Method Article

Wholemount Immunohistochemistry for Revealing Complex Brain Topography

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DOI:

10.3791/4042

April 5th, 2012

In This Article

Summary

Neural circuits are topographically organized into functional compartments with specific molecular profiles. Here, we provide the practical and technical steps for revealing global brain topography using a versatile wholemount immunohistochemical staining approach. We demonstrate the utility of the method using the well-understood cytoarchitecture and circuitry of cerebellum.

Abstract

The repeated and well-understood cellular architecture of the cerebellum make it an ideal model system for exploring brain topography. Underlying its relatively uniform cytoarchitecture is a complex array of parasagittal domains of gene and protein expression. The molecular compartmentalization of the cerebellum is mirrored by the anatomical and functional organization of afferent fibers. To fully appreciate the complexity of cerebellar organization we previously refined a wholemount staining approach for high throughput analysis of patterning defects in the mouse cerebellum. This protocol describes in detail the reagents, tools, and practical steps that are useful to successfully reveal protein expression patterns in the adult mouse cerebellum by using wholemount immunostaining. The steps highlighted here demonstrate the utility of this method using the expression of zebrinII/aldolaseC as an example of how the fine topography of the brain can be revealed in its native three-dimensional conformation. Also described are adaptations to the protocol that allow for the visualization of protein expression in afferent projections and large cerebella for comparative studies of molecular topography. To illustrate these applications, data from afferent staining of the rat cerebellum are included.

Protocol

1. Animal Perfusion and Cerebellum Dissection

  1. Depending on the protein, perfusion may be essential for successful staining1,2. Transcardiac perfusion is an invasive, non-survival procedure that requires the proper use of anesthetics. Correct training, institutional approval, and IACUC approval are all necessary before attempting the procedure. It is always a good idea to consult the institution's veterinarians to get help in identifying experimental requirements and acquiring the correct training. Before the procedure, the animal should be deeply anesthetized and not responsive to stimuli such as foot or tail pinch. Using scissors make a cut in ....

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Discussion

We have described the technical details required for successful wholemount staining using a versatile immunohistochemical approach for revealing protein expression in the developing and adult brain. By using this approach, complex molecular expression patterns can be analyzed and brain topography appreciated without the need for laborious and time consuming tissue sectioning procedures.

This protocol has been used to reveal the patterned expression of several Purkinje cell proteins in both the.......

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Disclosures

We have nothing to disclose.

Acknowledgements

RVS is supported by new investigator start-up funds from Albert Einstein College of Medicine of Yeshiva University.

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References

  1. Sillitoe, R. V., Hawkes, R. Whole-mount Immunohistochemistry: A high-throughput screen for patterning defects in the mouse cerebellum. J. Histochem. Cytochem. 50, 235-244 (2002).
  2. Kim, S. -H., Che, P., Chung, S. -H., Doorn, D., Hoy, M., Larouche, M., Marzban, H., Sarna, J., Zahedi, S., Hawkes, R.

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Tags

Cerebellar TopographyProtein Expression PatternsZebrinII AldolaseCHistochemical Color ReactionBrightfield MicroscopyTissue DissectionParaformaldehyde FixationProteinase K DigestionDAB Chromogen

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