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Updated: May 15, 2026

Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
Polyphenon [corrected] E enhances the antitumor immune response in neuroblastoma by inactivating myeloid suppressor
Giorgia Santilli1, Izabela Piotrowska, Sandra Cantilena
1Molecular Immunology Unit, UCL Institute of Child Health, London, United Kingdom.
Purpose:
Neuroblastoma is a rare childhood cancer whose high risk, metastatic form has a dismal outcome in spite of aggressive therapeutic interventions. The toxicity of drug treatments is a major problem in this pediatric setting. In this study, we investigated whether Polyphenon E, a clinical grade mixture of green tea catechins under evaluation in multiple clinical cancer trials run by the National Cancer Institute (Bethesda, MD), has anticancer activity in mouse models of neuroblastoma.
Experimental Design:
We used three neuroblastoma models: (i) transgenic TH-MYCN mouse developing spontaneous neuroblastomas; (ii) nonobese diabetic/severe combined immunodeficient (NOD/SCID) mice xenotransplanted with human SHSY5Y cells; and (iii) A/J mice transplanted with syngeneic Neuro 2A cells. Mice were randomized in control and Polyphenon E-drinking groups. Blood from patients with neuroblastoma and normal controls was used to assess the phenotype and function of myeloid cells.
Results:
Polyphenon E reduced the number of tumor-infiltrating myeloid cells, and inhibited the development of spontaneous neuroblastomas in TH-MYCN transgenic mice. In therapeutic models of neuroblastoma in A/J, but not in immunodeficient NOD/SCID mice, Polyphenon E inhibited tumor growth by acting on myeloid-derived suppressor cells (MDSC) and CD8 T cells. In vitro, Polyphenon E impaired the development and motility of MDSCs and promoted differentiation to more neutrophilic forms through the 67 kDa laminin receptor signaling and induction of granulocyte colony-stimulating factor. The proliferation of T cells infiltrating a patient metastasis was reactivated by Polyphenon E.
Conclusions:
These findings suggest that the neuroblastoma-promoting activity of MDSCs can be manipulated pharmacologically in vivo and that green tea catechins operate, at least in part, through this mechanism.
Insights
Green tea catechins (Polyphenon E) show promise in treating neuroblastoma by targeting myeloid-derived suppressor cells. This research indicates a potential new therapeutic avenue for this aggressive childhood cancer.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Neuroblastoma, a rare pediatric cancer, presents a significant challenge due to the poor prognosis of its high-risk metastatic form.
- Current aggressive therapeutic interventions for neuroblastoma are often associated with substantial drug toxicity in young patients.
Purpose of the Study:
- To investigate the anticancer potential of Polyphenon E, a green tea catechin mixture, in preclinical models of neuroblastoma.
- To determine if Polyphenon E can mitigate the negative effects of myeloid cells in neuroblastoma.
Main Methods:
- Utilized three distinct neuroblastoma mouse models: spontaneous (TH-MYCN), xenograft (NOD/SCID with SHSY5Y), and syngeneic (A/J with Neuro 2A).
- Administered Polyphenon E via drinking water to experimental groups and assessed myeloid cell phenotype and function using patient blood samples.
Main Results:
- Polyphenon E reduced tumor-infiltrating myeloid cells and inhibited spontaneous neuroblastoma development in TH-MYCN mice.
- In therapeutic models, Polyphenon E suppressed tumor growth by modulating myeloid-derived suppressor cells (MDSCs) and CD8 T cells.
- In vitro studies demonstrated Polyphenon E's ability to impair MDSC development and motility, promoting differentiation via laminin receptor signaling and G-CSF induction. It also reactivated T cell proliferation in patient metastasis samples.
Conclusions:
- Findings suggest that the pro-tumorigenic activity of MDSCs in neuroblastoma can be pharmacologically targeted in vivo.
- Green tea catechins, like Polyphenon E, demonstrate anticancer effects in neuroblastoma models, partly through the modulation of MDSCs.
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