miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead Exposure

Hypertension is not merely a vascular disorder but a significant risk factor for neural impairment. Moreover, healthcare for the hypertensive population with environmental or occupational pollutants has become an issue of increasing concern in public health. As a traditional neurotoxic heavy metal,...

Full description

Saved in:
Bibliographic Details
Main Authors: Yuran Wang, Zeming Wang, Han Hao, Yuwei Zhao, Jian Wang, Weixuan Wang
Format: Article
Language:English
Published: MDPI AG 2025-01-01
Series:Toxics
Subjects:
Online Access:https://www.mdpi.com/2305-6304/13/1/37
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832587435825954816
author Yuran Wang
Zeming Wang
Han Hao
Yuwei Zhao
Jian Wang
Weixuan Wang
author_facet Yuran Wang
Zeming Wang
Han Hao
Yuwei Zhao
Jian Wang
Weixuan Wang
author_sort Yuran Wang
collection DOAJ
description Hypertension is not merely a vascular disorder but a significant risk factor for neural impairment. Moreover, healthcare for the hypertensive population with environmental or occupational pollutants has become an issue of increasing concern in public health. As a traditional neurotoxic heavy metal, Pb exposure results in neuroinflammation as well as neurodegenerative diseases. The current study aimed to investigate the mechanisms of neuroinflammation in hypertensive mice exposed to Pb. We demonstrated that hypertension exacerbated Pb-induced neuroinflammation in the prefrontal cortex (PFC), hippocampus, and hypothalamus, as evidenced by increased levels of proinflammatory cytokines (IL-6 and TNF-α) and decreased levels of anti-inflammatory cytokines (CD206 and IL-10). Additionally, hypertension enhanced the neuroinflammatory response in microglia, as indicated by similar changes in cytokine expression in an in vitro cell model. Importantly, we found that TREM2, a key regulator of microglial inflammation, was downregulated in hypertensive mice with Pb exposure. This decline in TREM2 expression was associated with increased proteolysis of TREM2 by a disintegrin and metalloproteases 10 (ADAM10) as well as a disintegrin and metalloproteases 17 (ADAM17), in which ADAM17 was verified as the main cleavage enzyme in terms of TREM2 proteolytic cleavage in hypertensive mice following Pb exposure. Furthermore, we identified miR-26a-5p as a potential regulator of ADAM17 expression, suggesting a potential mechanism for the downregulation of TREM2 in this context. Our findings provided new insights into the complex interplay between hypertension, Pb exposure, and neuroinflammation as well as highlight the potential role of TREM2, ADAM17, and miR-26a-5p as therapeutic targets for neuroinflammation in hypertensive populations with Pb exposure.
format Article
id doaj-art-8217ffde65d54b0da5a40ec18385cee6
institution Kabale University
issn 2305-6304
language English
publishDate 2025-01-01
publisher MDPI AG
record_format Article
series Toxics
spelling doaj-art-8217ffde65d54b0da5a40ec18385cee62025-01-24T13:51:01ZengMDPI AGToxics2305-63042025-01-011313710.3390/toxics13010037miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead ExposureYuran Wang0Zeming Wang1Han Hao2Yuwei Zhao3Jian Wang4Weixuan Wang5School of Public Health, North China University of Science and Technology, Tangshan 063210, ChinaSchool of Public Health, North China University of Science and Technology, Tangshan 063210, ChinaSchool of Public Health, North China University of Science and Technology, Tangshan 063210, ChinaSchool of Public Health, North China University of Science and Technology, Tangshan 063210, ChinaThe Laboratory Animal Center, North China University of Science and Technology, Tangshan 063210, ChinaSchool of Public Health, North China University of Science and Technology, Tangshan 063210, ChinaHypertension is not merely a vascular disorder but a significant risk factor for neural impairment. Moreover, healthcare for the hypertensive population with environmental or occupational pollutants has become an issue of increasing concern in public health. As a traditional neurotoxic heavy metal, Pb exposure results in neuroinflammation as well as neurodegenerative diseases. The current study aimed to investigate the mechanisms of neuroinflammation in hypertensive mice exposed to Pb. We demonstrated that hypertension exacerbated Pb-induced neuroinflammation in the prefrontal cortex (PFC), hippocampus, and hypothalamus, as evidenced by increased levels of proinflammatory cytokines (IL-6 and TNF-α) and decreased levels of anti-inflammatory cytokines (CD206 and IL-10). Additionally, hypertension enhanced the neuroinflammatory response in microglia, as indicated by similar changes in cytokine expression in an in vitro cell model. Importantly, we found that TREM2, a key regulator of microglial inflammation, was downregulated in hypertensive mice with Pb exposure. This decline in TREM2 expression was associated with increased proteolysis of TREM2 by a disintegrin and metalloproteases 10 (ADAM10) as well as a disintegrin and metalloproteases 17 (ADAM17), in which ADAM17 was verified as the main cleavage enzyme in terms of TREM2 proteolytic cleavage in hypertensive mice following Pb exposure. Furthermore, we identified miR-26a-5p as a potential regulator of ADAM17 expression, suggesting a potential mechanism for the downregulation of TREM2 in this context. Our findings provided new insights into the complex interplay between hypertension, Pb exposure, and neuroinflammation as well as highlight the potential role of TREM2, ADAM17, and miR-26a-5p as therapeutic targets for neuroinflammation in hypertensive populations with Pb exposure.https://www.mdpi.com/2305-6304/13/1/37hypertensionPb exposuremiR-26a-5pADAM17microgliaTREM2
spellingShingle Yuran Wang
Zeming Wang
Han Hao
Yuwei Zhao
Jian Wang
Weixuan Wang
miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead Exposure
Toxics
hypertension
Pb exposure
miR-26a-5p
ADAM17
microglia
TREM2
title miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead Exposure
title_full miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead Exposure
title_fullStr miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead Exposure
title_full_unstemmed miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead Exposure
title_short miR-26a-5p/ADAM17-Mediated Proteolysis of TREM2 Regulates Neuroinflammation in Hypertensive Mice Following Lead Exposure
title_sort mir 26a 5p adam17 mediated proteolysis of trem2 regulates neuroinflammation in hypertensive mice following lead exposure
topic hypertension
Pb exposure
miR-26a-5p
ADAM17
microglia
TREM2
url https://www.mdpi.com/2305-6304/13/1/37
work_keys_str_mv AT yuranwang mir26a5padam17mediatedproteolysisoftrem2regulatesneuroinflammationinhypertensivemicefollowingleadexposure
AT zemingwang mir26a5padam17mediatedproteolysisoftrem2regulatesneuroinflammationinhypertensivemicefollowingleadexposure
AT hanhao mir26a5padam17mediatedproteolysisoftrem2regulatesneuroinflammationinhypertensivemicefollowingleadexposure
AT yuweizhao mir26a5padam17mediatedproteolysisoftrem2regulatesneuroinflammationinhypertensivemicefollowingleadexposure
AT jianwang mir26a5padam17mediatedproteolysisoftrem2regulatesneuroinflammationinhypertensivemicefollowingleadexposure
AT weixuanwang mir26a5padam17mediatedproteolysisoftrem2regulatesneuroinflammationinhypertensivemicefollowingleadexposure