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Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment

PURPOSE: Cancer drug development is currently limited by a paradigm of preclinical evaluation that does not adequately recapitulate the complexity of the intact human tumor microenvironment (TME). To overcome this, we combined trackable intratumor microdosing (CIVO) with spatial biology readouts to...

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Autores principales: Derry, Jonathan M.J., Burns, Connor, Frazier, Jason P., Beirne, Emily, Grenley, Marc, DuFort, Christopher C., Killingbeck, Emily, Leon, Michael, Williams, Claire, Gregory, Mark, Houlton, Jeffrey, Clayburgh, Daniel, Swiecicki, Paul, Huszar, Dennis, Berger, Allison, Klinghoffer, Richard A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10502463/
https://www.ncbi.nlm.nih.gov/pubmed/37389981
http://dx.doi.org/10.1158/1078-0432.CCR-23-0827
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author Derry, Jonathan M.J.
Burns, Connor
Frazier, Jason P.
Beirne, Emily
Grenley, Marc
DuFort, Christopher C.
Killingbeck, Emily
Leon, Michael
Williams, Claire
Gregory, Mark
Houlton, Jeffrey
Clayburgh, Daniel
Swiecicki, Paul
Huszar, Dennis
Berger, Allison
Klinghoffer, Richard A.
author_facet Derry, Jonathan M.J.
Burns, Connor
Frazier, Jason P.
Beirne, Emily
Grenley, Marc
DuFort, Christopher C.
Killingbeck, Emily
Leon, Michael
Williams, Claire
Gregory, Mark
Houlton, Jeffrey
Clayburgh, Daniel
Swiecicki, Paul
Huszar, Dennis
Berger, Allison
Klinghoffer, Richard A.
author_sort Derry, Jonathan M.J.
collection PubMed
description PURPOSE: Cancer drug development is currently limited by a paradigm of preclinical evaluation that does not adequately recapitulate the complexity of the intact human tumor microenvironment (TME). To overcome this, we combined trackable intratumor microdosing (CIVO) with spatial biology readouts to directly assess drug effects in patient tumors in situ. EXPERIMENTAL DESIGN: In a first-of-its-kind phase 0 clinical trial, we explored the effects of an investigational stage SUMOylation-activating enzyme (SAE) inhibitor, subasumstat (TAK-981) in 12 patients with head and neck carcinoma (HNC). Patients scheduled for tumor resection received percutaneous intratumor injections of subasumstat and vehicle control 1 to 4 days before surgery, resulting in spatially localized and graded regions of drug exposure (∼1,000–2,000 μm in diameter). Drug-exposed (n = 214) and unexposed regions (n = 140) were compared by GeoMx Digital Spatial Profiler, with evaluation at single-cell resolution in a subset of these by CosMx Spatial Molecular Imager. RESULTS: Localized regions of subasumstat exposure revealed SUMO pathway inhibition, elevation of type I IFN response, and inhibition of cell cycle across all tumor samples. Single-cell analysis by CosMx demonstrated cell-cycle inhibition specific to the tumor epithelium, and IFN pathway induction commensurate with a TME shift from immune-suppressive to immune-permissive. CONCLUSIONS: Pairing CIVO with spatial profiling enabled detailed investigation of response to subasumstat across a diverse sampling of native and intact TME. We demonstrate that drug mechanism of action can be directly evaluated in a spatially precise manner in the most translationally relevant setting: an in situ human tumor.
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spelling pubmed-105024632023-09-16 Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment Derry, Jonathan M.J. Burns, Connor Frazier, Jason P. Beirne, Emily Grenley, Marc DuFort, Christopher C. Killingbeck, Emily Leon, Michael Williams, Claire Gregory, Mark Houlton, Jeffrey Clayburgh, Daniel Swiecicki, Paul Huszar, Dennis Berger, Allison Klinghoffer, Richard A. Clin Cancer Res Translational Cancer Mechanisms and Therapy PURPOSE: Cancer drug development is currently limited by a paradigm of preclinical evaluation that does not adequately recapitulate the complexity of the intact human tumor microenvironment (TME). To overcome this, we combined trackable intratumor microdosing (CIVO) with spatial biology readouts to directly assess drug effects in patient tumors in situ. EXPERIMENTAL DESIGN: In a first-of-its-kind phase 0 clinical trial, we explored the effects of an investigational stage SUMOylation-activating enzyme (SAE) inhibitor, subasumstat (TAK-981) in 12 patients with head and neck carcinoma (HNC). Patients scheduled for tumor resection received percutaneous intratumor injections of subasumstat and vehicle control 1 to 4 days before surgery, resulting in spatially localized and graded regions of drug exposure (∼1,000–2,000 μm in diameter). Drug-exposed (n = 214) and unexposed regions (n = 140) were compared by GeoMx Digital Spatial Profiler, with evaluation at single-cell resolution in a subset of these by CosMx Spatial Molecular Imager. RESULTS: Localized regions of subasumstat exposure revealed SUMO pathway inhibition, elevation of type I IFN response, and inhibition of cell cycle across all tumor samples. Single-cell analysis by CosMx demonstrated cell-cycle inhibition specific to the tumor epithelium, and IFN pathway induction commensurate with a TME shift from immune-suppressive to immune-permissive. CONCLUSIONS: Pairing CIVO with spatial profiling enabled detailed investigation of response to subasumstat across a diverse sampling of native and intact TME. We demonstrate that drug mechanism of action can be directly evaluated in a spatially precise manner in the most translationally relevant setting: an in situ human tumor. American Association for Cancer Research 2023-09-15 2023-06-30 /pmc/articles/PMC10502463/ /pubmed/37389981 http://dx.doi.org/10.1158/1078-0432.CCR-23-0827 Text en ©2023 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Translational Cancer Mechanisms and Therapy
Derry, Jonathan M.J.
Burns, Connor
Frazier, Jason P.
Beirne, Emily
Grenley, Marc
DuFort, Christopher C.
Killingbeck, Emily
Leon, Michael
Williams, Claire
Gregory, Mark
Houlton, Jeffrey
Clayburgh, Daniel
Swiecicki, Paul
Huszar, Dennis
Berger, Allison
Klinghoffer, Richard A.
Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment
title Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment
title_full Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment
title_fullStr Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment
title_full_unstemmed Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment
title_short Trackable Intratumor Microdosing and Spatial Profiling Provide Early Insights into Activity of Investigational Agents in the Intact Tumor Microenvironment
title_sort trackable intratumor microdosing and spatial profiling provide early insights into activity of investigational agents in the intact tumor microenvironment
topic Translational Cancer Mechanisms and Therapy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10502463/
https://www.ncbi.nlm.nih.gov/pubmed/37389981
http://dx.doi.org/10.1158/1078-0432.CCR-23-0827
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