Immune cell profiling of the cerebrospinal fluid enables the characterization of the brain metastasis microenvironment

Juan Sahuquillo Barris, Carlota Rubio-Perez, Ester Planas-Rigol, Juan L. Trincado, Ester Bonfill-Teixidor, Alexandra Arias, Domenica Marchese, Catia Moutinho, Garazi Serna, Leire Pedrosa, Raffaella Iurlaro, Fran Martinez-Ricarte, Laura Escudero, Esteban Cordero Asanza, Marta Cicuendez, Sara Ruiz, Genís Parra, Paolo Nuciforo, Josep Gonzalez, Estela PinedaHolger Heyn, Joan Seoane Suárez

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Resum

Brain metastases are the most common tumor of the brain with a dismal prognosis. A fraction of patients with brain metastasis benefit from treatment with immune checkpoint inhibitors (ICI) and the degree and phenotype of the immune cell infiltration has been used to predict response to ICI. However, the anatomical location of brain lesions limits access to tumor material to characterize the immune phenotype. Here, we characterize immune cells present in brain lesions and matched cerebrospinal fluid (CSF) using single-cell RNA sequencing combined with T cell receptor genotyping. Tumor immune infiltration and specifically CD8 + T cell infiltration can be discerned through the analysis of the CSF. Consistently, identical T cell receptor clonotypes are detected in brain lesions and CSF, confirming cell exchange between these compartments. The analysis of immune cells of the CSF can provide a non-invasive alternative to predict the response to ICI, as well as identify the T cell receptor clonotypes present in brain metastasis. The use of CSF for diagnosis of metastatic brain tumors could be of clinical and patient benefit. Here the authors undertake a single-cell RNA analysis of CSF and brain to determine whether the phenotype in the CSF is reflective of the phenotype in the tumor
Idioma originalAnglès
RevistaNature Communications
Volum12
DOIs
Estat de la publicacióPublicada - 2021

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