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Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer

The high potency of the tetrahydrofuran-containing acetogenins (THF-ACGs) against a broad range of human cancer cell lines has stimulated interest in structurally simpler mimetics. In this context, we have previously reported THF-ACG mimetics in which the THF and butenolide moieties of a mono-THF-AC...

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Autores principales: Periche, Patricia Gonzalez, Lin, Jacky, Bhupathiraju, Naga V. S. D. K., Kalidindi, Teja, Johnson, Delissa S., Pillarsetty, Nagavarakishore, Mootoo, David R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095889/
https://www.ncbi.nlm.nih.gov/pubmed/37049648
http://dx.doi.org/10.3390/molecules28072884
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author Periche, Patricia Gonzalez
Lin, Jacky
Bhupathiraju, Naga V. S. D. K.
Kalidindi, Teja
Johnson, Delissa S.
Pillarsetty, Nagavarakishore
Mootoo, David R.
author_facet Periche, Patricia Gonzalez
Lin, Jacky
Bhupathiraju, Naga V. S. D. K.
Kalidindi, Teja
Johnson, Delissa S.
Pillarsetty, Nagavarakishore
Mootoo, David R.
author_sort Periche, Patricia Gonzalez
collection PubMed
description The high potency of the tetrahydrofuran-containing acetogenins (THF-ACGs) against a broad range of human cancer cell lines has stimulated interest in structurally simpler mimetics. In this context, we have previously reported THF-ACG mimetics in which the THF and butenolide moieties of a mono-THF-ACG were replaced with carbohydrate and thiophene residues, respectively. In the present study, towards the targeting of these carbohydrate analogues to prostate cancer (PCa), we synthesized prodrugs in which a parent thiophene or butenolide congener was conjugated through a self-immolative linker to 2-[3-(1,3-dicarboxypropyl)ureido] pentanedioic acid (DUPA), a highly specific ligand for prostate-specific membrane antigen (PSMA), which is overexpressed on prostate tumors. Both prodrugs were found to be more active against receptor positive LNCaP than receptor-negative PC-3 cells, with 2.5 and 12 times greater selectivity for the more potent thiophene analog and the less active butenolide congener, respectively. This selectivity for LNCaP over PC-3 contrasted with the behavior of the parent drugs, which showed similar or significantly higher activity for PC-3 compared to LNCaP. These data support the notion that higher activity of these DUPA-derived prodrugs against LNCaP cells is connected to their binding to PSMA and suggest that the conjugation of PSMA ligands to this family of cytotoxic agents may be effective for targeting them to PCa.
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spelling pubmed-100958892023-04-13 Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer Periche, Patricia Gonzalez Lin, Jacky Bhupathiraju, Naga V. S. D. K. Kalidindi, Teja Johnson, Delissa S. Pillarsetty, Nagavarakishore Mootoo, David R. Molecules Article The high potency of the tetrahydrofuran-containing acetogenins (THF-ACGs) against a broad range of human cancer cell lines has stimulated interest in structurally simpler mimetics. In this context, we have previously reported THF-ACG mimetics in which the THF and butenolide moieties of a mono-THF-ACG were replaced with carbohydrate and thiophene residues, respectively. In the present study, towards the targeting of these carbohydrate analogues to prostate cancer (PCa), we synthesized prodrugs in which a parent thiophene or butenolide congener was conjugated through a self-immolative linker to 2-[3-(1,3-dicarboxypropyl)ureido] pentanedioic acid (DUPA), a highly specific ligand for prostate-specific membrane antigen (PSMA), which is overexpressed on prostate tumors. Both prodrugs were found to be more active against receptor positive LNCaP than receptor-negative PC-3 cells, with 2.5 and 12 times greater selectivity for the more potent thiophene analog and the less active butenolide congener, respectively. This selectivity for LNCaP over PC-3 contrasted with the behavior of the parent drugs, which showed similar or significantly higher activity for PC-3 compared to LNCaP. These data support the notion that higher activity of these DUPA-derived prodrugs against LNCaP cells is connected to their binding to PSMA and suggest that the conjugation of PSMA ligands to this family of cytotoxic agents may be effective for targeting them to PCa. MDPI 2023-03-23 /pmc/articles/PMC10095889/ /pubmed/37049648 http://dx.doi.org/10.3390/molecules28072884 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
Periche, Patricia Gonzalez
Lin, Jacky
Bhupathiraju, Naga V. S. D. K.
Kalidindi, Teja
Johnson, Delissa S.
Pillarsetty, Nagavarakishore
Mootoo, David R.
Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer
title Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer
title_full Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer
title_fullStr Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer
title_full_unstemmed Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer
title_short Targeting Carbohydrate Mimetics of Tetrahydrofuran-Containing Acetogenins to Prostate Cancer
title_sort targeting carbohydrate mimetics of tetrahydrofuran-containing acetogenins to prostate cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095889/
https://www.ncbi.nlm.nih.gov/pubmed/37049648
http://dx.doi.org/10.3390/molecules28072884
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