Literature DB >> 23473879

Development of transgenic animals for optogenetic manipulation of mammalian nervous system function: progress and prospects for behavioral neuroscience.

Jonathan T Ting1, Guoping Feng.   

Abstract

Here we review the rapidly growing toolbox of transgenic mice and rats that exhibit functional expression of engineered opsins for neuronal activation and silencing with light. Collectively, these transgenic animals are enabling neuroscientists to access and manipulate the many diverse cell types in the mammalian nervous system in order to probe synaptic and circuitry connectivity, function, and dysfunction. The availability of transgenic lines affords important advantages such as stable and heritable transgene expression patterns across experimental cohorts. As such, the use of transgenic lines precludes the need for other costly and labor-intensive procedures to achieve functional transgene expression in each individual experimental animal. This represents an important consideration when large cohorts of experimental animals are desirable as in many common behavioral assays. We describe the diverse strategies that have been implemented for developing transgenic mouse and rat lines and highlight recent advances that have led to dramatic improvements in achieving functional transgene expression of engineered opsins. Furthermore, we discuss considerations and caveats associated with implementing recently developed transgenic lines for optogenetics-based experimentation. Lastly, we propose strategies that can be implemented to develop and refine the next generation of genetically modified animals for behaviorally-focused optogenetics-based applications.
Copyright © 2013 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Archaerhodopsin; Channelrhodopsin; Engineered opsin; Halorhodopsin; Optogenetics; Transgenic mice

Mesh:

Substances:

Year:  2013        PMID: 23473879      PMCID: PMC4030747          DOI: 10.1016/j.bbr.2013.02.037

Source DB:  PubMed          Journal:  Behav Brain Res        ISSN: 0166-4328            Impact factor:   3.332


  101 in total

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3.  Multimodal fast optical interrogation of neural circuitry.

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4.  Targeting Cre recombinase to specific neuron populations with bacterial artificial chromosome constructs.

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5.  Reversible online control of habitual behavior by optogenetic perturbation of medial prefrontal cortex.

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8.  Expanding the repertoire of optogenetically targeted cells with an enhanced gene expression system.

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Authors:  Xue Han; Brian Y Chow; Huihui Zhou; Nathan C Klapoetke; Amy Chuong; Reza Rajimehr; Aimei Yang; Michael V Baratta; Jonathan Winkle; Robert Desimone; Edward S Boyden
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  27 in total

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2.  Acute brain slice methods for adult and aging animals: application of targeted patch clamp analysis and optogenetics.

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Review 5.  Optogenetic Approaches for Controlling Seizure Activity.

Authors:  Jack K Tung; Ken Berglund; Robert E Gross
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6.  Expression of channelrhodopsin-2 localized within the deep CA1 hippocampal sublayer in the Thy1 line 18 mouse.

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Review 9.  Defining inhibitory neurone function in respiratory circuits: opportunities with optogenetics?

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10.  Optogenetic approaches for functional mouse brain mapping.

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