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Therapeutic Trial of anle138b in Mouse Models of Genetic Prion Disease
Sonia M Vallabh1,2,3,4,5, Dan Zou6, Rose Pitstick7
1Stanley Center for Psychiatric Research, Broad Institute of MIT and Harvard, Cambridge, Massachusetts, USA.
Abstract:
Phenotypic screening has yielded small-molecule inhibitors of prion replication that are effective in vivo against certain prion strains but not others. Here, we sought to test the small molecule anle138b in multiple mouse models of prion disease. In mice inoculated with the RML strain of prions, anle138b doubled survival and durably suppressed astrogliosis measured by live-animal bioluminescence imaging. In knock-in mouse models of the D178N and E200K mutations that cause genetic prion disease, however, we were unable to identify a clear, quantifiable disease endpoint against which to measure therapeutic efficacy. Among untreated animals, the mutations did not impact overall survival, and bioluminescence remained low out to >20 months of age. Vacuolization and PrP deposition were observed in some brain regions in a subset of mutant animals but appeared to be unable to carry the weight of a primary endpoint in a therapeutic study. We conclude that not all animal models of prion disease are suited to well-powered therapeutic efficacy studies, and care should be taken in choosing the models that will support drug development programs. IMPORTANCE There is an urgent need to develop drugs for prion disease, a currently untreatable neurodegenerative disease. In this effort, there is a debate over which animal models can best support a drug development program. While the study of prion disease benefits from excellent animal models because prions naturally afflict many different mammals, different models have different capabilities and limitations. Here, we conducted a therapeutic efficacy study of the drug candidate anle138b in mouse models with two of the most common mutations that cause genetic prion disease. In a more typical model where prions are injected directly into the brain, we found anle138b to be effective. In the genetic models, however, the animals never reached a clear, measurable point of disease onset. We conclude that not all prion disease animal models are ideally suited to drug efficacy studies, and well-defined, quantitative disease metrics should be a priority.
Insights
The drug anle138b effectively treats prion disease in one mouse model, doubling survival. However, it showed no clear benefit in genetic prion disease models due to a lack of measurable disease endpoints, highlighting the importance of model selection for drug development.
Area of Science:
- Neuroscience
- Pharmacology
- Genetics
Background:
- Prion diseases are fatal neurodegenerative disorders with no current cure.
- Small-molecule inhibitors show promise but efficacy varies across prion strains.
- Choosing appropriate animal models is critical for evaluating therapeutic candidates.
Purpose of the Study:
- To evaluate the efficacy of the small molecule anle138b in diverse mouse models of prion disease.
- To assess the suitability of genetic prion disease models for therapeutic efficacy studies.
- To determine the impact of anle138b on survival and disease markers in RML and genetic prion disease models.
Main Methods:
- Anle138b treatment was administered to mice infected with the RML prion strain.
- Knock-in mouse models with D178N and E200K mutations causing genetic prion disease were studied.
- Therapeutic efficacy was assessed by measuring survival, astrogliosis (bioluminescence imaging), vacuolization, and PrP deposition.
Main Results:
- Anle138b doubled survival and suppressed astrogliosis in RML prion-infected mice.
- In genetic prion disease models, anle138b did not show a clear therapeutic effect.
- Quantifiable disease endpoints were not identifiable in the genetic models, with minimal impact on survival or disease markers.
Conclusions:
- Anle138b demonstrates therapeutic potential in a conventional prion disease model.
- Genetic prion disease mouse models with D178N and E200K mutations lack suitable endpoints for drug efficacy studies.
- Careful selection of animal models with well-defined disease metrics is essential for advancing prion disease drug development programs.
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