Open access · CC-BY
via OpenAlex
Age-related CCL12 Aggravates Intracerebral Hemorrhage-induced Brain Injury via Recruitment of Macrophages and T Lymphocytes
Jiacheng Huang, Guoqiang Yang, Xiaoyi Xiong, Maolin Wang, Junjie Yuan, Qin Zhang, Chang‐Xiong Gong, Zhongming Qiu, Zhaoyou Meng, Rui‐Hua Xu, Qiong Chen, Ru Chen, Lexing Xie, Qi Xie, Wenjie Zi
Aging and Disease · 2020 · ▲ 30 citations
Abstract
Circulating factors associated with aging have been shown to be involved in the development of age-related chronic and acute brain diseases. Here, we aimed to investigate the roles and mechanisms of CCL12, a circulating factor that is highly expressed in the plasma of aged rodents after intracerebral hemorrhage (ICH) using parabiosis and ICH models. Neurological deficit score (NDS), mortality rate, brain water content (BWC), and levels of inflammatory factors were determined to assess the degree of ICH-induced brain injury. Peripheral inflammatory cell infiltration was examined using immunofluorescence and flow cytometry. After confirming that acute brain injury after ICH was aggravated with age, we found that brain and plasma CCL12 levels were markedly higher in old mice than in young mice after ICH, and that plasma CCL12 was able to enter the brain. Using CCL12 -/-mice, we showed that the degree of damage in the brain-as determined by NDS, mortality rate, BWC, levels of inflammatory factors, and numbers of degenerative and apoptotic neural cells and surviving neurons was significantly attenuated compared to that observed in old wild-type (WT) mice. These effects were reversed in CCL12-treated old mice. The detrimental effects caused by CCL12 may involve its ability to recruit macrophages and T cells. Finally, the administration of an anti-CCL12 antibody markedly improved the outcomes of ICH mice. Our results are the first to indicate that elevated peripheral CCL12 levels in old mice aggravates ICH-induced brain injury by recruiting macrophages and T cells. Thus, CCL12 may be a new target for ICH treatment.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.14336/ad.2019.1229
- Canonical
- link ↗
- Fetched
- 2026-06-23 MST
Cite this
APA
Huang, J., Yang, G., Xiong, X., Wang, M., Yuan, J., Zhang, Q., Gong, C., Qiu, Z., Meng, Z., Xu, R., Chen, Q., Chen, R., Xie, L., Xie, Q., Zi, W., Jiang, G., Zhou, Y., & Yang, Q. (2020). Age-related CCL12 Aggravates Intracerebral Hemorrhage-induced Brain Injury via Recruitment of Macrophages and T Lymphocytes. <em>Aging and Disease</em>. https://doi.org/10.14336/ad.2019.1229
Vancouver
Huang J, Yang G, Xiong X, Wang M, Yuan J, Zhang Q, et al. Age-related CCL12 Aggravates Intracerebral Hemorrhage-induced Brain Injury via Recruitment of Macrophages and T Lymphocytes. Aging and Disease. 2020. doi:10.14336/ad.2019.1229.
BibTeX
@article{jiacheng2020Agerel,
title = {Age-related CCL12 Aggravates Intracerebral Hemorrhage-induced Brain Injury via Recruitment of Macrophages and T Lymphocytes},
author = {Jiacheng Huang and Guoqiang Yang and Xiaoyi Xiong and Maolin Wang and Junjie Yuan and Qin Zhang and Chang‐Xiong Gong and Zhongming Qiu and Zhaoyou Meng and Rui‐Hua Xu and Qiong Chen and Ru Chen and Lexing Xie and Qi Xie and Wenjie Zi and Guohui Jiang and Yu Zhou and Qingwu Yang},
journal = {Aging and Disease},
year = {2020},
doi = {10.14336/ad.2019.1229},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Aging Cell 2023
Open access · CC-BY
Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
Aging 2015
Open access · CC-BY
Wound healing and longevity: Lessons from long-lived αMUPA mice
The Journals of Gerontology Series A 2013
Open access · OA
Plasma Protein Biomarkers of the Geriatric Syndrome of Frailty
American journal of physiology. Regulatory, integrative and comparative physiology 2026
Citation only
Aging diminishes thymic output, reduces naive T cells, promotes memory T-cell accumulation, and impairs thymic regeneration.
npj Aging and Mechanisms of Disease 2021
Open access · CC-BY
A decrease in NAD+ contributes to the loss of osteoprogenitors and bone mass with aging
Aging Cell 2024
Open access · CC-BY