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CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque
Vascular calcification (VC) is concomitant with atherosclerosis, yet it remains uncertain why rupture-prone high-risk plaques do not typically show extensive calcification. Intraplaque hemorrhage (IPH) deposits erythrocyte-derived cholesterol, enlarging the necrotic core and promoting high-risk plaq...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Society for Clinical Investigation
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10077470/ https://www.ncbi.nlm.nih.gov/pubmed/36719758 http://dx.doi.org/10.1172/jci.insight.154922 |
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author | Sakamoto, Atsushi Kawakami, Rika Mori, Masayuki Guo, Liang Paek, Ka Hyun Mosquera, Jose Verdezoto Cornelissen, Anne Ghosh, Saikat Kumar B. Kawai, Kenji Konishi, Takao Fernandez, Raquel Fuller, Daniela T. Xu, Weili Vozenilek, Aimee E. Sato, Yu Jinnouchi, Hiroyuki Torii, Sho Turner, Adam W. Akahori, Hirokuni Kuntz, Salome Weinkauf, Craig C. Lee, Parker J. Kutys, Robert Harris, Kathryn Killey, Alfred Lawrence Mayhew, Christina M. Ellis, Matthew Weinstein, Leah M. Gadhoke, Neel V. Dhingra, Roma Ullman, Jeremy Dikongue, Armella Romero, Maria E. Kolodgie, Frank D. Miller, Clint L. Virmani, Renu Finn, Aloke V. |
author_facet | Sakamoto, Atsushi Kawakami, Rika Mori, Masayuki Guo, Liang Paek, Ka Hyun Mosquera, Jose Verdezoto Cornelissen, Anne Ghosh, Saikat Kumar B. Kawai, Kenji Konishi, Takao Fernandez, Raquel Fuller, Daniela T. Xu, Weili Vozenilek, Aimee E. Sato, Yu Jinnouchi, Hiroyuki Torii, Sho Turner, Adam W. Akahori, Hirokuni Kuntz, Salome Weinkauf, Craig C. Lee, Parker J. Kutys, Robert Harris, Kathryn Killey, Alfred Lawrence Mayhew, Christina M. Ellis, Matthew Weinstein, Leah M. Gadhoke, Neel V. Dhingra, Roma Ullman, Jeremy Dikongue, Armella Romero, Maria E. Kolodgie, Frank D. Miller, Clint L. Virmani, Renu Finn, Aloke V. |
author_sort | Sakamoto, Atsushi |
collection | PubMed |
description | Vascular calcification (VC) is concomitant with atherosclerosis, yet it remains uncertain why rupture-prone high-risk plaques do not typically show extensive calcification. Intraplaque hemorrhage (IPH) deposits erythrocyte-derived cholesterol, enlarging the necrotic core and promoting high-risk plaque development. Pro-atherogenic CD163(+) alternative macrophages engulf hemoglobin:haptoglobin (HH) complexes at IPH sites. However, their role in VC has never been examined to our knowledge. Here we show, in human arteries, the distribution of CD163(+) macrophages correlated inversely with VC. In vitro experiments using vascular smooth muscle cells (VSMCs) cultured with HH-exposed human macrophage — M(Hb) — supernatant reduced calcification, while arteries from ApoE(–/–) CD163(–/–) mice showed greater VC. M(Hb) supernatant–exposed VSMCs showed activated NF-κB, while blocking NF-κB attenuated the anticalcific effect of M(Hb) on VSMCs. CD163(+) macrophages altered VC through NF-κB–induced transcription of hyaluronan synthase (HAS), an enzyme that catalyzes the formation of the extracellular matrix glycosaminoglycan, hyaluronan, within VSMCs. M(Hb) supernatants enhanced HAS production in VSMCs, while knocking down HAS attenuated its anticalcific effect. NF-κB blockade in ApoE(–/–) mice reduced hyaluronan and increased VC. In human arteries, hyaluronan and HAS were increased in areas of CD163(+) macrophage presence. Our findings highlight an important mechanism by which CD163(+) macrophages inhibit VC through NF-κB–induced HAS augmentation and thus promote the high-risk plaque development. |
format | Online Article Text |
id | pubmed-10077470 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Society for Clinical Investigation |
record_format | MEDLINE/PubMed |
