Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathway

Spinal cord injury-induced motor dysfunction is associated with neuroinflammation. Studies have shown that the triterpenoid lupenone, a natural product found in various plants, has a remarkable anti-inflammatory effect in the context of chronic inflammation. However, the effects of lupenone on acute...

全面介紹

書目詳細資料
發表在:Neural Regeneration Research
Main Authors: Fudong Li, Xiaofei Sun, Kaiqiang Sun, Fanqi Kong, Xin Jiang, Qingjie Kong
格式: Article
語言:英语
出版: Wolters Kluwer Medknow Publications 2024-01-01
主題:
在線閱讀:http://www.nrronline.org/article.asp?issn=1673-5374;year=2024;volume=19;issue=8;spage=1802;epage=1811;aulast=
_version_ 1850381968695361536
author Fudong Li
Xiaofei Sun
Kaiqiang Sun
Fanqi Kong
Xin Jiang
Qingjie Kong
author_facet Fudong Li
Xiaofei Sun
Kaiqiang Sun
Fanqi Kong
Xin Jiang
Qingjie Kong
author_sort Fudong Li
collection DOAJ
container_title Neural Regeneration Research
description Spinal cord injury-induced motor dysfunction is associated with neuroinflammation. Studies have shown that the triterpenoid lupenone, a natural product found in various plants, has a remarkable anti-inflammatory effect in the context of chronic inflammation. However, the effects of lupenone on acute inflammation induced by spinal cord injury remain unknown. In this study, we established an impact-induced mouse model of spinal cord injury, and then treated the injured mice with lupenone (8 mg/kg, twice a day) by intraperitoneal injection. We also treated BV2 cells with lipopolysaccharide and adenosine 5′-triphosphate to simulate the inflammatory response after spinal cord injury. Our results showed that lupenone reduced IκBα activation and p65 nuclear translocation, inhibited NLRP3 inflammasome function by modulating nuclear factor kappa B, and enhanced the conversion of proinflammatory M1 microglial cells into anti-inflammatory M2 microglial cells. Furthermore, lupenone decreased NLRP3 inflammasome activation, NLRP3-induced microglial cell polarization, and microglia pyroptosis by inhibiting the nuclear factor kappa B pathway. These findings suggest that lupenone protects against spinal cord injury by inhibiting inflammasomes.
format Article
id doaj-art-db2f3d3ff89f4e4fadb6dc5059b00ae9
institution Directory of Open Access Journals
issn 1673-5374
language English
publishDate 2024-01-01
publisher Wolters Kluwer Medknow Publications
record_format Article
spelling doaj-art-db2f3d3ff89f4e4fadb6dc5059b00ae92025-08-19T22:57:14ZengWolters Kluwer Medknow PublicationsNeural Regeneration Research1673-53742024-01-011981802181110.4103/1673-5374.389302Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathwayFudong LiXiaofei SunKaiqiang SunFanqi KongXin JiangQingjie KongSpinal cord injury-induced motor dysfunction is associated with neuroinflammation. Studies have shown that the triterpenoid lupenone, a natural product found in various plants, has a remarkable anti-inflammatory effect in the context of chronic inflammation. However, the effects of lupenone on acute inflammation induced by spinal cord injury remain unknown. In this study, we established an impact-induced mouse model of spinal cord injury, and then treated the injured mice with lupenone (8 mg/kg, twice a day) by intraperitoneal injection. We also treated BV2 cells with lipopolysaccharide and adenosine 5′-triphosphate to simulate the inflammatory response after spinal cord injury. Our results showed that lupenone reduced IκBα activation and p65 nuclear translocation, inhibited NLRP3 inflammasome function by modulating nuclear factor kappa B, and enhanced the conversion of proinflammatory M1 microglial cells into anti-inflammatory M2 microglial cells. Furthermore, lupenone decreased NLRP3 inflammasome activation, NLRP3-induced microglial cell polarization, and microglia pyroptosis by inhibiting the nuclear factor kappa B pathway. These findings suggest that lupenone protects against spinal cord injury by inhibiting inflammasomes.http://www.nrronline.org/article.asp?issn=1673-5374;year=2024;volume=19;issue=8;spage=1802;epage=1811;aulast=inflammasome; inflammation; lupenone; microglia; polarization; pyroptosis; spinal cord injury
spellingShingle Fudong Li
Xiaofei Sun
Kaiqiang Sun
Fanqi Kong
Xin Jiang
Qingjie Kong
Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathway
inflammasome; inflammation; lupenone; microglia; polarization; pyroptosis; spinal cord injury
title Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathway
title_full Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathway
title_fullStr Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathway
title_full_unstemmed Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathway
title_short Lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa B pathway
title_sort lupenone improves motor dysfunction in spinal cord injury mice through inhibiting the inflammasome activation and pyroptosis in microglia via the nuclear factor kappa b pathway
topic inflammasome; inflammation; lupenone; microglia; polarization; pyroptosis; spinal cord injury
url http://www.nrronline.org/article.asp?issn=1673-5374;year=2024;volume=19;issue=8;spage=1802;epage=1811;aulast=
work_keys_str_mv AT fudongli lupenoneimprovesmotordysfunctioninspinalcordinjurymicethroughinhibitingtheinflammasomeactivationandpyroptosisinmicrogliaviathenuclearfactorkappabpathway
AT xiaofeisun lupenoneimprovesmotordysfunctioninspinalcordinjurymicethroughinhibitingtheinflammasomeactivationandpyroptosisinmicrogliaviathenuclearfactorkappabpathway
AT kaiqiangsun lupenoneimprovesmotordysfunctioninspinalcordinjurymicethroughinhibitingtheinflammasomeactivationandpyroptosisinmicrogliaviathenuclearfactorkappabpathway
AT fanqikong lupenoneimprovesmotordysfunctioninspinalcordinjurymicethroughinhibitingtheinflammasomeactivationandpyroptosisinmicrogliaviathenuclearfactorkappabpathway
AT xinjiang lupenoneimprovesmotordysfunctioninspinalcordinjurymicethroughinhibitingtheinflammasomeactivationandpyroptosisinmicrogliaviathenuclearfactorkappabpathway
AT qingjiekong lupenoneimprovesmotordysfunctioninspinalcordinjurymicethroughinhibitingtheinflammasomeactivationandpyroptosisinmicrogliaviathenuclearfactorkappabpathway