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Updated: May 7, 2026

Experimental Analysis of Apoptotic Thymocyte Engulfment by Macrophages
Published on: May 24, 2019
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.
Abstract:
Most current cancer therapies focus on killing malignant cells, but these cells are often genetically unstable and can become resistant to chemotherapy. Tumor-associated macrophages (TAMs) facilitate disease progression by promoting angiogenesis and tumor cell growth, as well as by suppressing the adaptive immune response. TAMs are therefore potential targets for adjuvant anticancer therapies. However, resident macrophages are critical to host defense, and preferential ablation of TAMs remains challenging. Macrophage activation is broadly categorized as classically activated, or M1, and alternatively activated, or M2, and TAMs in the tumor microenvironment have been shown to adopt the anti-inflammatory, M2-like phenotype. To date, there are no methods for specific molecular targeting of TAMs. In this work, we report the discovery of a unique peptide sequence, M2pep, identified using a subtractive phage biopanning strategy against whole cells. The peptide preferentially binds to murine M2 cells, including TAMs, with low affinity for other leukocytes. Confocal imaging demonstrates the accumulation of M2pep in TAMs in vivo after tail vein injection. Finally, tail vein injection of an M2pep fusion peptide with a proapoptotic peptide delays mortality and selectively reduces the M2-like TAM population. This work therefore describes a molecularly targeted construct for murine TAMs and provides proof of concept of this approach as an anticancer treatment. In addition, M2pep is a useful tool for murine M2 macrophage identification and for modulating M2 macrophages in other murine models of disease involving M2 cells.
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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