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Updated: Aug 9, 2026

Transcriptome Analysis of Single Cells
Published on: April 25, 2011
Universal recording of cell-cell contacts in vivo for interaction-based transcriptomics
Sandra Nakandakari-Higa1, Maria C C Canesso1,2, Sarah Walker3,4
1Laboratory of Lymphocyte Dynamics, The Rockefeller University, New York, NY, USA.
Insights
A new universal method, uLIPSTIC, tracks transient cell-cell interactions in vivo. This technology reveals diverse immune cell partnerships and their roles in tissue function, advancing our understanding of cellular communication.
Area of Science:
- Immunology
- Cell Biology
- Biotechnology
Background:
- Cellular interactions are critical for tissue organization and immune cell regulation.
- Previous methods like LIPSTIC were limited to specific receptor-ligand pairs (CD40L-CD40).
- A broader approach is needed to study diverse transient cell-cell contacts in vivo.
Purpose of the Study:
- To develop a universal method (uLIPSTIC) for tracking diverse cell-cell interactions in vivo.
- To overcome the limitations of previous receptor-specific interaction labeling techniques.
- To broadly apply the technology to various immunological contexts.
Main Methods:
- Development of a universal LIPSTIC (uLIPSTIC) technique enabling label transfer between interacting cells regardless of specific receptors.
- Application of uLIPSTIC to study T cell priming, regulatory T cell interactions, and T follicular helper cell interactions.
- Integration of uLIPSTIC with single-cell transcriptomics to catalog immune-intestinal epithelial cell interactions.
Main Results:
- uLIPSTIC successfully records interactions among immune cells and between immune and non-immune cells.
- Demonstrated utility in monitoring CD8+ T cell priming by dendritic cells.
- Identified germinal center T follicular helper cells interacting with B cells.
- Cataloged immune cell interactions with intestinal epithelial cells, revealing stepwise adaptation of CD4+ T cells.
Conclusions:
- uLIPSTIC broadly captures diverse immune cell interactions in vivo.
- Demonstrates stepwise interaction acquisition by T cells in intestinal tissue.
- Provides a powerful technology for studying cell-cell communication in various biological systems.
Abstract:
Cellular interactions are essential for tissue organization and functionality. In particular, immune cells rely on direct and usually transient interactions with other immune and non-immune populations to specify and regulate their function. To study these "kiss-and-run" interactions directly in vivo, we previously developed LIPSTIC (Labeling Immune Partnerships by SorTagging Intercellular Contacts), an approach that uses enzymatic transfer of a labeled substrate between the molecular partners CD40L and CD40 to label interacting cells. Reliance on this pathway limited the use of LIPSTIC to measuring interactions between CD4+ helper T cells and antigen presenting cells, however. Here, we report the development of a universal version of LIPSTIC (uLIPSTIC), which can record physical interactions both among immune cells and between immune and non-immune populations irrespective of the receptors and ligands involved. We show that uLIPSTIC can be used, among other things, to monitor the priming of CD8+ T cells by dendritic cells, reveal the cellular partners of regulatory T cells in steady state, and identify germinal center (GC)-resident T follicular helper (Tfh) cells based on their ability to interact cognately with GC B cells. By coupling uLIPSTIC with single-cell transcriptomics, we build a catalog of the immune populations that physically interact with intestinal epithelial cells (IECs) and find evidence of stepwise acquisition of the ability to interact with IECs as CD4+ T cells adapt to residence in the intestinal tissue. Thus, uLIPSTIC provides a broadly useful technology for measuring and understanding cell-cell interactions across multiple biological systems.
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