spelling | pubmed-100774702023-04-07 CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque Sakamoto, Atsushi Kawakami, Rika Mori, Masayuki Guo, Liang Paek, Ka Hyun Mosquera, Jose Verdezoto Cornelissen, Anne Ghosh, Saikat Kumar B. Kawai, Kenji Konishi, Takao Fernandez, Raquel Fuller, Daniela T. Xu, Weili Vozenilek, Aimee E. Sato, Yu Jinnouchi, Hiroyuki Torii, Sho Turner, Adam W. Akahori, Hirokuni Kuntz, Salome Weinkauf, Craig C. Lee, Parker J. Kutys, Robert Harris, Kathryn Killey, Alfred Lawrence Mayhew, Christina M. Ellis, Matthew Weinstein, Leah M. Gadhoke, Neel V. Dhingra, Roma Ullman, Jeremy Dikongue, Armella Romero, Maria E. Kolodgie, Frank D. Miller, Clint L. Virmani, Renu Finn, Aloke V. JCI Insight Research Article Vascular calcification (VC) is concomitant with atherosclerosis, yet it remains uncertain why rupture-prone high-risk plaques do not typically show extensive calcification. Intraplaque hemorrhage (IPH) deposits erythrocyte-derived cholesterol, enlarging the necrotic core and promoting high-risk plaque development. Pro-atherogenic CD163(+) alternative macrophages engulf hemoglobin:haptoglobin (HH) complexes at IPH sites. However, their role in VC has never been examined to our knowledge. Here we show, in human arteries, the distribution of CD163(+) macrophages correlated inversely with VC. In vitro experiments using vascular smooth muscle cells (VSMCs) cultured with HH-exposed human macrophage — M(Hb) — supernatant reduced calcification, while arteries from ApoE(–/–) CD163(–/–) mice showed greater VC. M(Hb) supernatant–exposed VSMCs showed activated NF-κB, while blocking NF-κB attenuated the anticalcific effect of M(Hb) on VSMCs. CD163(+) macrophages altered VC through NF-κB–induced transcription of hyaluronan synthase (HAS), an enzyme that catalyzes the formation of the extracellular matrix glycosaminoglycan, hyaluronan, within VSMCs. M(Hb) supernatants enhanced HAS production in VSMCs, while knocking down HAS attenuated its anticalcific effect. NF-κB blockade in ApoE(–/–) mice reduced hyaluronan and increased VC. In human arteries, hyaluronan and HAS were increased in areas of CD163(+) macrophage presence. Our findings highlight an important mechanism by which CD163(+) macrophages inhibit VC through NF-κB–induced HAS augmentation and thus promote the high-risk plaque development. American Society for Clinical Investigation 2023-03-08 /pmc/articles/PMC10077470/ /pubmed/36719758 http://dx.doi.org/10.1172/jci.insight.154922 Text en © 2023 Virmani, et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Research Article Sakamoto, Atsushi Kawakami, Rika Mori, Masayuki Guo, Liang Paek, Ka Hyun Mosquera, Jose Verdezoto Cornelissen, Anne Ghosh, Saikat Kumar B. Kawai, Kenji Konishi, Takao Fernandez, Raquel Fuller, Daniela T. Xu, Weili Vozenilek, Aimee E. Sato, Yu Jinnouchi, Hiroyuki Torii, Sho Turner, Adam W. Akahori, Hirokuni Kuntz, Salome Weinkauf, Craig C. Lee, Parker J. Kutys, Robert Harris, Kathryn Killey, Alfred Lawrence Mayhew, Christina M. Ellis, Matthew Weinstein, Leah M. Gadhoke, Neel V. Dhingra, Roma Ullman, Jeremy Dikongue, Armella Romero, Maria E. Kolodgie, Frank D. Miller, Clint L. Virmani, Renu Finn, Aloke V. CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque |
title | CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque |
title_full | CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque |
title_fullStr | CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque |
title_full_unstemmed | CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque |
title_short | CD163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque |
title_sort | cd163(+) macrophages restrain vascular calcification, promoting the development of high-risk plaque |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10077470/ https://www.ncbi.nlm.nih.gov/pubmed/36719758 http://dx.doi.org/10.1172/jci.insight.154922 |
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