| Literature DB >> 25157152 |
Johannes Kohl1, Julian Ng1, Sebastian Cachero1, Ernesto Ciabatti1, Michael-John Dolan1, Ben Sutcliffe1, Adam Tozer1, Sabine Ruehle1, Daniel Krueger1, Shahar Frechter1, Tiago Branco1, Marco Tripodi1, Gregory S X E Jefferis2.
Abstract
Genetically encoded fluorescent proteins and immunostaining are widely used to detect cellular and subcellular structures in fixed biological samples. However, for thick or whole-mount tissue, each approach suffers from limitations, including limited spectral flexibility and lower signal or slow speed, poor penetration, and high background labeling, respectively. We have overcome these limitations by using transgenically expressed chemical tags for rapid, even, high-signal and low-background labeling of thick biological tissues. We first construct a platform of widely applicable transgenic Drosophila reporter lines, demonstrating that chemical labeling can accelerate staining of whole-mount fly brains by a factor of 100. Using viral vectors to deliver chemical tags into the mouse brain, we then demonstrate that this labeling strategy works well in mice. Thus this tag-based approach drastically improves the speed and specificity of labeling genetically marked cells in intact and/or thick biological samples.Entities:
Keywords: fluorescence microscopy; immunohistochemistry; neural circuits; protein labeling
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Year: 2014 PMID: 25157152 PMCID: PMC4246963 DOI: 10.1073/pnas.1411087111
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205