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Updated: Feb 13, 2026

A Melanoma Patient-Derived Xenograft Model
Published on: May 20, 2019
STAT5 expression correlates with recurrence and survival in melanoma patients treated with interferon-α
Devayani Machiraju1, Iris Moll2,3, Christoffer Gebhardt2
1Department of Dermatology and National Center for Tumor Diseases, University Hospital Heidelberg, Heidelberg.
Abstract:
Interferons (IFN) have a direct growth-inhibiting effect on tumor cells through Janus kinase-dependent activation of the transcription factor signal transducer and activator of transcription (STAT1). In vitro, signaling through STAT5 has been demonstrated to counteract this effect and lead to IFN resistance of melanoma cell lines. In 32 patients treated with IFN-α in an adjuvant setting, we investigated paraffin-embedded tumor tissue from primary melanomas and melanoma metastases for expression of STAT3 and STAT5, by immunohistochemistry, and for expression of phosphorylated signaling transduction activating transcription factor (pSTAT)3 and pSTAT5, by immunofluorescence. Tumor cell expression levels of these proteins were correlated with patient characteristics and clinical outcomes. The patient cohort consisted of 12 (37.5%) patients at AJCC stage I/II (primary melanoma) and 20 (62.5%) at stage III/IV (metastatic melanoma). Recurrence was observed for 25 (78.1%) either during or after IFN-α therapy. χ Correlation of staining intensities with clinical data revealed association of pSTAT3 and STAT5 expression with sex (P=0.003 and 0.016, respectively) and of STAT3 with tumor stage (P=0.019). Recurrence of melanoma was found to be associated with high STAT5 expression (P=0.017). Multivariable regression analysis revealed STAT5 expression as an independent factor for predicting progression-free survival (P<0.0001) and overall survival (P=0.022). In summary, high expression of STAT5 correlated with melanoma recurrence and survival of patients treated with IFN-α in the adjuvant setting. Recently, it has been suggested that mutations of Janus kinases are involved in resistance to immune checkpoint blocker treatments implying a possible role of STAT5 for immune checkpoint resistance.
Insights
High signal transducer and activator of transcription 5 (STAT5) expression in melanoma tumors predicts recurrence and poor survival in patients treated with interferon-alpha (IFN-α). STAT5 may also play a role in resistance to immune checkpoint blockers.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Interferons (IFN) inhibit tumor cell growth via Janus kinase (JAK)-STAT1 signaling.
- STAT5 signaling can counteract IFN's anti-tumor effects, promoting IFN resistance in melanoma.
- Understanding STAT protein roles is crucial for optimizing melanoma treatment strategies.
Purpose of the Study:
- To investigate the expression of STAT3 and STAT5 in melanoma tissues from patients treated with adjuvant IFN-α.
- To correlate STAT3 and STAT5 expression levels with patient characteristics and clinical outcomes, including recurrence and survival.
- To explore the potential role of STAT5 in IFN resistance and immune checkpoint blockade resistance.
Main Methods:
- Immunohistochemistry and immunofluorescence were used to assess STAT3, STAT5, pSTAT3, and pSTAT5 expression in paraffin-embedded tumor tissues from 32 melanoma patients.
- Tumor samples included primary melanomas and metastases.
- Expression levels were correlated with patient demographics, tumor stage, and clinical outcomes (recurrence, survival).
Main Results:
- High STAT5 expression was significantly associated with melanoma recurrence (P=0.017).
- STAT5 expression was an independent predictor of both progression-free survival (P<0.0001) and overall survival (P=0.022).
- STAT3 and STAT5 expression showed associations with patient sex, and STAT3 with tumor stage.
Conclusions:
- Elevated STAT5 expression in melanoma tumors correlates with increased recurrence rates and poorer survival in patients receiving adjuvant IFN-α therapy.
- STAT5 is identified as an independent prognostic factor for progression-free and overall survival in this patient cohort.
- The findings suggest a potential role for STAT5 in mediating resistance to both IFN-α and immune checkpoint inhibitors in melanoma.
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