학술논문

Resolution of tissue signatures of therapy response in patients with recurrent GBM treated with neoadjuvant anti-PD1.
Document Type
article
Source
Nature communications. 12(1)
Subject
CD8-Positive T-Lymphocytes
Humans
Glioblastoma
Melanoma
Brain Neoplasms
Neoplasm Recurrence
Local
Treatment Outcome
Neoadjuvant Therapy
Adult
Aged
Middle Aged
Female
Male
Tumor Microenvironment
CTLA-4 Antigen
Programmed Cell Death 1 Receptor
Biomarkers
Tumor
Antineoplastic Agents
Immunological
Ipilimumab
Nivolumab
Immune Checkpoint Inhibitors
Rare Diseases
Brain Disorders
Brain Cancer
Cancer
Neurosciences
Language
Abstract
The response of patients with recurrent glioblastoma multiforme to neoadjuvant immune checkpoint blockade has been challenging to interpret due to the inter-patient and intra-tumor heterogeneity. We report on a comparative analysis of tumor tissues collected from patients with recurrent glioblastoma and high-risk melanoma, both treated with neoadjuvant checkpoint blockade. We develop a framework that uses multiplex spatial protein profiling, machine learning-based image analysis, and data-driven computational models to investigate the pathophysiological and molecular factors within the tumor microenvironment that influence treatment response. Using melanoma to guide the interpretation of glioblastoma analyses, we interrogate the protein expression in microscopic compartments of tumors, and determine the correlates of cytotoxic CD8+ T cells, tumor growth, treatment response, and immune cell-cell interaction. This work reveals similarities shared between glioblastoma and melanoma, immunosuppressive factors that are unique to the glioblastoma microenvironment, and potential co-targets for enhancing the efficacy of neoadjuvant immune checkpoint blockade.