Author
Listed:
- Shuangshuang Ma
(Zhejiang University School of Medicine
Zhejiang University)
- Min Chen
(Zhejiang University
Zhejiang University School of Medicine)
- Yihao Jiang
(Zhejiang University
Zhejiang University School of Medicine)
- Xinkuan Xiang
(Zhejiang University)
- Shiqi Wang
(Zhejiang University)
- Zuohang Wu
(Zhejiang University)
- Shuo Li
(Zhejiang University)
- Yihui Cui
(Zhejiang University)
- Junying Wang
(Zhejiang University)
- Yanqing Zhu
(Zhejiang University)
- Yan Zhang
(Zhejiang University)
- Huan Ma
(Zhejiang University)
- Shumin Duan
(Zhejiang University)
- Haohong Li
(Zhejiang University)
- Yan Yang
(Zhejiang University
Zhejiang University School of Medicine)
- Christopher J. Lingle
(Washington University School of Medicine)
- Hailan Hu
(Zhejiang University School of Medicine
Zhejiang University
Zhejiang University School of Medicine)
Abstract
Ketamine, an N-methyl-d-aspartate receptor (NMDAR) antagonist1, has revolutionized the treatment of depression because of its potent, rapid and sustained antidepressant effects2–4. Although the elimination half-life of ketamine is only 13 min in mice5, its antidepressant activities can last for at least 24 h6–9. This large discrepancy poses an interesting basic biological question and has strong clinical implications. Here we demonstrate that after a single systemic injection, ketamine continues to suppress burst firing and block NMDARs in the lateral habenula (LHb) for up to 24 h. This long inhibition of NMDARs is not due to endocytosis but depends on the use-dependent trapping of ketamine in NMDARs. The rate of untrapping is regulated by neural activity. Harnessing the dynamic equilibrium of ketamine–NMDAR interactions by activating the LHb and opening local NMDARs at different plasma ketamine concentrations, we were able to either shorten or prolong the antidepressant effects of ketamine in vivo. These results provide new insights into the causal mechanisms of the sustained antidepressant effects of ketamine. The ability to modulate the duration of ketamine action based on the biophysical properties of ketamine–NMDAR interactions opens up new opportunities for the therapeutic use of ketamine.
Suggested Citation
Shuangshuang Ma & Min Chen & Yihao Jiang & Xinkuan Xiang & Shiqi Wang & Zuohang Wu & Shuo Li & Yihui Cui & Junying Wang & Yanqing Zhu & Yan Zhang & Huan Ma & Shumin Duan & Haohong Li & Yan Yang & Chri, 2023.
"Sustained antidepressant effect of ketamine through NMDAR trapping in the LHb,"
Nature, Nature, vol. 622(7984), pages 802-809, October.
Handle:
RePEc:nat:nature:v:622:y:2023:i:7984:d:10.1038_s41586-023-06624-1
DOI: 10.1038/s41586-023-06624-1
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Cited by:
- Ren, Xiufang & Lu, Yao & Luo, Jie & Zeng, Xudong, 2024.
"Response solutions for a kind of quasi-periodic forced neuron system,"
Chaos, Solitons & Fractals, Elsevier, vol. 179(C).
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