Opportunities and limitations of genetically modified nonhuman primate models for neuroscience research

Возможности и ограничения генетически модифицированных моделей нечеловекообразных приматов для нейронаучных исследований
Guoping Feng, Frances E. Jensen, Henry T. Greely, Hideyuki Okano, Stefan Treue, Angela Roberts, James G. Fox, Sarah J. Caddick, Mu-ming Poo, William T. Newsome, John H. Morrison
2020-08-19

CRISPR/Cas genome editingbrain circuit formationgenetically modified nonhuman primatesneuropsychiatric disordersneuroscience research
The recently developed new genome-editing technologies, such as the CRISPR/Cas system, have opened the door for generating genetically modified nonhuman primate (NHP) models for basic neuroscience and brain disorders research. The complex circuit formation and experience-dependent refinement of the human brain are very difficult to model in vitro, and thus require use of in vivo whole-animal models. For many neurodevelopmental and psychiatric disorders, abnormal circuit formation and refinement might be at the center of their pathophysiology. Importantly, many of the critical circuits and regional cell populations implicated in higher human cognitive function and in many psychiatric disorders are not present in lower mammalian brains, while these analogous areas are replicated in NHP brains. Indeed, neuropsychiatric disorders represent a tremendous health and economic burden globally. The emerging field of genetically modified NHP models has the potential to transform our study of higher brain function and dramatically facilitate the development of effective treatment for human brain disorders. In this paper, we discuss the importance of developing such models, the infrastructure and training needed to maximize the impact of such models, and ethical standards required for using these models.
1
CRISPR/Cas and related genome-editing technologies enable genetically modified nonhuman primate models for neuroscience and brain-disorder research.
2
Genetically modified NHPs could improve understanding of higher brain function and accelerate development of treatments for human neuropsychiatric disorders.
3
Maximizing their impact requires appropriate infrastructure, specialized training, and rigorous ethical standards.
4
NHPs more closely replicate critical circuits and regional cell populations involved in human higher cognition and psychiatric disorders than lower mammalian models.
5
Whole-animal NHP models are needed to study complex brain-circuit formation and experience-dependent refinement that are difficult to reproduce in vitro.

Genetically modified nonhuman primate models for neuroscience and human brain-disorder research

The opportunities, limitations, infrastructure, training, and ethical requirements associated with developing and using genetically modified nonhuman primate models to study higher brain function and neurodevelopmental and psychiatric disorders

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2020-08-19
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Guoping Feng
Frances E. Jensen
Henry T. Greely
Hideyuki Okano
Stefan Treue
Angela Roberts
James G. Fox
Sarah J. Caddick
Mu-ming Poo
William T. Newsome
John H. Morrison
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