Neoantigen vaccine generates intratumoral T cell responses in phase Ib glioblastoma trial.

Keskin, Derin B; Anandappa, Annabelle J; Sun, Jing; Tirosh, Itay; Mathewson, Nathan D; Li, Shuqiang; Oliveira, Giacomo; Giobbie-Hurder, Anita et al. · Nature · 2019

case_series · Level IV

Where this comes from

Abstract

Neoantigens, which are derived from tumour-specific protein-coding mutations, are exempt from central tolerance, can generate robust immune responses<sup>1,2</sup> and can function as bona fide antigens that facilitate tumour rejection<sup>3</sup>. Here we demonstrate that a strategy that uses multi-epitope, personalized neoantigen vaccination, which has previously been tested in patients with high-risk melanoma<sup>4-6</sup>, is feasible for tumours such as glioblastoma, which typically have a relatively low mutation load<sup>1,7</sup> and an immunologically 'cold' tumour microenvironment<sup>8</sup>. We used personalized neoantigen-targeting vaccines to immunize patients newly diagnosed with glioblastoma following surgical resection and conventional radiotherapy in a phase I/Ib study. Patients who did not receive dexamethasone-a highly potent corticosteroid that is frequently prescribed to treat cerebral oedema in patients with glioblastoma-generated circulating polyfunctional neoantigen-specific CD4<sup>+</sup> and CD8<sup>+</sup> T cell responses that were enriched in a memory phenotype and showed an increase in the number of tumour-infiltrating T cells. Using single-cell T cell receptor analysis, we provide evidence that neoantigen-specific T cells from the peripheral blood can migrate into an intracranial glioblastoma tumour. Neoantigen-targeting vaccines thus have the potential to favourably alter the immune milieu of glioblastoma.

Medical subject headings