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Updated: Sep 24, 2025

Free-floating Immunostaining of Mouse Brains
Published on: October 7, 2021
Histological-Based Stainings using Free-Floating Tissue Sections
Emily M Potts1, Giuseppe Coppotelli1, Jaime M Ross2
1George & Anne Ryan Institute for Neuroscience, College of Pharmacy, Department of Biomedical and Pharmaceutical Sciences, University of Rhode Island.
Insights
The free-floating method offers superior antibody penetration for immunohistochemistry, especially for thick brain sections used in 3D reconstruction. This technique simplifies handling, making it ideal for large-scale studies and various staining methods.
Area of Science:
- Histology
- Neuroscience
- Biomedical Research
Background:
- Immunohistochemistry visualizes tissue structures and protein expression.
- Two main methods exist: slide-mounted and free-floating sections.
- Free-floating allows sections to be stained while suspended in solution.
Purpose of the Study:
- To detail the application of the free-floating method for fluorescent immunohistochemistry.
- To highlight its advantages for brain section analysis and 3D reconstruction.
- To demonstrate its adaptability for other tissues and staining techniques.
Main Methods:
- Utilizing the free-floating technique for tissue section staining.
- Focusing on fluorescent immunohistochemistry of brain sections.
- Adapting the method for various tissues and histochemical stains (H&E, cresyl violet).
Main Results:
- The free-floating method enhances antibody penetration, crucial for thick sections.
- It facilitates easier handling of multiple sections (30-40 per aliquot).
- The technique is versatile and adaptable for diverse research needs.
Conclusions:
- The free-floating technique is recommended for immunohistochemistry, particularly for thick sections and 3D reconstruction.
- It offers practical advantages in handling and scalability for large-scale studies.
- This method is adaptable to various tissues and histochemical staining protocols.
Abstract:
Immunohistochemistry is a widely used technique to visualize specific tissue structures as well as protein expression and localization. Two alternative approaches are widely used to handle the tissue sections during the staining procedure, one approach consists of mounting the sections directly on glass slides, while a second approach, the free-floating, allows for fixed sections to be maintained and stained while suspended in solution. Although slide-mounted and free-floating approaches may yield similar results, the free-floating technique allows for better antibody penetration and thus should be the method of choice when thicker sections are to be used for 3D reconstruction of the tissues, for example when the focus of the experiment is to gain information on dendritic and axonal projections in brain regions. In addition, since the sections are kept in solution, a single aliquot can easily accommodate 30 to 40 sections, handling of which is less laborious, particularly in large-scale biomedical studies. Here, we illustrate how to apply the free-floating method to fluorescent immunohistochemistry staining, with a major focus on brain sections. We will also discuss how the free-floating technique can easily be modified to fit the individual needs of researchers and adapted to other tissues as well as other histochemical-based stainings, such as hematoxylin and eosin and cresyl violet, as long as tissue samples are properly fixed, typically with paraformaldehyde or formalin.

