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Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy

Almost all cells are easily killed by exposure to potent oxidants. Indeed, major pathogen defense mechanisms in both animal and plant kingdoms involve production of an oxidative burst, where host defense cells show an invading pathogen with reactive oxygen species (ROS). Although cancer cells can be...

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Autores principales: Kumar, Ajay, Chelvam, Venkatesh, Sakkarapalayam, Mahalingam, Li, Guo, Sanchez-Cruz, Pedro, Piñero, Natasha S., Low, Philip S., Alegria, Antonio E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4825697/
https://www.ncbi.nlm.nih.gov/pubmed/27066312
http://dx.doi.org/10.4236/ojmc.2016.61001
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author Kumar, Ajay
Chelvam, Venkatesh
Sakkarapalayam, Mahalingam
Li, Guo
Sanchez-Cruz, Pedro
Piñero, Natasha S.
Low, Philip S.
Alegria, Antonio E.
author_facet Kumar, Ajay
Chelvam, Venkatesh
Sakkarapalayam, Mahalingam
Li, Guo
Sanchez-Cruz, Pedro
Piñero, Natasha S.
Low, Philip S.
Alegria, Antonio E.
author_sort Kumar, Ajay
collection PubMed
description Almost all cells are easily killed by exposure to potent oxidants. Indeed, major pathogen defense mechanisms in both animal and plant kingdoms involve production of an oxidative burst, where host defense cells show an invading pathogen with reactive oxygen species (ROS). Although cancer cells can be similarly killed by ROS, development of oxidant-producing chemotherapies has been limited by their inherent nonspecificity and potential toxicity to healthy cells. In this paper, we describe the targeting of an ROS-generating molecule selectively to tumor cells using folate as the tumor-targeting ligand. For this purpose, we exploit the ability of 9,10-phenanthraquinone (PHQ) to enhance the continuous generation of H(2)O(2) in the presence of ascorbic acid to establish a constitutive source of ROS within the tumor mass. We report here that incubation of folate receptor-expressing KB cells in culture with folate-PHQ plus ascorbate results in the death of the cancer cells with an IC(50) of ~10 nM (folate-PHQ). We also demonstrate that a cleavable spacer linking folate to PHQ is significantly inferior to a noncleavable spacer, in contrast to most other folate-targeted therapeutic agents. Unfortunately, no evidence for folate-PHQ mediated tumor regression in murine tumor models is obtained, suggesting that unanticipated impediments to generation of cytotoxic quantities of ROS in vivo are encountered. Possible mechanisms and potential solutions to these unanticipated results are offered.
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spelling pubmed-48256972016-04-08 Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy Kumar, Ajay Chelvam, Venkatesh Sakkarapalayam, Mahalingam Li, Guo Sanchez-Cruz, Pedro Piñero, Natasha S. Low, Philip S. Alegria, Antonio E. Open J Med Chem Article Almost all cells are easily killed by exposure to potent oxidants. Indeed, major pathogen defense mechanisms in both animal and plant kingdoms involve production of an oxidative burst, where host defense cells show an invading pathogen with reactive oxygen species (ROS). Although cancer cells can be similarly killed by ROS, development of oxidant-producing chemotherapies has been limited by their inherent nonspecificity and potential toxicity to healthy cells. In this paper, we describe the targeting of an ROS-generating molecule selectively to tumor cells using folate as the tumor-targeting ligand. For this purpose, we exploit the ability of 9,10-phenanthraquinone (PHQ) to enhance the continuous generation of H(2)O(2) in the presence of ascorbic acid to establish a constitutive source of ROS within the tumor mass. We report here that incubation of folate receptor-expressing KB cells in culture with folate-PHQ plus ascorbate results in the death of the cancer cells with an IC(50) of ~10 nM (folate-PHQ). We also demonstrate that a cleavable spacer linking folate to PHQ is significantly inferior to a noncleavable spacer, in contrast to most other folate-targeted therapeutic agents. Unfortunately, no evidence for folate-PHQ mediated tumor regression in murine tumor models is obtained, suggesting that unanticipated impediments to generation of cytotoxic quantities of ROS in vivo are encountered. Possible mechanisms and potential solutions to these unanticipated results are offered. 2016-03-11 2016-03 /pmc/articles/PMC4825697/ /pubmed/27066312 http://dx.doi.org/10.4236/ojmc.2016.61001 Text en This work is licensed under the Creative Commons Attribution International License (CC BY). http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Kumar, Ajay
Chelvam, Venkatesh
Sakkarapalayam, Mahalingam
Li, Guo
Sanchez-Cruz, Pedro
Piñero, Natasha S.
Low, Philip S.
Alegria, Antonio E.
Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy
title Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy
title_full Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy
title_fullStr Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy
title_full_unstemmed Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy
title_short Synthesis and Evaluation of Folate-Conjugated Phenanthraquinones for Tumor-Targeted Oxidative Chemotherapy
title_sort synthesis and evaluation of folate-conjugated phenanthraquinones for tumor-targeted oxidative chemotherapy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4825697/
https://www.ncbi.nlm.nih.gov/pubmed/27066312
http://dx.doi.org/10.4236/ojmc.2016.61001
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