullStr Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages
title_full_unstemmed Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages
title_short Cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the M2-type polarization of macrophages
title_sort cx3cr1 deficiency in mice attenuates hepatic granuloma formation during acute schistosomiasis by enhancing the m2-type polarization of macrophages
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4486856/
https://www.ncbi.nlm.nih.gov/pubmed/26035381
http://dx.doi.org/10.1242/dmm.018242
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