Skip to main content

A Spatial Multi-Omic Framework Identifies Gliomas Permissive to TIL Expansion.

Publication ,  Journal Article
Hotchkiss, KM; Zhang, K; Corcoran, AM; Owens, E; Noldner, P; Railton, C; Van Batavia, K; Zhou, Y; Jepson, J; Singh, K; McLendon, R; Batich, K ...
Published in: bioRxiv
April 12, 2025

Tumor-infiltrating lymphocyte (TIL) therapy, recently approved by the FDA for melanoma, is an emerging modality for cell-based immunotherapy. However, its application in immunologically 'cold' tumors such as glioblastoma remains limited due to sparse T cell infiltration, antigenic heterogeneity, and a suppressive tumor microenvironment. To identify genomic and spatial determinants of TIL expandability, we performed integrated, multimodal profiling of high-grade gliomas using spectral flow cytometry, TCR sequencing, single-cell RNA-seq, Xenium in situ transcriptomics, and CODEX spatial proteomics. Comparative analysis of TIL-generating (TIL+) versus non-generating (TIL-) tumors revealed that IL7R expression, structured perivascular immune clustering, and tumor-intrinsic metabolic programs such as ACSS3 were associated with successful TIL expansion. In contrast, TIL-; tumors were enriched for neuronal lineage signatures, immunosuppressive transcripts including TOX and FERMT1, and tumor-connected macrophages. This study defines spatial and molecular correlates of TIL manufacturing success and establishes a genomics-enabled selection platform for adoptive T cell therapy. The profiling approach is now being prospectively implemented in the GIANT clinical trial ( NCT06816927 ), supporting its translational relevance and scalability across glioblastoma and other immune-excluded cancers.

Duke Scholars

Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

April 12, 2025

Location

United States
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Hotchkiss, K. M., Zhang, K., Corcoran, A. M., Owens, E., Noldner, P., Railton, C., … Khasraw, M. (2025). A Spatial Multi-Omic Framework Identifies Gliomas Permissive to TIL Expansion. BioRxiv. https://doi.org/10.1101/2025.03.26.645566
Hotchkiss, Kelly M., Kenan Zhang, Anna M. Corcoran, Elizabeth Owens, Pamela Noldner, Chelsea Railton, Kyra Van Batavia, et al. “A Spatial Multi-Omic Framework Identifies Gliomas Permissive to TIL Expansion.BioRxiv, April 12, 2025. https://doi.org/10.1101/2025.03.26.645566.
Hotchkiss KM, Zhang K, Corcoran AM, Owens E, Noldner P, Railton C, et al. A Spatial Multi-Omic Framework Identifies Gliomas Permissive to TIL Expansion. bioRxiv. 2025 Apr 12;
Hotchkiss, Kelly M., et al. “A Spatial Multi-Omic Framework Identifies Gliomas Permissive to TIL Expansion.BioRxiv, Apr. 2025. Pubmed, doi:10.1101/2025.03.26.645566.
Hotchkiss KM, Zhang K, Corcoran AM, Owens E, Noldner P, Railton C, Van Batavia K, Zhou Y, Jepson J, Singh K, McLendon R, Batich K, Patel AP, Ayasoufi K, Brown MC, Calabrese E, Xie J, Conejo-Garcia J, Shaz BH, Hickey JW, Khasraw M. A Spatial Multi-Omic Framework Identifies Gliomas Permissive to TIL Expansion. bioRxiv. 2025 Apr 12;

Published In

bioRxiv

DOI

EISSN

2692-8205

Publication Date

April 12, 2025

Location

United States