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Biology subjects

Gatti, L. C. D. E.

Publications and source records attributed to Gatti, L. C. D. E..

2 recordsLinked to original sources

De novo H3.3K27M-altered Diffuse Midline Glioma in human brainstem organoids to dissect GD2 CAR T cell function

Diffuse midline glioma (DMG) is a rare yet highly aggressive paediatric cancer primarily arising in the pontine region of the brainstem, necessitating the development of scalable patient-representative models for treatment advance1,2. Here, we developed an FGF4-driven human brainstem organoid model, with high representation of pontine glial lineages. By genetically engineering de novo H3.3K27M-altered DMG, we show that this brainstem glial specification is essential for driving DMG tumorigenesis, resulting in tumours that recapitulate the infiltrative nature and molecular heterogeneity of patient samples. By performing prolonged GD2 CAR T cell treatment in this model, we could mirror variable treatment outcomes as observed in the clinic3,4 and demonstrate a high level of CAR T cell transcriptional heterogeneity. From these CAR T cell functional states, we could identify the most potent effector population and validated NCAM1 as a selection marker for their enrichment. In contrast, NCAM1- cells were linked to a cellular stress response, previously associated to immunotherapy resistance5. Furthermore, incorporating the brain-resident myeloid compartment resulted in DMG-specific, largely immunosuppressive microglia subtypes6. These disease-representative microglia reduced GD2 CAR T cell treatment efficacy and we identified the functional profiles most susceptible to this microglia-dependent immune modulation. Thus, we present a scalable human DMG model with critical applications towards understanding CAR T cell functionality to aid therapy development for this detrimental disease.

cancer biology↗

Functional γδT-omics pipeline reveals compartmentalization of Vδ1⁺ T cell migration, tumor-reactivity, and clonality in human colorectal cancer

{gamma}{delta}T cells play a pivotal role in cancer immune surveillance, yet the current knowledge of their function across the compartments in solid tumors is meager. To address this gap, we developed a comprehensive {gamma}{delta}T-omics platform that integrates functional screening, biomimetic migration assays, {gamma}{delta}TCR repertoire analysis, and transcriptomic profiling. Using matched samples from 31 patients with microsatellite-stable colorectal cancer (CRC), we analyzed {gamma}{delta}T cells from peripheral blood (PBLs{gamma}{delta}), adjacent colon (LPLs{gamma}{delta}), primary tumors (pTILs{gamma}{delta}), and liver metastases (mTILs{gamma}{delta}). This approach uncovered striking compartmentalization of {gamma}{delta}T cell phenotypes, clonality, and function. Tumor-reactive, clonally expanded V{delta}1 {gamma}{delta}T cells were enriched in primary tumors and shared transcriptional and functional features with lamina propria lymphocytes (LPLs). In contrast, V{delta}1 {gamma}{delta}T cells from liver metastases lacked tumor reactivity, exhibited distinct {gamma}{delta}TCR repertoires, and expressed transcriptional signatures associated with TGF-{beta}-mediated suppression and cellular quiescence, suggesting they are shaped by tissue-specific environmental cues. CXCL16 secretion by tumor cells initiated V{delta}1 LPLs{gamma}{delta} migration, which was further amplified by {gamma}{delta}TCR-mediated CCL5 induction from pTILs{gamma}{delta}, leading to CCR5 downregulation and subsequent entrapment of pTILs{gamma}{delta} within the tumor microenvironment. Accordingly, our clinical data from an independent second cohort of 69 patients showed that infiltration by pTILs{gamma}{delta}, but not mTILs{gamma}{delta}, is associated with a protective effect against CRC progression. In summary, our study offers a compartment-resolved perspective on {gamma}{delta}T cell behavior in CRC, revealing key trafficking and functional mechanisms, and enabling the identification of novel tumor-reactive {gamma}{delta}TCRs and migratory cues to inform immunotherapeutic strategies for both primary and metastatic CRC. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=179 SRC="FIGDIR/small/671055v1_ufig1.gif" ALT="Figure 1"> View larger version (54K): org.highwire.dtl.DTLVardef@ff3bborg.highwire.dtl.DTLVardef@14a7e1forg.highwire.dtl.DTLVardef@19e4de4org.highwire.dtl.DTLVardef@bc600_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