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Updated: Nov 10, 2025

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Expression of Potential Targets for Cell-Based Therapies on Melanoma Cells
Sophia B Strobel1, Devayani Machiraju1, Ingrid Hülsmeyer2
1Department of Dermatology and National Center for Tumor Diseases, University Hospital Heidelberg, 69120 Heidelberg, Germany.
Abstract:
Tumor antigen-specific redirection of cytotoxic T cells (CTLs) or natural killer (NK) cells including chimeric antigen receptor (CAR-) and T cell receptor (TCR-) cell therapy is currently being evaluated in different tumor entities including melanoma. Expression of melanoma-specific antigen recognized by the respective CAR or TCR directly or presented by HLA molecules is an indispensable prerequisite for this innovative therapy. In this study, we investigated in 168 FFPE tumor specimens of patients with stage I-IV melanoma the protein expression of HER2, TRP2, ABCB5, gp100, p53, and GD2 by immunohistochemistry (IHC). These results were correlated with clinical parameters. Membrane expression of HER2 and GD2 was also investigated in ten melanoma cell lines by flow cytometry for which corresponding tumors were analyzed by IHC. Our results demonstrated that gp100 was the most frequently overexpressed protein (61%), followed by TRP2 (50%), GD2 (38%), p53 (37%), ABCB5 (17%), and HER2 (3%). TRP2 expression was higher in primary tumors compared to metastases (p = 0.005). Accordingly, TRP2 and ABCB5 expression was significantly associated with lower tumor thickness of the primary (p = 0.013 and p = 0.025). There was no association between protein expression levels and survival in advanced melanoma patients. Flow cytometric analysis revealed abundant surface expression of GD2 and HER2 in all melanoma cell lines. The discordant HER2 expression in situ and in vitro suggests a tissue culture associated induction. In summary, our data support the use of gp100 and GD2 as a potential target for developing engineered TCR- or CAR-cell therapies, respectively, against melanoma.
Insights
This study evaluated melanoma tumor antigen expression for targeted cell therapies. Gp100 and GD2 showed high expression, supporting their potential as targets for chimeric antigen receptor (CAR) or T cell receptor (TCR) cell therapies.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Chimeric antigen receptor (CAR) and T cell receptor (TCR) cell therapies aim to redirect cytotoxic T cells or natural killer cells to target tumors.
- Successful CAR- or TCR-based therapy relies on the expression of specific tumor antigens on cancer cells, such as in melanoma.
Purpose of the Study:
- To investigate the protein expression of potential melanoma targets: HER2, TRP2, ABCB5, gp100, p53, and GD2.
- To correlate protein expression with clinical parameters in melanoma patients.
- To evaluate GD2 and HER2 expression in melanoma cell lines.
Main Methods:
- Immunohistochemistry (IHC) was used to analyze protein expression in 168 FFPE melanoma specimens (stage I-IV).
- Flow cytometry was employed to assess membrane expression of HER2 and GD2 in ten melanoma cell lines.
- Clinical parameters were correlated with protein expression data.
Main Results:
- Gp100 (61%) and TRP2 (50%) were the most frequently overexpressed proteins. GD2 (38%), p53 (37%), ABCB5 (17%), and HER2 (3%) showed lower expression.
- TRP2 expression was higher in primary tumors than metastases (p=0.005).
- TRP2 and ABCB5 expression correlated with lower primary tumor thickness (p=0.013 and p=0.025, respectively). No survival association was found.
Conclusions:
- Gp100 and GD2 are promising targets for developing engineered T cell receptor (TCR) or chimeric antigen receptor (CAR) cell therapies for melanoma.
- TRP2 and ABCB5 expression may serve as biomarkers for early-stage melanoma.
- In vitro HER2 expression in cell lines may be induced by tissue culture, differing from in situ expression.
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