Author
Listed:
- Shuhui Sun
(Chinese Academy of Sciences
Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine)
- Jiaming Li
(Chinese Academy of Sciences and China National Center for Bioinformation
University of Chinese Academy of Sciences)
- Si Wang
(Xuanwu Hospital Capital Medical University
Capital Medical University
Aging Biomarker Consortium
The Fifth People’s Hospital of Chongqing)
- Jingyi Li
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine
University of Chinese Academy of Sciences)
- Jie Ren
(Chinese Academy of Sciences
Chinese Academy of Sciences and China National Center for Bioinformation
University of Chinese Academy of Sciences
Aging Biomarker Consortium)
- Zhaoshi Bao
(Capital Medical University
The Chinese Glioma Genome Atlas)
- Le Sun
(Capital Medical University)
- Xibo Ma
(Chinese Academy of Sciences
University of Chinese Academy of Sciences
Northeastern University)
- Fangshuo Zheng
(The Fifth People’s Hospital of Chongqing)
- Shuai Ma
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine
University of Chinese Academy of Sciences)
- Liang Sun
(Aging Biomarker Consortium
National Center of Gerontology)
- Min Wang
(Chinese Academy of Sciences
University of Science and Technology of China)
- Yan Yu
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Miyang Ma
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Qiaoran Wang
(Chinese Academy of Sciences and China National Center for Bioinformation
University of Chinese Academy of Sciences)
- Zhiyuan Chen
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- He Ma
(Chinese Academy of Sciences
Northeastern University)
- Xuebao Wang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Zeming Wu
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine)
- Hui Zhang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Kaowen Yan
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine)
- Yuanhan Yang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Yixin Zhang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Sheng Zhang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Jinghui Lei
(Xuanwu Hospital Capital Medical University
Capital Medical University)
- Zhao-Qian Teng
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine
University of Chinese Academy of Sciences)
- Chang-Mei Liu
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine
University of Chinese Academy of Sciences)
- Ge Bai
(Zhejiang University School of Brain Science and Brain Medicine)
- Yan-Jiang Wang
(Aging Biomarker Consortium
Third Military Medical University
Third Military Medical University)
- Jian Li
(Aging Biomarker Consortium
National Center of Gerontology)
- Xiaoqun Wang
(Capital Medical University
Beijing Normal University)
- Guoguang Zhao
(Xuanwu Hospital Capital Medical University
Clinical Research Center for Epilepsy Capital Medical University
Beijing Municipal Geriatric Medical Research Center)
- Tao Jiang
(Capital Medical University
The Chinese Glioma Genome Atlas
Beijing Neurosurgical Institute)
- Juan Carlos Izpisua Belmonte
(Altos Labs)
- Jing Qu
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine
University of Chinese Academy of Sciences)
- Weiqi Zhang
(Chinese Academy of Sciences
Chinese Academy of Sciences and China National Center for Bioinformation
University of Chinese Academy of Sciences
Aging Biomarker Consortium)
- Guang-Hui Liu
(Chinese Academy of Sciences
Chinese Academy of Sciences
Beijing Institute for Stem Cell and Regenerative Medicine
University of Chinese Academy of Sciences)
Abstract
Ageing is a critical factor in spinal-cord-associated disorders1, yet the ageing-specific mechanisms underlying this relationship remain poorly understood. Here, to address this knowledge gap, we combined single-nucleus RNA-sequencing analysis with behavioural and neurophysiological analysis in non-human primates (NHPs). We identified motor neuron senescence and neuroinflammation with microglial hyperactivation as intertwined hallmarks of spinal cord ageing. As an underlying mechanism, we identified a neurotoxic microglial state demarcated by elevated expression of CHIT1 (a secreted mammalian chitinase) specific to the aged spinal cords in NHP and human biopsies. In the aged spinal cord, CHIT1-positive microglia preferentially localize around motor neurons, and they have the ability to trigger senescence, partly by activating SMAD signalling. We further validated the driving role of secreted CHIT1 on MN senescence using multimodal experiments both in vivo, using the NHP spinal cord as a model, and in vitro, using a sophisticated system modelling the human motor-neuron–microenvironment interplay. Moreover, we demonstrated that ascorbic acid, a geroprotective compound, counteracted the pro-senescent effect of CHIT1 and mitigated motor neuron senescence in aged monkeys. Our findings provide the single-cell resolution cellular and molecular landscape of the aged primate spinal cord and identify a new biomarker and intervention target for spinal cord degeneration.
Suggested Citation
Shuhui Sun & Jiaming Li & Si Wang & Jingyi Li & Jie Ren & Zhaoshi Bao & Le Sun & Xibo Ma & Fangshuo Zheng & Shuai Ma & Liang Sun & Min Wang & Yan Yu & Miyang Ma & Qiaoran Wang & Zhiyuan Chen & He Ma &, 2023.
"CHIT1-positive microglia drive motor neuron ageing in the primate spinal cord,"
Nature, Nature, vol. 624(7992), pages 611-620, December.
Handle:
RePEc:nat:nature:v:624:y:2023:i:7992:d:10.1038_s41586-023-06783-1
DOI: 10.1038/s41586-023-06783-1
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