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Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH

Accumulation of lipotoxic lipids, such as free cholesterol, induces hepatocyte death and subsequent inflammation and fibrosis in the pathogenesis of nonalcoholic steatohepatitis (NASH). However, the underlying mechanisms remain unclear. We have previously reported that hepatocyte death locally induc...

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Autores principales: Itoh, Michiko, Tamura, Atsushi, Kanai, Sayaka, Tanaka, Miyako, Kanamori, Yohei, Shirakawa, Ibuki, Ito, Ayaka, Oka, Yasuyoshi, Hidaka, Isao, Takami, Taro, Honda, Yasushi, Maeda, Mitsuyo, Saito, Yasuyuki, Murata, Yoji, Matozaki, Takashi, Nakajima, Atsushi, Kataoka, Yosky, Ogi, Tomoo, Ogawa, Yoshihiro, Suganami, Takayoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10506914/
https://www.ncbi.nlm.nih.gov/pubmed/37725372
http://dx.doi.org/10.1084/jem.20220681
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author Itoh, Michiko
Tamura, Atsushi
Kanai, Sayaka
Tanaka, Miyako
Kanamori, Yohei
Shirakawa, Ibuki
Ito, Ayaka
Oka, Yasuyoshi
Hidaka, Isao
Takami, Taro
Honda, Yasushi
Maeda, Mitsuyo
Saito, Yasuyuki
Murata, Yoji
Matozaki, Takashi
Nakajima, Atsushi
Kataoka, Yosky
Ogi, Tomoo
Ogawa, Yoshihiro
Suganami, Takayoshi
author_facet Itoh, Michiko
Tamura, Atsushi
Kanai, Sayaka
Tanaka, Miyako
Kanamori, Yohei
Shirakawa, Ibuki
Ito, Ayaka
Oka, Yasuyoshi
Hidaka, Isao
Takami, Taro
Honda, Yasushi
Maeda, Mitsuyo
Saito, Yasuyuki
Murata, Yoji
Matozaki, Takashi
Nakajima, Atsushi
Kataoka, Yosky
Ogi, Tomoo
Ogawa, Yoshihiro
Suganami, Takayoshi
author_sort Itoh, Michiko
collection PubMed
description Accumulation of lipotoxic lipids, such as free cholesterol, induces hepatocyte death and subsequent inflammation and fibrosis in the pathogenesis of nonalcoholic steatohepatitis (NASH). However, the underlying mechanisms remain unclear. We have previously reported that hepatocyte death locally induces phenotypic changes in the macrophages surrounding the corpse and remnant lipids, thereby promoting liver fibrosis in a murine model of NASH. Here, we demonstrated that lysosomal cholesterol overload triggers lysosomal dysfunction and profibrotic activation of macrophages during the development of NASH. β-cyclodextrin polyrotaxane (βCD-PRX), a unique supramolecule, is designed to elicit free cholesterol from lysosomes. Treatment with βCD-PRX ameliorated cholesterol accumulation and profibrotic activation of macrophages surrounding dead hepatocytes with cholesterol crystals, thereby suppressing liver fibrosis in a NASH model, without affecting the hepatic cholesterol levels. In vitro experiments revealed that cholesterol-induced lysosomal stress triggered profibrotic activation in macrophages predisposed to the steatotic microenvironment. This study provides evidence that dysregulated cholesterol metabolism in macrophages would be a novel mechanism of NASH.
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spelling pubmed-105069142023-09-20 Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH Itoh, Michiko Tamura, Atsushi Kanai, Sayaka Tanaka, Miyako Kanamori, Yohei Shirakawa, Ibuki Ito, Ayaka Oka, Yasuyoshi Hidaka, Isao Takami, Taro Honda, Yasushi Maeda, Mitsuyo Saito, Yasuyuki Murata, Yoji Matozaki, Takashi Nakajima, Atsushi Kataoka, Yosky Ogi, Tomoo Ogawa, Yoshihiro Suganami, Takayoshi J Exp Med Article Accumulation of lipotoxic lipids, such as free cholesterol, induces hepatocyte death and subsequent inflammation and fibrosis in the pathogenesis of nonalcoholic steatohepatitis (NASH). However, the underlying mechanisms remain unclear. We have previously reported that hepatocyte death locally induces phenotypic changes in the macrophages surrounding the corpse and remnant lipids, thereby promoting liver fibrosis in a murine model of NASH. Here, we demonstrated that lysosomal cholesterol overload triggers lysosomal dysfunction and profibrotic activation of macrophages during the development of NASH. β-cyclodextrin polyrotaxane (βCD-PRX), a unique supramolecule, is designed to elicit free cholesterol from lysosomes. Treatment with βCD-PRX ameliorated cholesterol accumulation and profibrotic activation of macrophages surrounding dead hepatocytes with cholesterol crystals, thereby suppressing liver fibrosis in a NASH model, without affecting the hepatic cholesterol levels. In vitro experiments revealed that cholesterol-induced lysosomal stress triggered profibrotic activation in macrophages predisposed to the steatotic microenvironment. This study provides evidence that dysregulated cholesterol metabolism in macrophages would be a novel mechanism of NASH. Rockefeller University Press 2023-09-19 /pmc/articles/PMC10506914/ /pubmed/37725372 http://dx.doi.org/10.1084/jem.20220681 Text en © 2023 Itoh et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Itoh, Michiko
Tamura, Atsushi
Kanai, Sayaka
Tanaka, Miyako
Kanamori, Yohei
Shirakawa, Ibuki
Ito, Ayaka
Oka, Yasuyoshi
Hidaka, Isao
Takami, Taro
Honda, Yasushi
Maeda, Mitsuyo
Saito, Yasuyuki
Murata, Yoji
Matozaki, Takashi
Nakajima, Atsushi
Kataoka, Yosky
Ogi, Tomoo
Ogawa, Yoshihiro
Suganami, Takayoshi
Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH
title Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH
title_full Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH
title_fullStr Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH
title_full_unstemmed Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH
title_short Lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of NASH
title_sort lysosomal cholesterol overload in macrophages promotes liver fibrosis in a mouse model of nash
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10506914/
https://www.ncbi.nlm.nih.gov/pubmed/37725372
http://dx.doi.org/10.1084/jem.20220681
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