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Updated: Nov 28, 2025

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Molecular and Immune Biomarkers for Cutaneous Melanoma: Current Status and Future Prospects
Lorenzo Pilla1, Andrea Alberti2, Pierluigi Di Mauro1
1Division of Medical Oncology, San Gerardo Hospital, University of Milano-Bicocca School of Medicine, 20900 Monza, Italy.
Abstract:
Advances in the genomic, molecular and immunological make-up of melanoma allowed the development of novel targeted therapy and of immunotherapy, leading to changes in the paradigm of therapeutic interventions and improvement of patients' overall survival. Nevertheless, the mechanisms regulating either the responsiveness or the resistance of melanoma patients to therapies are still mostly unknown. The development of either the combinations or of the sequential treatment of different agents has been investigated but without a strongly molecularly motivated rationale. The need for robust biomarkers to predict patients' responsiveness to defined therapies and for their stratification is still unmet. Progress in immunological assays and genomic techniques as long as improvement in designing and performing studies monitoring the expression of these markers along with the evolution of the disease allowed to identify candidate biomarkers. However, none of them achieved a definitive role in predicting patients' clinical outcomes. Along this line, the cross-talk of melanoma cells with tumor microenvironment plays an important role in the evolution of the disease and needs to be considered in light of the role of predictive biomarkers. The overview of the relationship between the molecular basis of melanoma and targeted therapies is provided in this review, highlighting the benefit for clinical responses and the limitations. Moreover, the role of different candidate biomarkers is described together with the technical approaches for their identification. The provided evidence shows that progress has been achieved in understanding the molecular basis of melanoma and in designing advanced therapeutic strategies. Nevertheless, the molecular determinants of melanoma and their role as biomarkers predicting patients' responsiveness to therapies warrant further investigation with the vision of developing more effective precision medicine.
Insights
Understanding melanoma
Area of Science:
- Melanoma research
- Cancer genomics
- Immunotherapy
Background:
- Melanoma treatment has advanced with targeted therapies and immunotherapies.
- Mechanisms of melanoma treatment response and resistance remain largely unknown.
- Lack of robust biomarkers hinders personalized melanoma treatment.
Purpose of the Study:
- To review the molecular basis of melanoma and targeted therapies.
- To highlight benefits and limitations of current melanoma treatments.
- To discuss candidate biomarkers and their predictive roles.
Main Methods:
- Review of genomic, molecular, and immunological studies in melanoma.
- Analysis of candidate biomarkers and their identification techniques.
- Consideration of melanoma cell and tumor microenvironment interactions.
Main Results:
- Advances in understanding melanoma's molecular landscape have improved therapeutic strategies.
- Candidate biomarkers have been identified but lack definitive predictive roles.
- The tumor microenvironment significantly influences melanoma progression and treatment response.
Conclusions:
- Despite progress, molecular determinants of melanoma and their biomarker potential require further investigation.
- Developing effective precision medicine for melanoma necessitates deeper understanding of molecular mechanisms.
- Future research should focus on identifying reliable biomarkers for patient stratification and treatment selection.
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