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Author Spotlight: Recreating Melanoma Complexity with Patient-Derived Organoids for Immunotherapy Evaluation
Published on: September 6, 2024
Malignant Melanoma: Autoimmunity and Supracellular Messaging as New Therapeutic Approaches
1Department of Surgery/Oncology, St. Pantelimon Hospital, Carol Davila University, Dionisie Lupu Street, no. 37, 020022, Bucharest, Romania. igmotofei@scholar.ro.
Opinion Statement:
Melanoma is one of the most aggressive forms of cancer, with a high mortality rate in the absence of a safe and curable therapy. As a consequence, several procedures have been tested over time, with the most recent (immunological and targeted) therapies proving to be effective in some patients. Unfortunately, these new treatment options continue to generate debate related to the therapeutic strategy (intended to maximize the long-term results of patients with melanoma), not only about the monotherapy configuration but also regarding association/succession between distinct therapeutic procedures. As an example, targeted therapy with BRAF inhibitors proved to be effective in advanced BRAF-mutant melanoma. However, such treatments with BRAF inhibitors lead to therapy resistance in half of patients after approximately 6 months. Even if most benign nevi incorporate oncogenic BRAF mutations, they rarely become melanoma; therefore, targeted therapy with BRAF inhibitors should be viewed as an incomplete or perfectible therapy. Another example is related to the administration of immune checkpoint inhibitors/ICIs (anti-CTLA-4 antibodies, anti-PD-1/PD-L1 antibodies), which are successfully used in metastatic melanoma. It is currently believed that CTLA-4 and PD-1 blockade would favor a strong immune response against cancer cells. The main side effects of ICIs are represented by the development of immune-related adverse events, which in some cases can be lethal. These ICI side effects would thus be not only therapeutically counterproductive but also potentially dangerous. Surprisingly, a subset of immune-related adverse events (especially autoimmune toxicity) seems to be clearly correlated with better therapeutic results, perhaps due to an additional therapeutic effect (currently insufficiently studied/exploited). Contrary to the classical approach of cancer (considered until now an uncontrolled division of cells), a very recent and comprehensive theory describes malignancy as a supracellular disease. Cancerous disease would therefore be a disturbed supracellular process (embryogenesis, growth, development, regeneration, etc.), which imposes/coordinates an increased rhythm of cell division, angiogenesis, immunosuppression, etc. Melanoma is presented from such a supracellular perspective to be able to explain the beneficial role of autoimmunity in cancer (autoimmune abortion/rejection of the melanoma-embryo phenotype) and to create premises to better optimize the newly emerging therapeutic options. Finally, it is suggested that the supracellular evolution of malignancy implies complex supracellular messaging (between the cells and host organism), which would be interfaced especially by the extracellular matrix and noncoding RNA. Therefore, understanding and manipulating supracellular messaging in cancer could open new treatment perspectives in the form of digitized (supracellular) therapy.
Insights
New melanoma therapies like BRAF inhibitors and immune checkpoint inhibitors (ICIs) show promise but have limitations. A supracellular disease perspective may explain beneficial autoimmunity and optimize future melanoma treatments.
Area of Science:
- Oncology
- Immunology
- Cancer Biology
Background:
- Melanoma is an aggressive cancer with high mortality.
- Current treatments include targeted BRAF inhibitors and immune checkpoint inhibitors (ICIs), but face challenges like therapy resistance and severe side effects.
- A novel supracellular disease theory offers a new framework for understanding cancer.
Purpose of the Study:
- To re-evaluate current melanoma therapies from a supracellular perspective.
- To explore the potential benefits of autoimmunity in melanoma treatment.
- To propose new therapeutic strategies based on supracellular messaging.
Main Methods:
- Review and synthesis of existing literature on melanoma targeted therapy, immunotherapy, and cancer biology.
- Application of the supracellular disease theory to explain observed phenomena in melanoma.
- Conceptual framework development for future therapeutic interventions.
Main Results:
- Targeted BRAF inhibitors are effective but lead to resistance.
- Immune checkpoint inhibitors (ICIs) improve outcomes but cause immune-related adverse events, some of which correlate with better efficacy.
- Autoimmunity may play a beneficial role in melanoma, potentially acting as an "autoimmune abortion" of the tumor.
- The supracellular disease model provides a unifying explanation for these observations.
Conclusions:
- Current melanoma therapies are imperfect and require optimization.
- Understanding melanoma as a supracellular disease can explain the therapeutic role of autoimmunity.
- Manipulating supracellular messaging presents a novel avenue for developing "digitized" cancer therapies.
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