Historical Perspective: Models of Parkinson's Disease

被引:245
作者
Chia, Shyh Jenn [1 ]
Tan, Eng-King [1 ,2 ,3 ]
Chao, Yin-Xia [1 ,2 ,3 ]
机构
[1] Natl Neurosci Inst, Singapore 308433, Singapore
[2] Singapore Gen Hosp, Dept Neurol, Singapore 169856, Singapore
[3] Duke NUS Med Sch, Singapore 169857, Singapore
基金
英国医学研究理事会;
关键词
Parkinson disease models; neurotoxic models; genetic models; advantages; limitations; ALPHA-SYNUCLEIN; MOUSE MODEL; PRIMATE MODELS; MOTOR DEFICITS; ANIMAL-MODELS; LRRK2; KINASE; MPTP; MUTATIONS; PARAQUAT; ROTENONE;
D O I
10.3390/ijms21072464
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Parkinson's disease (PD) is the most common movement disorder with motor and nonmotor signs. The current therapeutic regimen for PD is mainly symptomatic as the etio-pathophysiology has not been fully elucidated. A variety of animal models has been generated to study different aspects of the disease for understanding the pathogenesis and therapeutic development. The disease model can be generated through neurotoxin-based or genetic-based approaches in a wide range of animals such as non-human primates (NHP), rodents, zebrafish, Caenorhabditis (C.) elegans, and drosophila. Cellular-based disease model is frequently used because of the ease of manipulation and suitability for large-screen assays. In neurotoxin-induced models, chemicals such as 6-hydroxydopamine (6-OHDA), 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), rotenone, and paraquat are used to recapitulate the disease. Genetic manipulation of PD-related genes, such as alpha-Synuclein(SNCA), Leucine-rich repeat kinase 2 (LRRK2), Pten-Induced Kinase 1 (PINK1), Parkin(PRKN), and Protein deglycase (DJ-1) Are used in the transgenic models. An emerging model that combines both genetic- and neurotoxin-based methods has been generated to study the role of the immune system in the pathogenesis of PD. Here, we discuss the advantages and limitations of the different PD models and their utility for different research purposes.
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页数:14
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共 91 条
  • [21] Parkinson's disease induced pluripotent stem cells with triplication of the α-synuclein locus
    Devine, Michael J.
    Ryten, Mina
    Vodicka, Petr
    Thomson, Alison J.
    Burdon, Tom
    Houlden, Henry
    Cavaleri, Fatima
    Nagano, Masumi
    Drummond, Nicola J.
    Taanman, Jan-Willem
    Schapira, Anthony H.
    Gwinn, Katrina
    Hardy, John
    Lewis, Patrick A.
    Kunath, Tilo
    [J]. NATURE COMMUNICATIONS, 2011, 2
  • [22] Nonhuman primate models of Parkinson's disease
    Emborg, Marina E.
    [J]. ILAR JOURNAL, 2007, 48 (04) : 339 - 355
  • [23] Molecular pathogenesis of Parkinson disease: insights from genetic studies
    Gasser, Thomas
    [J]. EXPERT REVIEWS IN MOLECULAR MEDICINE, 2009, 11
  • [24] Parkinson Phenotype in Aged PINK1-Deficient Mice Is Accompanied by Progressive Mitochondrial Dysfunction in Absence of Neurodegeneration
    Gispert, Suzana
    Ricciardi, Filomena
    Kurz, Alexander
    Azizov, Mekhman
    Hoepken, Hans-Hermann
    Becker, Dorothea
    Voos, Wolfgang
    Leuner, Kristina
    Mueller, Walter E.
    Kudin, Alexei P.
    Kunz, Wolfram S.
    Zimmermann, Annabelle
    Roeper, Jochen
    Wenzel, Dirk
    Jendrach, Marina
    Garcia-Arencibia, Moises
    Fernandez-Ruiz, Javier
    Huber, Leslie
    Rohrer, Hermann
    Barrera, Miguel
    Reichert, Andreas S.
    Rueb, Udo
    Chen, Amy
    Nussbaum, Robert L.
    Auburger, Georg
    [J]. PLOS ONE, 2009, 4 (06):
  • [25] Advantages of nonhuman primates as preclinical models for evaluating stem cell-based therapies for Parkinson's disease
    Grow, Douglas A.
    McCarrey, John R.
    Navara, Christopher S.
    [J]. STEM CELL RESEARCH, 2016, 17 (02) : 352 - 366
  • [26] LRRK2 Mutant iPSC-Derived DA Neurons Demonstrate Increased Susceptibility to Oxidative Stress
    Ha Nam Nguyen
    Byers, Blake
    Cord, Branden
    Shcheglovitov, Aleksandr
    Byrne, James
    Gujar, Prachi
    Kee, Kehkooi
    Schuele, Birgitt
    Dolmetsch, Ricardo E.
    Langston, William
    Palmer, Theo D.
    Pera, Renee Reijo
    [J]. CELL STEM CELL, 2011, 8 (03) : 267 - 280
  • [27] Effect of quercetin and desferrioxamine on 6-hydroxydopamine (6-OHDA) induced neurotoxicity in striatum of rats
    Haleagrahara, Nagaraja
    Siew, Cheng Jun
    Ponnusamy, Kumar
    [J]. JOURNAL OF TOXICOLOGICAL SCIENCES, 2013, 38 (01) : 25 - 33
  • [28] No Lewy Pathology in Monkeys with Over 10 Years of Severe MPTP Parkinsonism
    Halliday, Glenda
    Trinidad Herrero, Maria
    Murphy, Karen
    McCann, Heather
    Ros-Bernal, Francisco
    Barcia, Carlos
    Mori, Hideo
    Blesa, Francisco J.
    Obeso, Jose A.
    [J]. MOVEMENT DISORDERS, 2009, 24 (10) : 1519 - 1523
  • [29] The Polg Mutator Phenotype Does Not Cause Dopaminergic Neurodegeneration in DJ-1-Deficient Mice
    Hauser, David N.
    Primiani, Christopher T.
    Langston, Rebekah G.
    Kumaran, Ravindran
    Cookson, Mark R.
    [J]. ENEURO, 2015, 2 (01)
  • [30] DOPAMINERGIC TOXICITY OF ROTENONE AND THE 1-METHYL-4-PHENYLPYRIDINIUM ION AFTER THEIR STEREOTAXIC ADMINISTRATION TO RATS - IMPLICATION FOR THE MECHANISM OF 1-METHYL-4-PHENYL-1,2,3,6-TETRAHYDROPYRIDINE TOXICITY
    HEIKKILA, RE
    NICKLAS, WJ
    VYAS, I
    DUVOISIN, RC
    [J]. NEUROSCIENCE LETTERS, 1985, 62 (03) : 389 - 394