Antigen retrieval-immunofluorescence on free floating sections to visualize the liver lobule and its cellular makeup

Hawon Yoon1, Aashita Singh Rajput1, Kanesha Lenay Travis1

  • 1Department of Cell Biology and Physiology, University of North Carolina, Chapel Hill, NC, USA.

Biotechniques
|June 17, 2026
PubMed

Insights

This study introduces a novel mechanical stabilization method for thick tissue sections, enhancing immunofluorescence signal and preserving tissue integrity during antigen retrieval for advanced spatial organ biology research.

Area of Science:

  • Spatial organ biology
  • Tissue engineering
  • Immunohistochemistry

Background:

  • Thick tissue sections are crucial for visualizing 3D organ architecture, but protocols for robust immunofluorescence are limited.
  • Maintaining tissue integrity during antigen retrieval is challenging for complex organs and difficult antigens.

Purpose of the Study:

  • To develop a simple, affordable method for mechanically stabilizing thick tissue sections.
  • To preserve tissue integrity during heat-mediated antigen retrieval.
  • To enhance immunofluorescence signal in thick tissue sections for spatial organ research.

Main Methods:

  • Developed a mechanical stabilization apparatus for free-floating tissue sections.
  • Utilized heat-induced antigen retrieval methods tailored to specific antigens.
  • Modified existing immunostaining protocols for thick sections.

Main Results:

  • The method effectively stabilizes thick tissue sections, preventing deformation during antigen retrieval.
  • Preserved tissue integrity while enhancing antigen accessibility.
  • Facilitated improved immunofluorescence signal in 100 µm mouse liver sections.

Conclusions:

  • This technique expands the utility of thick tissue sections for spatial organ biology.
  • Enables holistic analysis of complex tissues and facilitates new discoveries in organ research.
Abstract