Cargando…

High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity

High-dose acetaminophen (AAP) with delayed rescue using n-acetylcysteine (NAC), the FDA-approved antidote to AAP overdose, has demonstrated promising antitumor efficacy in early phase clinical trials. However, the mechanism of action (MOA) of AAP's anticancer effects remains elusive. Using clin...

Descripción completa

Detalles Bibliográficos
Autores principales: Pingali, Pavani, Wu, Y. Jeffrey, Boothello, Rio, Sharon, Chetna, Li, Howard, Sistla, Srinivas, Sankaranarayanan, Nehru Viji, Desai, Umesh R., Le, Anh T., Doebele, Robert C., Muldoon, Leslie L., Patel, Bhaumik B., Neuwelt, Alexander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7920811/
https://www.ncbi.nlm.nih.gov/pubmed/33640759
http://dx.doi.org/10.1016/j.neo.2021.02.001
_version_ 1783658356603355136
author Pingali, Pavani
Wu, Y. Jeffrey
Boothello, Rio
Sharon, Chetna
Li, Howard
Sistla, Srinivas
Sankaranarayanan, Nehru Viji
Desai, Umesh R.
Le, Anh T.
Doebele, Robert C.
Muldoon, Leslie L.
Patel, Bhaumik B.
Neuwelt, Alexander
author_facet Pingali, Pavani
Wu, Y. Jeffrey
Boothello, Rio
Sharon, Chetna
Li, Howard
Sistla, Srinivas
Sankaranarayanan, Nehru Viji
Desai, Umesh R.
Le, Anh T.
Doebele, Robert C.
Muldoon, Leslie L.
Patel, Bhaumik B.
Neuwelt, Alexander
author_sort Pingali, Pavani
collection PubMed
description High-dose acetaminophen (AAP) with delayed rescue using n-acetylcysteine (NAC), the FDA-approved antidote to AAP overdose, has demonstrated promising antitumor efficacy in early phase clinical trials. However, the mechanism of action (MOA) of AAP's anticancer effects remains elusive. Using clinically relevant AAP concentrations, we evaluated cancer stem cell (CSC) phenotype in vitro and in vivo in lung cancer and melanoma cells with diverse driver mutations. Associated mechanisms were also studied. Our results demonstrated that AAP inhibited 3D spheroid formation, self-renewal, and expression of CSC markers when human cancer cells were grown in serum-free CSC media. Similarly, anti-CSC activity was demonstrated in vivo in xenograft models - tumor formation following in vitro treatment and ex-vivo spheroid formation following in vivo treatment. Intriguingly, NAC, used to mitigate AAP's liver toxicity, did not rescue cells from AAP's anti-CSC effects, and AAP failed to reduce glutathione levels in tumor xenograft in contrast to mice liver tissue suggesting nonglutathione-related MOA. In fact, AAP mediates its anti-CSC effect via inhibition of STAT3. AAP directly binds to STAT3 with an affinity in the low micromolar range and a high degree of specificity for STAT3 relative to STAT1. These findings have high immediate translational significance concerning advancing AAP with NAC rescue to selectively rescue hepatotoxicity while inhibiting CSCs. The novel mechanism of selective STAT3 inhibition has implications for developing rational anticancer combinations and better patient selection (predictive biomarkers) for clinical studies and developing novel selective STAT3 inhibitors using AAP's molecular scaffold.
format Online
Article
Text
id pubmed-7920811
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Neoplasia Press
record_format MEDLINE/PubMed
spelling pubmed-79208112021-03-12 High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity Pingali, Pavani Wu, Y. Jeffrey Boothello, Rio Sharon, Chetna Li, Howard Sistla, Srinivas Sankaranarayanan, Nehru Viji Desai, Umesh R. Le, Anh T. Doebele, Robert C. Muldoon, Leslie L. Patel, Bhaumik B. Neuwelt, Alexander Neoplasia Original Research High-dose acetaminophen (AAP) with delayed rescue using n-acetylcysteine (NAC), the FDA-approved antidote to AAP overdose, has demonstrated promising antitumor efficacy in early phase clinical trials. However, the mechanism of action (MOA) of AAP's anticancer effects remains elusive. Using clinically relevant AAP concentrations, we evaluated cancer stem cell (CSC) phenotype in vitro and in vivo in lung cancer and melanoma cells with diverse driver mutations. Associated mechanisms were also studied. Our results demonstrated that AAP inhibited 3D spheroid formation, self-renewal, and expression of CSC markers when human cancer cells were grown in serum-free CSC media. Similarly, anti-CSC activity was demonstrated in vivo in xenograft models - tumor formation following in vitro treatment and ex-vivo spheroid formation following in vivo treatment. Intriguingly, NAC, used to mitigate AAP's liver toxicity, did not rescue cells from AAP's anti-CSC effects, and AAP failed to reduce glutathione levels in tumor xenograft in contrast to mice liver tissue suggesting nonglutathione-related MOA. In fact, AAP mediates its anti-CSC effect via inhibition of STAT3. AAP directly binds to STAT3 with an affinity in the low micromolar range and a high degree of specificity for STAT3 relative to STAT1. These findings have high immediate translational significance concerning advancing AAP with NAC rescue to selectively rescue hepatotoxicity while inhibiting CSCs. The novel mechanism of selective STAT3 inhibition has implications for developing rational anticancer combinations and better patient selection (predictive biomarkers) for clinical studies and developing novel selective STAT3 inhibitors using AAP's molecular scaffold. Neoplasia Press 2021-02-26 /pmc/articles/PMC7920811/ /pubmed/33640759 http://dx.doi.org/10.1016/j.neo.2021.02.001 Text en © 2021 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Research
Pingali, Pavani
Wu, Y. Jeffrey
Boothello, Rio
Sharon, Chetna
Li, Howard
Sistla, Srinivas
Sankaranarayanan, Nehru Viji
Desai, Umesh R.
Le, Anh T.
Doebele, Robert C.
Muldoon, Leslie L.
Patel, Bhaumik B.
Neuwelt, Alexander
High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity
title High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity
title_full High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity
title_fullStr High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity
title_full_unstemmed High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity
title_short High dose acetaminophen inhibits STAT3 and has free radical independent anti-cancer stem cell activity
title_sort high dose acetaminophen inhibits stat3 and has free radical independent anti-cancer stem cell activity
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7920811/
https://www.ncbi.nlm.nih.gov/pubmed/33640759
http://dx.doi.org/10.1016/j.neo.2021.02.001
work_keys_str_mv AT pingalipavani highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT wuyjeffrey highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT boothellorio highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT sharonchetna highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT lihoward highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT sistlasrinivas highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT sankaranarayanannehruviji highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT desaiumeshr highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT leanht highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT doebelerobertc highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT muldoonlesliel highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT patelbhaumikb highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity
AT neuweltalexander highdoseacetaminopheninhibitsstat3andhasfreeradicalindependentanticancerstemcellactivity