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Updated: Jun 21, 2025

Isolation and Characterization of Neutrophils with Anti-Tumor Properties
Published on: June 19, 2015
Immune-enhancing neutrophils reprogrammed by subclinical low-dose endotoxin in cancer treatment
Yao Zhang1, Christina Lee1, Shuo Geng1
1Department of Biological Sciences, Virginia Tech, Blacksburg, VA, 24061-0910, USA.
Abstract:
Despite the re-emergence of the pioneering "Coley's toxin" concept in anti-cancer immune therapies highlighted by check-point inhibitors and CAR-T approaches, fundamental mechanisms responsible for the immune-enhancing efficacy of low-dose "Coley's toxin" remain poorly understood. This study examines the novel reprogramming of immune-enhancing neutrophils by super-low dose endotoxin conducive for anti-cancer therapies. Through integrated analyses including scRNAseq and functional characterizations, we examined the efficacy of reprogrammed neutrophils in treating experimental cancer. We observed that neutrophils trained by super-low dose endotoxin adopt a potent immune-enhancing phenotype characterized by CD177loCD11bloCD80hiCD40hiDectin2hi. Both murine and human neutrophils trained by super-low dose endotoxin exhibit relieved suppression of adaptive T cells as compared to un-trained neutrophils. Functionally, neutrophils trained by super-low dose endotoxin can potently reduce tumor burden when transfused into recipient tumor-bearing mice. Mechanistically, Super-low dose endotoxin enables the generation of immune-enhancing neutrophils through activating STAT5 and reducing innate suppressor IRAK-M. Together, our data clarify the long-held mystery of "Coley's toxin" in rejuvenating anti-tumor immune defense, and provide a proof-of-concept in developing innate neutrophil-based anti-tumor therapeutics.
Insights
Super-low dose endotoxin reprograms neutrophils into potent anti-cancer immune cells. This approach rejuvenates anti-tumor immunity by enhancing T cell activity and reducing tumor burden, offering a novel therapeutic strategy.
Area of Science:
- Immunology
- Cancer Biology
- Microbiology
Background:
- The mechanism of Coley's toxin, an early anti-cancer immunotherapy, is not fully understood.
- Modern immunotherapies like checkpoint inhibitors and CAR-T cells have renewed interest in immune-based cancer treatments.
Purpose of the Study:
- To investigate how super-low dose endotoxin reprograms neutrophils for anti-cancer therapy.
- To elucidate the molecular mechanisms behind endotoxin-induced immune enhancement in neutrophils.
Main Methods:
- Single-cell RNA sequencing (scRNAseq) and functional characterization of neutrophils.
- Assessment of reprogrammed neutrophils' efficacy in experimental cancer models.
- Analysis of molecular pathways including STAT5 and IRAK-M activation.
Main Results:
- Super-low dose endotoxin induces a specific immune-enhancing neutrophil phenotype (CD177loCD11bloCD80hiCD40hiDectin2hi).
- Trained neutrophils from both mice and humans show reduced suppression of adaptive T cells.
- Transfusion of trained neutrophils significantly reduced tumor burden in mice.
Conclusions:
- Super-low dose endotoxin effectively generates immune-enhancing neutrophils.
- This study clarifies the mechanism of Coley's toxin in boosting anti-tumor immunity.
- Reprogrammed neutrophils represent a promising strategy for innate immune-based cancer therapeutics.
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