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20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY

Most metastatic melanoma patients exhibit poor and variable response to radiotherapy and targeted therapies, including immune checkpoint inhibitors. There is a need for therapeutics that can potentiate existing treatments to positively impact clinical outcomes of metastatic melanoma patients. We rea...

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Autores principales: Sengupta, Soma, Nasti, Tahseen, Kaluzova, Milota, Kallay, Laura, Melms, Johannes, Izar, Benjamin, Xu, Maxwell, Bhattacharya, Debanjan, Burnham, Andre, Li, Guanguan, Ahmed, Taukir, Lawson, David, Kowalski, Jeanne, Cook, James, Medvedovic, Mario, Jenkins, Andrew, Khan, Mohammad, Pomeranz Krummel, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7401396/
http://dx.doi.org/10.1093/noajnl/vdaa073.010
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author Sengupta, Soma
Nasti, Tahseen
Kaluzova, Milota
Kallay, Laura
Melms, Johannes
Izar, Benjamin
Xu, Maxwell
Bhattacharya, Debanjan
Burnham, Andre
Li, Guanguan
Ahmed, Taukir
Lawson, David
Kowalski, Jeanne
Cook, James
Medvedovic, Mario
Jenkins, Andrew
Khan, Mohammad
Pomeranz Krummel, Daniel
author_facet Sengupta, Soma
Nasti, Tahseen
Kaluzova, Milota
Kallay, Laura
Melms, Johannes
Izar, Benjamin
Xu, Maxwell
Bhattacharya, Debanjan
Burnham, Andre
Li, Guanguan
Ahmed, Taukir
Lawson, David
Kowalski, Jeanne
Cook, James
Medvedovic, Mario
Jenkins, Andrew
Khan, Mohammad
Pomeranz Krummel, Daniel
author_sort Sengupta, Soma
collection PubMed
description Most metastatic melanoma patients exhibit poor and variable response to radiotherapy and targeted therapies, including immune checkpoint inhibitors. There is a need for therapeutics that can potentiate existing treatments to positively impact clinical outcomes of metastatic melanoma patients. We reanalyzed melanoma TCGA transcriptomes and identified, as linked to previously defined molecular subgroups, enhanced expression of genes coding for subunits of the Type A GABA receptor (GABA(A)R), a chloride ion channel and major inhibitory neurotransmitter receptor. Using whole-cell patch clamp electrophysiology, we find that melanoma cells possess GABA(A)Rs that control membrane permeability to anions. Select benzodiazepines, by enhancing GABA(A)R mediated anion transport, depolarize melanoma cell mitochondrial membrane potential and impair cell viability in vitro. Using a syngeneic melanoma mouse model, we find that a benzodiazepine promotes reduction in tumor volume when administered alone and potentiated radiation or immune checkpoint inhibitor α-PD-L1. When a benzodiazepine is combined with concurrent α-PD-L1 and a sub-lethal radiation dose, there is near complete loss of tumor, beyond what is observed for benzodiazepine with radiation or α-PD-L1. Mechanistically, benzodiazepine with radiation or α-PD-L1 results in ipsilateral and an abscopal tumor volume reduction commensurate with enhanced infiltration into the tumor milieu of polyfunctional CD8 T-cells. There is also an increased expression of genes with roles in the cytokine-cytokine receptor and p53 signaling pathways. This study provides evidence for melanoma cell GABA(A)Rs as a therapeutic vulnerability with benzodiazepines promoting both direct and immune-mediated anti-tumor activity.
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spelling pubmed-74013962020-08-06 20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY Sengupta, Soma Nasti, Tahseen Kaluzova, Milota Kallay, Laura Melms, Johannes Izar, Benjamin Xu, Maxwell Bhattacharya, Debanjan Burnham, Andre Li, Guanguan Ahmed, Taukir Lawson, David Kowalski, Jeanne Cook, James Medvedovic, Mario Jenkins, Andrew Khan, Mohammad Pomeranz Krummel, Daniel Neurooncol Adv Supplement Abstracts Most metastatic melanoma patients exhibit poor and variable response to radiotherapy and targeted therapies, including immune checkpoint inhibitors. There is a need for therapeutics that can potentiate existing treatments to positively impact clinical outcomes of metastatic melanoma patients. We reanalyzed melanoma TCGA transcriptomes and identified, as linked to previously defined molecular subgroups, enhanced expression of genes coding for subunits of the Type A GABA receptor (GABA(A)R), a chloride ion channel and major inhibitory neurotransmitter receptor. Using whole-cell patch clamp electrophysiology, we find that melanoma cells possess GABA(A)Rs that control membrane permeability to anions. Select benzodiazepines, by enhancing GABA(A)R mediated anion transport, depolarize melanoma cell mitochondrial membrane potential and impair cell viability in vitro. Using a syngeneic melanoma mouse model, we find that a benzodiazepine promotes reduction in tumor volume when administered alone and potentiated radiation or immune checkpoint inhibitor α-PD-L1. When a benzodiazepine is combined with concurrent α-PD-L1 and a sub-lethal radiation dose, there is near complete loss of tumor, beyond what is observed for benzodiazepine with radiation or α-PD-L1. Mechanistically, benzodiazepine with radiation or α-PD-L1 results in ipsilateral and an abscopal tumor volume reduction commensurate with enhanced infiltration into the tumor milieu of polyfunctional CD8 T-cells. There is also an increased expression of genes with roles in the cytokine-cytokine receptor and p53 signaling pathways. This study provides evidence for melanoma cell GABA(A)Rs as a therapeutic vulnerability with benzodiazepines promoting both direct and immune-mediated anti-tumor activity. Oxford University Press 2020-08-04 /pmc/articles/PMC7401396/ http://dx.doi.org/10.1093/noajnl/vdaa073.010 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Supplement Abstracts
Sengupta, Soma
Nasti, Tahseen
Kaluzova, Milota
Kallay, Laura
Melms, Johannes
Izar, Benjamin
Xu, Maxwell
Bhattacharya, Debanjan
Burnham, Andre
Li, Guanguan
Ahmed, Taukir
Lawson, David
Kowalski, Jeanne
Cook, James
Medvedovic, Mario
Jenkins, Andrew
Khan, Mohammad
Pomeranz Krummel, Daniel
20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY
title 20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY
title_full 20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY
title_fullStr 20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY
title_full_unstemmed 20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY
title_short 20. MELANOMA CELL INTRINSIC GABAA RECEPTOR ENHANCEMENT POTENTIATES RADIATION AND IMMUNE CHECKPOINT INHIBITOR RESPONSE BY PROMOTING DIRECT AND T CELL-MEDIATED ANTI-TUMOR ACTIVITY
title_sort 20. melanoma cell intrinsic gabaa receptor enhancement potentiates radiation and immune checkpoint inhibitor response by promoting direct and t cell-mediated anti-tumor activity
topic Supplement Abstracts
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7401396/
http://dx.doi.org/10.1093/noajnl/vdaa073.010
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