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Updated: Feb 6, 2026

In Vitro Assay to Study Tumor-macrophage Interaction
Published on: August 1, 2019
Paclitaxel Reduces Tumor Growth by Reprogramming Tumor-Associated Macrophages to an M1 Profile in a TLR4-Dependent
Carlos W Wanderley1,2, David F Colón3, João Paulo M Luiz3
1Center for Research in Inflammatory Diseases (CRID), Department of Pharmacology, Ribeirao Preto Medical School, University of Sao Paulo, Ribeirao Preto, Brazil. fdqcunha@fmrp.usp.br thicunha@fmrp.usp.br robertocesar@ufc.br carloswagner@alu.ufc.br.
Abstract:
Paclitaxel is an antineoplastic agent widely used to treat several solid tumor types. The primary mechanism of action of paclitaxel is based on microtubule stabilization inducing cell-cycle arrest. Here, we use several tumor models to show that paclitaxel not only induces tumor cell-cycle arrest, but also promotes antitumor immunity. In vitro, paclitaxel reprogrammed M2-polarized macrophages to the M1-like phenotype in a TLR4-dependent manner, similarly to LPS. Paclitaxel also modulated the tumor-associated macrophage (TAM) profile in mouse models of breast and melanoma tumors; gene expression analysis showed that paclitaxel altered the M2-like signature of TAMs toward an M1-like profile. In mice selectively lacking TLR4 on myeloid cells, for example, macrophages (LysM-Cre+/-/TLR4fl/fl), the antitumor effect of paclitaxel was attenuated. Gene expression analysis of tumor samples from patients with ovarian cancer before and after treatment with paclitaxel detected an enrichment of genes linked to the M1 macrophage activation profile (IFNγ-stimulated macrophages). These findings indicate that paclitaxel skews TAMs toward an immunocompetent profile via TLR4, which might contribute to the antitumor effect of paclitaxel and provide a rationale for new combination regimens comprising paclitaxel and immunotherapies as an anticancer treatment.Significance: This study provides new evidence that the antitumor effect of paclitaxel occurs in part via reactivation of the immune response against cancer, guiding tumor-associated macrophages toward the M1-like antitumor phenotype.Graphical Abstract: http://cancerres.aacrjournals.org/content/canres/78/20/5891/F1.large.jpg Cancer Res; 78(20); 5891-900. ©2018 AACR See related commentary by Garassino et al., p. 5729.
Insights
Paclitaxel, a cancer drug, not only stops tumor growth but also boosts the immune system by reprogramming macrophages. This immune-modulating effect, dependent on Toll-like receptor 4 (TLR4), enhances paclitaxel
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Paclitaxel is a chemotherapy agent that targets solid tumors by stabilizing microtubules and inducing cell-cycle arrest.
- The role of paclitaxel in modulating the tumor immune microenvironment remains incompletely understood.
Purpose of the Study:
- To investigate the impact of paclitaxel on antitumor immunity.
- To elucidate the role of Toll-like receptor 4 (TLR4) in paclitaxel-mediated immune modulation.
Main Methods:
- In vitro studies using macrophages and LPS.
- In vivo studies using mouse models of breast and melanoma tumors.
- Gene expression analysis of tumor samples from patients with ovarian cancer.
Main Results:
- Paclitaxel reprogrammed M2-polarized macrophages to an M1-like phenotype in a TLR4-dependent manner.
- Paclitaxel modulated tumor-associated macrophages (TAMs) towards an M1-like profile in preclinical models.
- Paclitaxel treatment enriched for M1 macrophage activation genes in ovarian cancer patient tumors.
Conclusions:
- Paclitaxel promotes antitumor immunity by skewing TAMs towards an immunocompetent M1-like phenotype via TLR4.
- This immune-modulatory mechanism contributes to paclitaxel's antitumor efficacy.
- Findings support combining paclitaxel with immunotherapies for enhanced anticancer treatment.
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