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Updated: Jul 23, 2025

Intramucosal Inoculation of Squamous Cell Carcinoma Cells in Mice for Tumor Immune Profiling and Treatment Response Assessment
Published on: April 22, 2019
CD271 activation prevents low to high-risk progression of cutaneous squamous cell carcinoma and improves therapy
Marika Quadri1, Natascia Tiso2, Francesco Musmeci3
1DermoLAB, Department of Surgical, Medical, Dental and Morphological Science, University of Modena and Reggio Emilia, Via Del Pozzo 71, 41124, Modena, Italy.
Background:
Cutaneous squamous cell carcinoma (cSCC) is the second most prevalent form of skin cancer, showing a rapid increasing incidence worldwide. Although most cSCC can be cured by surgery, a sizeable number of cases are diagnosed at advanced stages, with local invasion and distant metastatic lesions. In the skin, neurotrophins (NTs) and their receptors (CD271 and Trk) form a complex network regulating epidermal homeostasis. Recently, several works suggested a significant implication of NT receptors in cancer. However, CD271 functions in epithelial tumors are controversial and its precise role in cSCC is still to be defined.
Methods:
Spheroids from cSCC patients with low-risk (In situ or Well-Differentiated cSCC) or high-risk tumors (Moderately/Poorly Differentiated cSCC), were established to explore histological features, proliferation, invasion abilities, and molecular pathways modulated in response to CD271 overexpression or activation in vitro. The effect of CD271 activities on the response to therapeutics was also investigated. The impact on the metastatic process and inflammation was explored in vivo and in vitro, by using zebrafish xenograft and 2D/3D models.
Results:
Our data proved that CD271 is upregulated in Well-Differentiated tumors as compared to the more aggressive Moderately/Poorly Differentiated cSCC, both in vivo and in vitro. We demonstrated that CD271 activities reduce proliferation and malignancy marker expression in patient-derived cSCC spheroids at each tumor grade, by increasing neoplastic cell differentiation. CD271 overexpression significantly increases cSCC spheroid mass density, while it reduces their weight and diameter, and promotes a major fold-enrichment in differentiation and keratinization genes. Moreover, both CD271 overexpression and activation decrease cSCC cell invasiveness in vitro. A significant inhibition of the metastatic process by CD271 was observed in a newly established zebrafish cSCC model. We found that the recruitment of leucocytes by CD271-overexpressing cells directly correlates with tumor killing and this finding was further highlighted by monocyte infiltration in a THP-1-SCC13 3D model. Finally, CD271 activity synergizes with Trk receptor inhibition, by reducing spheroid viability, and significantly improves the outcome of photodynamic therapy (PTD) or chemotherapy in spheroids and zebrafish.
Conclusion:
Our study provides evidence that CD271 could prevent the switch between low to high-risk cSCC tumors. Because CD271 contributes to maintaining active differentiative paths and favors the response to therapies, it might be a promising target for future pharmaceutical development.
Insights
Neurotrophin receptor CD271 upregulation in cutaneous squamous cell carcinoma (cSCC) promotes cell differentiation and reduces metastasis. CD271 enhances therapeutic responses, suggesting its potential as a pharmaceutical target for preventing high-risk cSCC.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Cutaneous squamous cell carcinoma (cSCC) is a prevalent skin cancer with increasing incidence.
- Advanced cSCC poses challenges due to local invasion and metastasis.
- The role of neurotrophin receptor CD271 in epithelial tumors, including cSCC, is not well-defined.
Purpose of the Study:
- To investigate the function of CD271 in cutaneous squamous cell carcinoma.
- To explore CD271's impact on cSCC differentiation, invasion, and therapeutic response.
- To assess CD271's role in metastasis and inflammation in cSCC.
Main Methods:
- Established patient-derived cSCC spheroids (low-risk and high-risk).
- Analyzed histological features, proliferation, and invasion in response to CD271 modulation.
- Utilized zebrafish xenograft and 2D/3D models to study metastasis and therapeutic effects in vitro and in vivo.
Main Results:
- CD271 is upregulated in well-differentiated cSCC, correlating with increased differentiation and reduced malignancy markers.
- CD271 overexpression decreased cSCC cell invasiveness and inhibited metastasis in a zebrafish model.
- CD271 activity synergized with Trk inhibition and improved outcomes for photodynamic therapy and chemotherapy.
Conclusions:
- CD271 upregulation may prevent the progression of cSCC to high-risk tumors.
- CD271 promotes differentiation and enhances therapeutic responses in cSCC.
- CD271 represents a promising therapeutic target for pharmaceutical development in cSCC treatment.
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