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Induction of SK-MEL-28 Invasion by Brain Cortical Cell-Conditioned Medium Through CXCL10 Signaling
Maria Clara Pinheiro Duarte Sampaio1, Renata Virgínia Cavalcanti Santos1, Amanda Pinheiro de Barros Albuquerque1
1Laboratory of Immunomodulation and New Therapeutical Approaches, Research Centre for Therapeutic Innovation Suely Galdino (NUPIT-SG), Federal University of Pernambuco, Recife, Brazil.
Abstract:
Melanoma, an infrequent yet significant variant of skin cancer, emerges as a primary cause of brain metastasis among various malignancies. Despite recognizing the involvement of inflammatory molecules, particularly chemokines, in shaping the metastatic microenvironment, the intricate cellular signaling mechanisms underlying cerebral metastasis remain elusive. In our pursuit to unravel the role of cytokines in melanoma metastasis, we devised a protocol utilizing mixed cerebral cortical cells and SK-MEL-28 melanoma cell lines. Contrary to expectations, we observed no discernible morphological change in melanoma cells exposed to a cerebral conditioned medium (CM). However, a substantial increase in both migration and proliferation was quantitatively noted. Profiling the chemokine secretion by melanoma in response to the cerebral CM unveiled the pivotal role of interferon gamma-induced protein 10 (CXCL10), inhibiting the secretion of interleukin 8 (CXCL8). Furthermore, through a transwell assay, we demonstrated that knockdown CXCL10 led to a significant decrease in the migration of the SK-MEL-28 cell line. In conclusion, our findings suggest that a cerebral CM induces melanoma cell migration, while modulating the secretion of CXCL10 and CXCL8 in the context of brain metastases. These insights advance our understanding of the underlying mechanisms in melanoma cerebral metastasis, paving the way for further exploration and targeted therapeutic interventions.
Insights
Brain metastasis in melanoma is influenced by cerebral factors. We found that a cerebral conditioned medium increases melanoma cell migration and proliferation, highlighting the roles of CXCL10 and CXCL8 in brain metastasis.
Area of Science:
- Oncology
- Neuroscience
- Cell Biology
Background:
- Melanoma is a significant cause of brain metastasis.
- The cellular signaling mechanisms of cerebral metastasis are not fully understood.
- Chemokines are implicated in the metastatic microenvironment.
Purpose of the Study:
- To investigate the role of cytokines in melanoma brain metastasis.
- To explore the effects of cerebral conditioned medium on melanoma cells.
- To elucidate the signaling pathways involved in melanoma cerebral metastasis.
Main Methods:
- Utilized mixed cerebral cortical cells and SK-MEL-28 melanoma cell lines.
- Exposed melanoma cells to cerebral conditioned medium (CM).
- Quantified melanoma cell migration and proliferation; profiled chemokine secretion; performed transwell assays with CXCL10 knockdown.
Main Results:
- Cerebral CM did not alter melanoma cell morphology but significantly increased migration and proliferation.
- CXCL10 secretion was pivotal, inhibiting CXCL8 secretion.
- Knockdown of CXCL10 significantly reduced melanoma cell migration.
Conclusions:
- Cerebral CM enhances melanoma cell migration and proliferation.
- Modulation of CXCL10 and CXCL8 secretion is involved in melanoma brain metastasis.
- Findings provide insights into melanoma cerebral metastasis mechanisms for therapeutic development.
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