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Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity

α-Mangostin (aMan) and Paeonol (Pae) have shown anticancer and anti-inflammatory properties. However, these two natural compounds have no clinical value because of their low solubility and low membrane permeability. In this study, we screened chemically synthesized derivatives from these two natural...

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Autores principales: Nunna, Suneetha, Huang, Ying-Pei, Rasa, Mahdi, Krepelova, Anna, Annunziata, Francesco, Adam, Lisa, Käppel, Sandra, Hsu, Ming-Hua, Neri, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398122/
https://www.ncbi.nlm.nih.gov/pubmed/34789561
http://dx.doi.org/10.1158/1535-7163.MCT-20-0787
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author Nunna, Suneetha
Huang, Ying-Pei
Rasa, Mahdi
Krepelova, Anna
Annunziata, Francesco
Adam, Lisa
Käppel, Sandra
Hsu, Ming-Hua
Neri, Francesco
author_facet Nunna, Suneetha
Huang, Ying-Pei
Rasa, Mahdi
Krepelova, Anna
Annunziata, Francesco
Adam, Lisa
Käppel, Sandra
Hsu, Ming-Hua
Neri, Francesco
author_sort Nunna, Suneetha
collection PubMed
description α-Mangostin (aMan) and Paeonol (Pae) have shown anticancer and anti-inflammatory properties. However, these two natural compounds have no clinical value because of their low solubility and low membrane permeability. In this study, we screened chemically synthesized derivatives from these two natural compounds as potential novel chemicals that increase cancer cell cytotoxicity over nontransformed human cells. We found that two derivative compounds, named α-Mangostin-1 (aMan1) and Paeonol-1 (Pae1) more efficiently and more specifically induced cytotoxicity in HCT116, HT29, and SW48 colorectal cancer cell lines than the parental compounds. Both aMan1 and Pae1 arrested HCT116 cells in the G(1) phase and HT29 and SW48 cells in the G(2)–M phase of the cell cycle. Both aMan1 and Pae1 induced apoptosis in human colorectal cancer cells, through a caspase-dependent mechanism. aMan1 and Pae1 induced selective transcriptional responses in colorectal cancer cells involving genes related to metabolic stress and DNA damage response signaling pathways. Finally, experiments on primary colon organoids showed that both derivatives were able to kill cancer-derived organoids without affecting the viability of organoids derived from healthy tissue, where the parental compounds and the currently used chemotherapeutic drug irinotecan failed. In conclusion, our findings expand the knowledge of natural compound derivatives as anticancer agents and open new avenues of research in the derivation of lead compounds aimed at developing novel chemotherapeutic drugs for colorectal cancer treatment that selectively target cancer, but not healthy cells.
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spelling pubmed-93981222023-01-05 Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity Nunna, Suneetha Huang, Ying-Pei Rasa, Mahdi Krepelova, Anna Annunziata, Francesco Adam, Lisa Käppel, Sandra Hsu, Ming-Hua Neri, Francesco Mol Cancer Ther Small Molecule Therapeutics α-Mangostin (aMan) and Paeonol (Pae) have shown anticancer and anti-inflammatory properties. However, these two natural compounds have no clinical value because of their low solubility and low membrane permeability. In this study, we screened chemically synthesized derivatives from these two natural compounds as potential novel chemicals that increase cancer cell cytotoxicity over nontransformed human cells. We found that two derivative compounds, named α-Mangostin-1 (aMan1) and Paeonol-1 (Pae1) more efficiently and more specifically induced cytotoxicity in HCT116, HT29, and SW48 colorectal cancer cell lines than the parental compounds. Both aMan1 and Pae1 arrested HCT116 cells in the G(1) phase and HT29 and SW48 cells in the G(2)–M phase of the cell cycle. Both aMan1 and Pae1 induced apoptosis in human colorectal cancer cells, through a caspase-dependent mechanism. aMan1 and Pae1 induced selective transcriptional responses in colorectal cancer cells involving genes related to metabolic stress and DNA damage response signaling pathways. Finally, experiments on primary colon organoids showed that both derivatives were able to kill cancer-derived organoids without affecting the viability of organoids derived from healthy tissue, where the parental compounds and the currently used chemotherapeutic drug irinotecan failed. In conclusion, our findings expand the knowledge of natural compound derivatives as anticancer agents and open new avenues of research in the derivation of lead compounds aimed at developing novel chemotherapeutic drugs for colorectal cancer treatment that selectively target cancer, but not healthy cells. American Association for Cancer Research 2022-02-01 2021-11-17 /pmc/articles/PMC9398122/ /pubmed/34789561 http://dx.doi.org/10.1158/1535-7163.MCT-20-0787 Text en ©2021 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Small Molecule Therapeutics
Nunna, Suneetha
Huang, Ying-Pei
Rasa, Mahdi
Krepelova, Anna
Annunziata, Francesco
Adam, Lisa
Käppel, Sandra
Hsu, Ming-Hua
Neri, Francesco
Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity
title Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity
title_full Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity
title_fullStr Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity
title_full_unstemmed Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity
title_short Characterization of Novel α-Mangostin and Paeonol Derivatives With Cancer-Selective Cytotoxicity
title_sort characterization of novel α-mangostin and paeonol derivatives with cancer-selective cytotoxicity
topic Small Molecule Therapeutics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398122/
https://www.ncbi.nlm.nih.gov/pubmed/34789561
http://dx.doi.org/10.1158/1535-7163.MCT-20-0787
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