Targeted delivery of proapoptotic peptides to tumor-associated macrophages improves survival

Maryelise Cieslewicz1, Jingjing Tang, Jonathan L Yu

  • 1Departments of Bioengineering and Medical Genetics, University of Washington, Seattle, WA 98195.

Insights

Researchers discovered M2pep, a peptide that targets tumor-associated macrophages (TAMs), a type of immune cell that promotes cancer growth. This peptide selectively binds to M2-like TAMs, offering a potential new strategy for cancer therapy by reducing these harmful cells.

Area of Science:

  • Immunology
  • Oncology
  • Molecular Biology

Background:

  • Current cancer therapies struggle with tumor cell genetic instability and drug resistance.
  • Tumor-associated macrophages (TAMs) promote cancer progression by supporting angiogenesis, tumor growth, and immune suppression.
  • Targeting TAMs is a promising strategy, but selective ablation remains difficult due to their essential role in host defense.

Purpose of the Study:

  • To identify a molecular tool for specifically targeting TAMs, which often exhibit an M2-like phenotype.
  • To develop a novel therapeutic approach for cancer by selectively targeting TAMs.

Main Methods:

  • A subtractive phage biopanning strategy was employed to discover a unique peptide sequence, M2pep.
  • The binding affinity of M2pep to different murine leukocytes, including M2 macrophages and TAMs, was assessed.
  • In vivo studies utilized confocal imaging to track M2pep accumulation in TAMs and evaluated the therapeutic effect of an M2pep fusion peptide.

Main Results:

  • M2pep demonstrated preferential binding to murine M2 cells, including TAMs, with minimal affinity for other leukocytes.
  • Confocal imaging confirmed the in vivo accumulation of M2pep within TAMs after intravenous administration.
  • Treatment with an M2pep fusion peptide selectively reduced the M2-like TAM population and delayed mortality in vivo.

Conclusions:

  • M2pep represents a novel molecularly targeted construct for murine TAMs.
  • This study provides proof of concept for using M2pep-based therapies as an anticancer treatment.
  • M2pep serves as a valuable tool for identifying and modulating M2 macrophages in various murine disease models.

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