Spatial transcriptomics analysis identifies a unique tumor-promoting function of the meningeal stroma in melanoma
Hasan Alhaddad1, Oscar E Ospina2, Mariam Lotfy Khaled1,3
1Department of Metabolism and Physiology at the Moffitt Cancer Center, Tampa, Florida, USA.
Abstract:
Leptomeningeal disease (LMD) remains a rapidly lethal complication for late-stage melanoma patients. The inaccessible nature of the disease site and lack of understanding of the biology of this unique metastatic site are major barriers to developing efficacious therapies for patients with melanoma LMD. Here, we characterize the tumor microenvironment of the leptomeningeal tissues and patient-matched extra-cranial metastatic sites using spatial transcriptomic analyses with in vitro and in vivo validation. We show the spatial landscape of melanoma LMD to be characterized by a lack of immune infiltration and instead exhibit a higher level of stromal involvement. We show that the tumor-stroma interactions at the leptomeninges activate pathways implicated in tumor-promoting signaling, mediated through upregulation of SERPINA3 at the tumor-stroma interface. Our functional experiments establish that the meningeal stroma is required for melanoma cells to survive in the CSF environment and that these interactions lead to a lack of MAPK inhibitor sensitivity in the tumor. We show that knocking down SERPINA3 or inhibiting the downstream IGR1R/PI3K/AKT axis results in re-sensitization of the tumor to MAPK-targeting therapy and tumor cell death in the leptomeningeal environment. Our data provides a spatial atlas of melanoma LMD, identifies the tumor-promoting role of meningeal stroma, and demonstrates a mechanism for overcoming microenvironment-mediated drug resistance unique to this metastatic site.
Insights
Melanoma leptomeningeal disease (LMD) shows low immune infiltration and high stromal involvement. Targeting SERPINA3 or the IGR1R/PI3K/AKT pathway can overcome drug resistance in this lethal complication.
Area of Science:
- Oncology
- Cancer Biology
- Translational Research
Background:
- Leptomeningeal disease (LMD) is a fatal complication of late-stage melanoma.
- Understanding the unique tumor microenvironment of LMD is crucial for developing effective therapies.
Approach:
- Spatial transcriptomic analysis of leptomeningeal and extra-cranial melanoma metastases.
- In vitro and in vivo functional validation of identified pathways.
- Characterization of tumor-stroma interactions within the leptomeningeal microenvironment.
Key Points:
- Melanoma LMD exhibits limited immune cell infiltration and significant stromal activation.
- Tumor-stroma interactions at the leptomeninges upregulate SERPINA3, promoting melanoma cell survival in cerebrospinal fluid (CSF).
- These interactions confer resistance to MAPK inhibitors, a common melanoma treatment.
Conclusions:
- Meningeal stroma plays a critical role in supporting melanoma LMD progression and mediating drug resistance.
- Targeting SERPINA3 or the downstream IGR1R/PI3K/AKT pathway can re-sensitize melanoma to MAPK inhibitors.
- This study provides a spatial map of melanoma LMD and a potential therapeutic strategy to overcome microenvironment-driven resistance.


