Changing the location of proteins on the cell surface is a promising strategy for modulating T cell functions

Marianne Strazza1, Ruijiang Song1, Shannon Hiner1

  • 1Columbia Center for Translational Immunology, Columbia University Medical Center, New York, New York, USA.

Immunology
|July 2, 2024
PubMed

Insights

Altering T cell receptor location within the immune synapse offers a novel immunotherapy strategy. This approach may improve treatment for cancer and autoimmune diseases, potentially overcoming current therapy limitations.

Area of Science:

  • Immunology
  • Cancer Biology
  • Drug Development

Background:

  • Monoclonal antibodies targeting T cell immune receptors are standard cancer and autoimmunity treatments.
  • Current therapies, while effective, face limitations like patient non-response and adverse events.
  • These limitations may stem from overlooking receptor localization within the immune synapse.

Purpose of the Study:

  • To explore the therapeutic potential of modulating immune receptor localization within the immune synapse.
  • To review existing research on altering protein localization for therapeutic benefit.
  • To introduce novel antibody strategies for targeting immune receptor organization.

Main Methods:

  • Review of scientific literature on immune receptor function and localization.
  • Analysis of therapeutic strategies involving immune synapse modulation.
  • Discussion of bispecific antibodies for inducing receptor clustering.

Main Results:

  • Altering receptor localization presents a potential alternative to blocking ligand binding.
  • Bispecific antibodies can induce receptor clustering, impacting T cell function.
  • Targeting receptor organization offers a new avenue for immunotherapy.

Conclusions:

  • Modulating immune receptor localization within the immune synapse is a promising therapeutic strategy.
  • This approach could enhance efficacy and safety in treating immune-related conditions.
  • Novel antibody designs targeting receptor organization represent an emerging technology for resistant cancers.

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