Cargando…

A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice

Phosphodiesterase-5 inhibitors (PDE5i) are under investigation for repurposing for colon cancer prevention. A drawback to conventional PDE5i are their side-effects and drug–drug interactions. We designed an analog of the prototypical PDE5i sildenafil by replacing the methyl group on the piperazine r...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Avelina, Lebedyeva, Iryna, Zhi, Wenbo, Senthil, Vani, Cheema, Herjot, Brands, Michael W., Bush, Weston, Lambert, Nevin A., Snipes, Madeline, Browning, Darren D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253591/
https://www.ncbi.nlm.nih.gov/pubmed/37298349
http://dx.doi.org/10.3390/ijms24119397
_version_ 1785056442528563200
author Lee, Avelina
Lebedyeva, Iryna
Zhi, Wenbo
Senthil, Vani
Cheema, Herjot
Brands, Michael W.
Bush, Weston
Lambert, Nevin A.
Snipes, Madeline
Browning, Darren D.
author_facet Lee, Avelina
Lebedyeva, Iryna
Zhi, Wenbo
Senthil, Vani
Cheema, Herjot
Brands, Michael W.
Bush, Weston
Lambert, Nevin A.
Snipes, Madeline
Browning, Darren D.
author_sort Lee, Avelina
collection PubMed
description Phosphodiesterase-5 inhibitors (PDE5i) are under investigation for repurposing for colon cancer prevention. A drawback to conventional PDE5i are their side-effects and drug–drug interactions. We designed an analog of the prototypical PDE5i sildenafil by replacing the methyl group on the piperazine ring with malonic acid to reduce lipophilicity, and measured its entry into the circulation and effects on colon epithelium. This modification did not affect pharmacology as malonyl-sildenafil had a similar IC(50) to sildenafil but exhibited an almost 20-fold reduced EC(50) for increasing cellular cGMP. Using an LC-MS/MS approach, malonyl-sildenafil was negligible in mouse plasma after oral administration but was detected at high levels in the feces. No bioactive metabolites of malonyl-sildenafil were detected in the circulation by measuring interactions with isosorbide mononitrate. The treatment of mice with malonyl-sildenafil in the drinking water resulted in a suppression of proliferation in the colon epithelium that is consistent with results previously published for mice treated with PDE5i. A carboxylic-acid-containing analog of sildenafil prohibits the systemic delivery of the compound but maintains sufficient penetration into the colon epithelium to suppress proliferation. This highlights a novel approach to generating a first-in-class drug for colon cancer chemoprevention.
format Online
Article
Text
id pubmed-10253591
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-102535912023-06-10 A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice Lee, Avelina Lebedyeva, Iryna Zhi, Wenbo Senthil, Vani Cheema, Herjot Brands, Michael W. Bush, Weston Lambert, Nevin A. Snipes, Madeline Browning, Darren D. Int J Mol Sci Article Phosphodiesterase-5 inhibitors (PDE5i) are under investigation for repurposing for colon cancer prevention. A drawback to conventional PDE5i are their side-effects and drug–drug interactions. We designed an analog of the prototypical PDE5i sildenafil by replacing the methyl group on the piperazine ring with malonic acid to reduce lipophilicity, and measured its entry into the circulation and effects on colon epithelium. This modification did not affect pharmacology as malonyl-sildenafil had a similar IC(50) to sildenafil but exhibited an almost 20-fold reduced EC(50) for increasing cellular cGMP. Using an LC-MS/MS approach, malonyl-sildenafil was negligible in mouse plasma after oral administration but was detected at high levels in the feces. No bioactive metabolites of malonyl-sildenafil were detected in the circulation by measuring interactions with isosorbide mononitrate. The treatment of mice with malonyl-sildenafil in the drinking water resulted in a suppression of proliferation in the colon epithelium that is consistent with results previously published for mice treated with PDE5i. A carboxylic-acid-containing analog of sildenafil prohibits the systemic delivery of the compound but maintains sufficient penetration into the colon epithelium to suppress proliferation. This highlights a novel approach to generating a first-in-class drug for colon cancer chemoprevention. MDPI 2023-05-28 /pmc/articles/PMC10253591/ /pubmed/37298349 http://dx.doi.org/10.3390/ijms24119397 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lee, Avelina
Lebedyeva, Iryna
Zhi, Wenbo
Senthil, Vani
Cheema, Herjot
Brands, Michael W.
Bush, Weston
Lambert, Nevin A.
Snipes, Madeline
Browning, Darren D.
A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice
title A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice
title_full A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice
title_fullStr A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice
title_full_unstemmed A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice
title_short A Non-Systemic Phosphodiesterase-5 Inhibitor Suppresses Colon Proliferation in Mice
title_sort non-systemic phosphodiesterase-5 inhibitor suppresses colon proliferation in mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10253591/
https://www.ncbi.nlm.nih.gov/pubmed/37298349
http://dx.doi.org/10.3390/ijms24119397
work_keys_str_mv AT leeavelina anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT lebedyevairyna anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT zhiwenbo anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT senthilvani anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT cheemaherjot anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT brandsmichaelw anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT bushweston anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT lambertnevina anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT snipesmadeline anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT browningdarrend anonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT leeavelina nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT lebedyevairyna nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT zhiwenbo nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT senthilvani nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT cheemaherjot nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT brandsmichaelw nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT bushweston nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT lambertnevina nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT snipesmadeline nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice
AT browningdarrend nonsystemicphosphodiesterase5inhibitorsuppressescolonproliferationinmice