Adaptive changes in striatal projection neurons explain the long duration response and the emergence of dyskinesias in patients with Parkinson's disease

被引:8
作者
Falkenburger, Bjoern [1 ,2 ]
Kalliakoudas, Theodoros [1 ]
Reichmann, Heinz [1 ]
机构
[1] Tech Univ Dresden, Dept Neurol, Fetscherstr 74, D-01307 Dresden, Germany
[2] Deutsch Zentrum Neurodegenerat Erkrankungen DZNE, Dresden, Germany
关键词
Parkinson's disease; Striatum; Medium spiny neurons; Spiny projection neurons; Homeostatic plasticity; Dyskinesias; DOPA-INDUCED DYSKINESIA; MEDIUM SPINY NEURONS; BASAL GANGLIA; LEVODOPA; MOTOR; MECHANISMS; PLASTICITY; D1; ACTIVATION;
D O I
10.1007/s00702-022-02510-8
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Neuronal activity in the brain is tightly regulated. During operation in real time, for instance, feedback and feedforward loops limit excessive excitation. In addition, cell autonomous processes ensure that neurons' average activity is restored to a setpoint in response to chronic perturbations. These processes are summarized as homeostatic plasticity (Turrigiano in Cold Spring Harb Perspect Biol 4:a005736-a005736, 2012). In the basal ganglia, information is mainly transmitted through disinhibition, which already constraints the possible range of neuronal activity. When this tightly adjusted system is challenged by the chronic decline in dopaminergic neurotransmission in Parkinson's disease (PD), homeostatic plasticity aims to compensate for this perturbation. We here summarize recent experimental work from animals demonstrating that striatal projection neurons adapt excitability and morphology in response to chronic dopamine depletion and substitution. We relate these cellular processes to clinical observations in patients with PD that cannot be explained by the classical model of basal ganglia function. These include the long duration response to dopaminergic medication that takes weeks to develop and days to wear off. Moreover, dyskinesias are considered signs of excessive dopaminergic neurotransmission in Parkinson's disease, but they are typically more severe on the body side that is more strongly affected by dopamine depletion. We hypothesize that these clinical observations can be explained by homeostatic plasticity in the basal ganglia, suggesting that plastic changes in response to chronic dopamine depletion and substitution need to be incorporated into models of basal ganglia function. In addition, better understanding the molecular mechanism of homeostatic plasticity might offer new treatment options to avoid motor complications in patients with PD.
引用
收藏
页码:497 / 503
页数:7
相关论文
共 54 条
[21]   Molecular adaptations of striatal spiny projection neurons during levodopa-induced dyskinesia [J].
Heiman, Myriam ;
Heilbut, Adrian ;
Francardo, Veronica ;
Kulicke, Ruth ;
Fenster, Robert J. ;
Kolaczyk, Eric D. ;
Mesirov, Jill P. ;
Surmeier, Dalton J. ;
Cenci, M. Angela ;
Greengard, Paul .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2014, 111 (12) :4578-4583
[22]   The Pharmacology of L-DOPA-Induced Dyskinesia in Parkinson's Disease [J].
Huot, Philippe ;
Johnston, Tom H. ;
Koprich, James B. ;
Fox, Susan H. ;
Brotchie, Jonathan M. .
PHARMACOLOGICAL REVIEWS, 2013, 65 (01) :171-222
[23]   Neuronal oscillations in the basal ganglia and movement disorders: Evidence from whole animal and human recordings [J].
Hutchison, WD ;
Dostrovsky, JO ;
Walters, JR ;
Courtemanche, R ;
Boraud, T ;
Goldberg, J ;
Brown, P .
JOURNAL OF NEUROSCIENCE, 2004, 24 (42) :9240-9243
[24]  
Kang UJ, 2012, NEUROLOGY, V78, P1146, DOI 10.1212/WNL.0b013e31824f8056
[25]   The Spatiotemporal Organization of the Striatum Encodes Action Space [J].
Klaus, Andreas ;
Martins, Gabriela J. ;
Paixao, Vitor B. ;
Zhou, Pengcheng ;
Paninski, Liam ;
Costa, Rui M. .
NEURON, 2017, 95 (05) :1171-+
[26]   Disease duration and the integrity of the nigrostriatal system in Parkinson's disease [J].
Kordower, Jeffrey H. ;
Olanow, C. Warren ;
Dodiya, Hemraj B. ;
Chu, Yaping ;
Beach, Thomas G. ;
Adler, Charles H. ;
Halliday, Glenda M. ;
Bartus, Raymond T. .
BRAIN, 2013, 136 :2419-2431
[27]   Long-Lasting Electrophysiological After-Effects of High-Frequency Stimulation in the Globus Pallidus: Human and Rodent Slice Studies [J].
Luo, Feng ;
Kim, Linda H. ;
Magown, Philippe ;
Noor, M. Sohail ;
Kiss, Zelma H. T. .
JOURNAL OF NEUROSCIENCE, 2018, 38 (50) :10734-10746
[28]   Striatal Cholinergic Interneurons Control Motor Behavior and Basal Ganglia Function in Experimental Parkinsonism [J].
Maurice, Nicolas ;
Liberge, Martine ;
Jaouen, Florence ;
Ztaou, Samira ;
Hanini, Marwa ;
Camon, Jeremy ;
Deisseroth, Karl ;
Amalric, Marianne ;
Kerkerian-Le Goff, Lydia ;
Beurrier, Corinne .
CELL REPORTS, 2015, 13 (04) :657-666
[29]   MODIFICATION OF CENTRAL DOPAMINERGIC MECHANISMS BY CONTINUOUS LEVODOPA THERAPY FOR ADVANCED PARKINSONS-DISEASE [J].
MOURADIAN, MM ;
HEUSER, IJE ;
BARONTI, F ;
CHASE, TN .
ANNALS OF NEUROLOGY, 1990, 27 (01) :18-23
[30]   Short- and long-duration responses to levodopa during the first year of levodopa therapy [J].
Nutt, JG ;
Carter, JH ;
VanHouten, L ;
Woodward, WR .
ANNALS OF NEUROLOGY, 1997, 42 (03) :349-355