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Central Role of Hypothalamic Circuits for Acupuncture's Anti‐Parkinsonian Effects

Authors
Oh, Ju‐YoungLee, HyowonJang, Sun‐YoungKim, HyunjinPark, GeunhongSerikov, AlmasJang, Jae‐HwanKim, JunyeopYang, SeulkeeSa, MoonsunLee, Sung EunHan, Young‐EunHwang, Tae‐YeonJung, Sharon JiyoonKim, Hee YoungLee, Seung EunOh, Soo‐JinKim, JeongjinKim, JeongyeonKim, JongpilMcHugh, Thomas J.Lee, C. JustinNam, Min‐HoPark, Hi‐Joon
Issue Date
Aug-2024
Publisher
Wiley
Citation
Advanced Science
Journal Title
Advanced Science
URI
http://scholarworks.bwise.kr/kbri/handle/2023.sw.kbri/1211
DOI
10.1002/advs.202403245
ISSN
2198-3844
Abstract
<jats:title>Abstract</jats:title><jats:p>Despite clinical data stretching over millennia, the neurobiological basis of the effectiveness of acupuncture in treating diseases of the central nervous system has remained elusive. Here, using an established model of acupuncture treatment in Parkinson's disease (PD) model mice, we show that peripheral acupuncture stimulation activates hypothalamic melanin‐concentrating hormone (MCH) neurons via nerve conduction. We further identify two separate neural pathways originating from anatomically and electrophysiologically distinct MCH neuronal subpopulations, projecting to the substantia nigra and hippocampus, respectively. Through chemogenetic manipulation specifically targeting these MCH projections, their respective roles in mediating the acupuncture‐induced motor recovery and memory improvements following PD onset are demonstrated, as well as the underlying mechanisms mediating recovery from dopaminergic neurodegeneration, reactive gliosis, and impaired hippocampal synaptic plasticity. Collectively, these MCH neurons constitute not only a circuit‐based explanation for the therapeutic effectiveness of traditional acupuncture, but also a potential cellular target for treating both motor and non‐motor PD symptoms.</jats:p>
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연구본부 (정서·인지질환 연구그룹)
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