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Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway

BACKGROUNDS: We recently reported that Naoxintong (NXT), a China Food and Drug Administration (FDA)-approved cardiac medicine, could reduce the plaque size, but the underlying mechanism remains elusive now. OBJECTIVE: In this study, we investigated the effects of NXT on foam cell accumulation both i...

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Autores principales: Wang, Zeng, Shi, Huairui, Zhao, Huan, Dong, Zhen, Zhao, Buchang, Weng, Xinyu, Liu, Rongle, Hu, Kai, Zou, Yunzeng, Sun, Aijun, Ge, Junbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bentham Science Publishers 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6463403/
https://www.ncbi.nlm.nih.gov/pubmed/30734676
http://dx.doi.org/10.2174/1566524019666190207143207
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author Wang, Zeng
Shi, Huairui
Zhao, Huan
Dong, Zhen
Zhao, Buchang
Weng, Xinyu
Liu, Rongle
Hu, Kai
Zou, Yunzeng
Sun, Aijun
Ge, Junbo
author_facet Wang, Zeng
Shi, Huairui
Zhao, Huan
Dong, Zhen
Zhao, Buchang
Weng, Xinyu
Liu, Rongle
Hu, Kai
Zou, Yunzeng
Sun, Aijun
Ge, Junbo
author_sort Wang, Zeng
collection PubMed
description BACKGROUNDS: We recently reported that Naoxintong (NXT), a China Food and Drug Administration (FDA)-approved cardiac medicine, could reduce the plaque size, but the underlying mechanism remains elusive now. OBJECTIVE: In this study, we investigated the effects of NXT on foam cell accumulation both in vivo and in vitro and explored related mechanisms. METHOD: THP-1 cells and bone marrow-derived macrophages were incubated with oxidized low-density lipoprotein (ox-LDL) with/without Naoxintong. ApoE-/- mice fed an atherogenic diet were administered to receive NXT for eight weeks. Macrophage-derived foam cell formation in plaques was measured by immunohistochemical staining. Expression of proteins was evaluated by Western blot. Lentivirus was used to knockdown PPARα in THP-1 cells. RESULTS: After NXT treatment, foam cell accumulation was significantly reduced in atherosclerotic plaques. Further investigation revealed that oxidized low-density lipoprotein (ox-LDL) uptake was significantly decreased and expression of scavenger receptor class A (SR-A) and class B (SR-B and CD36) was significantly downregulated post-NXT treatment. On the other hand, NXT increased cholesterol efflux and upregulated ATP-binding cassette (ABC) transporters (ABCA-1 and ABCG-1) in macrophages. Above beneficial effects of NXT were partly abolished after lentiviral knockdown of PPARα. CONCLUSION: Our findings suggest that NXT could retard atherosclerosis by inhibiting foam cell formation through reducing ox-LDL uptake and enhancing cholesterol efflux and above beneficial effects are partly mediated through PPARα pathway.
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spelling pubmed-64634032019-05-01 Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway Wang, Zeng Shi, Huairui Zhao, Huan Dong, Zhen Zhao, Buchang Weng, Xinyu Liu, Rongle Hu, Kai Zou, Yunzeng Sun, Aijun Ge, Junbo Curr Mol Med Article BACKGROUNDS: We recently reported that Naoxintong (NXT), a China Food and Drug Administration (FDA)-approved cardiac medicine, could reduce the plaque size, but the underlying mechanism remains elusive now. OBJECTIVE: In this study, we investigated the effects of NXT on foam cell accumulation both in vivo and in vitro and explored related mechanisms. METHOD: THP-1 cells and bone marrow-derived macrophages were incubated with oxidized low-density lipoprotein (ox-LDL) with/without Naoxintong. ApoE-/- mice fed an atherogenic diet were administered to receive NXT for eight weeks. Macrophage-derived foam cell formation in plaques was measured by immunohistochemical staining. Expression of proteins was evaluated by Western blot. Lentivirus was used to knockdown PPARα in THP-1 cells. RESULTS: After NXT treatment, foam cell accumulation was significantly reduced in atherosclerotic plaques. Further investigation revealed that oxidized low-density lipoprotein (ox-LDL) uptake was significantly decreased and expression of scavenger receptor class A (SR-A) and class B (SR-B and CD36) was significantly downregulated post-NXT treatment. On the other hand, NXT increased cholesterol efflux and upregulated ATP-binding cassette (ABC) transporters (ABCA-1 and ABCG-1) in macrophages. Above beneficial effects of NXT were partly abolished after lentiviral knockdown of PPARα. CONCLUSION: Our findings suggest that NXT could retard atherosclerosis by inhibiting foam cell formation through reducing ox-LDL uptake and enhancing cholesterol efflux and above beneficial effects are partly mediated through PPARα pathway. Bentham Science Publishers 2018-12 2018-12 /pmc/articles/PMC6463403/ /pubmed/30734676 http://dx.doi.org/10.2174/1566524019666190207143207 Text en © 2018 Bentham Science Publishers https://creativecommons.org/licenses/by-nc/4.0/legalcode This is an open access article licensed under the terms of the Creative Commons Attribution-Non-Commercial 4.0 International Public License (CC BY-NC 4.0) (https://creativecommons.org/licenses/by-nc/4.0/legalcode), which permits unrestricted, non-commercial use, distribution and reproduction in any medium, provided the work is properly cited.
spellingShingle Article
Wang, Zeng
Shi, Huairui
Zhao, Huan
Dong, Zhen
Zhao, Buchang
Weng, Xinyu
Liu, Rongle
Hu, Kai
Zou, Yunzeng
Sun, Aijun
Ge, Junbo
Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway
title Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway
title_full Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway
title_fullStr Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway
title_full_unstemmed Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway
title_short Naoxintong Retards Atherosclerosis by Inhibiting Foam Cell Formation through Activating PPARα Pathway
title_sort naoxintong retards atherosclerosis by inhibiting foam cell formation through activating pparα pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6463403/
https://www.ncbi.nlm.nih.gov/pubmed/30734676
http://dx.doi.org/10.2174/1566524019666190207143207
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