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Implantation of Osmotic Pumps and Induction of Stress to Establish a Symptomatic, Pharmacological Mouse Model for DYT/PARK-ATP1A3 Dystonia
Published on: September 12, 2020
Genetic animal models of dystonia: common features and diversities
Franziska Richter1, Angelika Richter1
1Institute of Pharmacology, Pharmacy and Toxicology, Department of Veterinary Medicine, University of Leipzig, 04103 Leipzig, Germany.
Abstract:
Animal models are pivotal for studies of pathogenesis and treatment of disorders of the central nervous system which in its complexity cannot yet be modeled in vitro or using computer simulations. The choice of a specific model to test novel therapeutic strategies for a human disease should be based on validity of the model for the approach: does the model reflect symptoms, pathogenesis and treatment response present in human patients? In the movement disorder dystonia, prior to the availability of genetically engineered mice, spontaneous mutants were chosen based on expression of dystonic features, including abnormal muscle contraction, movements and postures. Recent discovery of a number of genes and gene products involved in dystonia initiated research on pathogenesis of the disorder, and the creation of novel models based on gene mutations. Here we present a review of current models of dystonia, with a focus on genetic rodent models, which will likely be first choice in the future either for pathophysiological or for preclinical drug testing or both. In order to help selection of a model depending on expression of a specific feature of dystonia, this review is organized by symptoms and current knowledge of pathogenesis of dystonia. We conclude that albeit there is increasing need for research on pathogenesis of the disease and development of improved models, current models do replicate features of dystonia and are useful tools to develop urgently demanded treatment for this debilitating disorder.
Insights
Animal models are crucial for studying central nervous system disorders like dystonia. Genetic rodent models offer valuable insights into dystonia
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Animal models are essential for studying complex central nervous system (CNS) disorders.
- Dystonia research historically relied on spontaneous mutants, but gene discoveries have enabled new genetic models.
Purpose of the Study:
- To review current animal models of dystonia, emphasizing genetic rodent models.
- To guide model selection based on specific dystonia symptoms and pathogenesis.
Main Methods:
- Literature review of existing dystonia models.
- Focus on genetic rodent models for pathophysiology and preclinical drug testing.
Main Results:
- Genetic rodent models are increasingly important for dystonia research.
- Current models replicate key dystonia features, aiding symptom and pathogenesis studies.
Conclusions:
- Despite the need for further model development, existing models are valuable tools.
- These models are crucial for developing urgently needed treatments for dystonia.
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