Managing leptomeningeal melanoma metastases in the era of immune and targeted therapy

Keiran S.M. Smalley, Inna V. Fedorenko, Rajappa S. Kenchappa, Solmaz Sahebjam, Peter A. Forsyth

Research output: Contribution to journalReview articlepeer-review

14 Scopus citations

Abstract

Melanoma frequently metastasizes to the brain, with CNS involvement being clinically evident in ∼30% of patients (as high as 75% at autopsy). In ∼5% cases melanoma cells also metastasize to the leptomeninges, the sub-arachnoid space and cerebrospinal fluid (CSF). Patients with leptomeningeal melanoma metastases (LMM) have the worst prognosis and are characterized by rapid disease progression (mean survival 8-10 weeks) and a death from neurological causes. The recent years have seen tremendous progress in the development of targeted and immune therapies for melanoma that has translated into an increased survival benefit. Despite these gains, the majority of patients fail therapy and there is a suspicion that the brain and the leptomeninges are a “sanctuary” sites for melanoma cells that escape both targeted therapy and immunologic therapies. Emerging evidence suggests that (1) Cancer cells migrating to the CNS may have unique molecular properties and (2) the CNS/leptomeningeal microenvironment represents a pro-survival niche that influences therapeutic response. In this Mini-Review, we will outline the clinical course of LMM development and will describe how the intracranial immune and cellular microenvironments offer both opportunities and challenges for the successful management of this disease. We will further discuss the latest data demonstrating the potential use of BRAF inhibitors and immune therapy in the management of LMM, and will review future potential therapeutic strategies for the management of this most devastating complication of advanced melanoma.

Original languageEnglish (US)
Pages (from-to)1195-1201
Number of pages7
JournalInternational Journal of Cancer
Volume139
Issue number6
DOIs
StatePublished - Sep 15 2016

Keywords

  • BRAF
  • brain
  • immunotherapy
  • leptomeninges
  • melanoma

ASJC Scopus subject areas

  • Oncology
  • Cancer Research

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