Quantitative multiplex immunohistochemistry reveals inter-patient lymphovascular and immune heterogeneity in primary cutaneous melanoma

Julia Femel, Cameron Hill, Irineu Illa Bochaca, Jamie L. Booth, Tina G. Asnaashari, Maria M. Steele, Ata S. Moshiri, Hyungrok Do, Judy Zhong, Iman Osman, Sancy A. Leachman, Takahiro Tsujikawa, Kevin P. White, Young H. Chang, Amanda W. Lund

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Introduction: Quantitative, multiplexed imaging is revealing complex spatial relationships between phenotypically diverse tumor infiltrating leukocyte populations and their prognostic implications. The underlying mechanisms and tissue structures that determine leukocyte distribution within and around tumor nests, however, remain poorly understood. While presumed players in metastatic dissemination, new preclinical data demonstrates that blood and lymphatic vessels (lymphovasculature) also dictate leukocyte trafficking within tumor microenvironments and thereby impact anti-tumor immunity. Here we interrogate these relationships in primary human cutaneous melanoma. Methods: We established a quantitative, multiplexed imaging platform to simultaneously detect immune infiltrates and tumor-associated vessels in formalin-fixed paraffin embedded patient samples. We performed a discovery, retrospective analysis of 28 treatment-naïve, primary cutaneous melanomas. Results: Here we find that the lymphvasculature and immune infiltrate is heterogenous across patients in treatment naïve, primary melanoma. We categorized five lymphovascular subtypes that differ by functionality and morphology and mapped their localization in and around primary tumors. Interestingly, the localization of specific vessel subtypes, but not overall vessel density, significantly associated with the presence of lymphoid aggregates, regional progression, and intratumoral T cell infiltrates. Discussion: We describe a quantitative platform to enable simultaneous lymphovascular and immune infiltrate analysis and map their spatial relationships in primary melanoma. Our data indicate that tumor-associated vessels exist in different states and that their localization may determine potential for metastasis or immune infiltration. This platform will support future efforts to map tumor-associated lymphovascular evolution across stage, assess its prognostic value, and stratify patients for adjuvant therapy.

Original languageEnglish (US)
Article number1328602
JournalFrontiers in immunology
Volume15
DOIs
StatePublished - 2024

Keywords

  • inflammation
  • lymphatic vessels
  • melanoma
  • metastasis, immune microenvironment
  • tertiary lymphoid structures
  • vasculature

ASJC Scopus subject areas

  • Immunology and Allergy
  • Immunology

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