Cargando…

The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2

Target cancer drug therapy is an alternative treatment for advanced hepatocellular carcinoma (HCC) patients. However, the treatment using approved targeted drugs has encountered a number of limitations, including the poor pharmacological properties of drugs, therapy efficiency, adverse effects, and...

Descripción completa

Detalles Bibliográficos
Autores principales: Oekchuae, Sittisak, Sirirak, Jitnapa, Charoensuksai, Purin, Wongprayoon, Pawaris, Chuaypen, Natthaya, Boonsombat, Jutatip, Ruchirawat, Somsak, Tangkijvanich, Pisit, Suksamrarn, Apichart, Limpachayaporn, Panupun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9147274/
https://www.ncbi.nlm.nih.gov/pubmed/35631331
http://dx.doi.org/10.3390/ph15050504
_version_ 1784716767363334144
author Oekchuae, Sittisak
Sirirak, Jitnapa
Charoensuksai, Purin
Wongprayoon, Pawaris
Chuaypen, Natthaya
Boonsombat, Jutatip
Ruchirawat, Somsak
Tangkijvanich, Pisit
Suksamrarn, Apichart
Limpachayaporn, Panupun
author_facet Oekchuae, Sittisak
Sirirak, Jitnapa
Charoensuksai, Purin
Wongprayoon, Pawaris
Chuaypen, Natthaya
Boonsombat, Jutatip
Ruchirawat, Somsak
Tangkijvanich, Pisit
Suksamrarn, Apichart
Limpachayaporn, Panupun
author_sort Oekchuae, Sittisak
collection PubMed
description Target cancer drug therapy is an alternative treatment for advanced hepatocellular carcinoma (HCC) patients. However, the treatment using approved targeted drugs has encountered a number of limitations, including the poor pharmacological properties of drugs, therapy efficiency, adverse effects, and drug resistance. As a consequence, the discovery and development of anti-HCC drug structures are therefore still in high demand. Herein, we designed and synthesized a new series of 1,2,3-triazole-cored structures incorporating aryl urea as anti-HepG2 agents. Forty-nine analogs were prepared via nucleophilic addition and copper-catalyzed azide-alkyne cycloaddition (CuAAC) with excellent yields. Significantly, almost all triazole-cored analogs exhibited less cytotoxicity toward normal cells, human embryonal lung fibroblast cell MRC-5, compared to Sorafenib and Doxorubicin. Among them, 2m’ and 2e exhibited the highest selectivity indexes (SI = 14.7 and 12.2), which were ca. 4.4- and 3.7-fold superior to that of Sorafenib (SI = 3.30) and ca. 3.8- and 3.2-fold superior to that of Doxorubicin (SI = 3.83), respectively. Additionally, excellent inhibitory activity against hepatocellular carcinoma HepG2, comparable to Sorafenib, was still maintained. A cell-cycle analysis and apoptosis induction study suggested that 2m’ and 2e likely share a similar mechanism of action to Sorafenib. Furthermore, compounds 2m’ and 2e exhibit appropriate drug-likeness, analyzed by SwissADME. With their excellent anti-HepG2 activity, improved selectivity indexes, and appropriate druggability, the triazole-cored analogs 2m’ and 2e are suggested to be promising candidates for development as targeted cancer agents and drugs used in combination therapy for the treatment of HCC.
format Online
Article
Text
id pubmed-9147274
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91472742022-05-29 The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2 Oekchuae, Sittisak Sirirak, Jitnapa Charoensuksai, Purin Wongprayoon, Pawaris Chuaypen, Natthaya Boonsombat, Jutatip Ruchirawat, Somsak Tangkijvanich, Pisit Suksamrarn, Apichart Limpachayaporn, Panupun Pharmaceuticals (Basel) Article Target cancer drug therapy is an alternative treatment for advanced hepatocellular carcinoma (HCC) patients. However, the treatment using approved targeted drugs has encountered a number of limitations, including the poor pharmacological properties of drugs, therapy efficiency, adverse effects, and drug resistance. As a consequence, the discovery and development of anti-HCC drug structures are therefore still in high demand. Herein, we designed and synthesized a new series of 1,2,3-triazole-cored structures incorporating aryl urea as anti-HepG2 agents. Forty-nine analogs were prepared via nucleophilic addition and copper-catalyzed azide-alkyne cycloaddition (CuAAC) with excellent yields. Significantly, almost all triazole-cored analogs exhibited less cytotoxicity toward normal cells, human embryonal lung fibroblast cell MRC-5, compared to Sorafenib and Doxorubicin. Among them, 2m’ and 2e exhibited the highest selectivity indexes (SI = 14.7 and 12.2), which were ca. 4.4- and 3.7-fold superior to that of Sorafenib (SI = 3.30) and ca. 3.8- and 3.2-fold superior to that of Doxorubicin (SI = 3.83), respectively. Additionally, excellent inhibitory activity against hepatocellular carcinoma HepG2, comparable to Sorafenib, was still maintained. A cell-cycle analysis and apoptosis induction study suggested that 2m’ and 2e likely share a similar mechanism of action to Sorafenib. Furthermore, compounds 2m’ and 2e exhibit appropriate drug-likeness, analyzed by SwissADME. With their excellent anti-HepG2 activity, improved selectivity indexes, and appropriate druggability, the triazole-cored analogs 2m’ and 2e are suggested to be promising candidates for development as targeted cancer agents and drugs used in combination therapy for the treatment of HCC. MDPI 2022-04-20 /pmc/articles/PMC9147274/ /pubmed/35631331 http://dx.doi.org/10.3390/ph15050504 Text en © 2022 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
Oekchuae, Sittisak
Sirirak, Jitnapa
Charoensuksai, Purin
Wongprayoon, Pawaris
Chuaypen, Natthaya
Boonsombat, Jutatip
Ruchirawat, Somsak
Tangkijvanich, Pisit
Suksamrarn, Apichart
Limpachayaporn, Panupun
The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2
title The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2
title_full The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2
title_fullStr The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2
title_full_unstemmed The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2
title_short The Design and Synthesis of a New Series of 1,2,3-Triazole-Cored Structures Tethering Aryl Urea and Their Highly Selective Cytotoxicity toward HepG2
title_sort design and synthesis of a new series of 1,2,3-triazole-cored structures tethering aryl urea and their highly selective cytotoxicity toward hepg2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9147274/
https://www.ncbi.nlm.nih.gov/pubmed/35631331
http://dx.doi.org/10.3390/ph15050504
work_keys_str_mv AT oekchuaesittisak thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT sirirakjitnapa thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT charoensuksaipurin thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT wongprayoonpawaris thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT chuaypennatthaya thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT boonsombatjutatip thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT ruchirawatsomsak thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT tangkijvanichpisit thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT suksamrarnapichart thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT limpachayapornpanupun thedesignandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT oekchuaesittisak designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT sirirakjitnapa designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT charoensuksaipurin designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT wongprayoonpawaris designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT chuaypennatthaya designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT boonsombatjutatip designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT ruchirawatsomsak designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT tangkijvanichpisit designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT suksamrarnapichart designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2
AT limpachayapornpanupun designandsynthesisofanewseriesof123triazolecoredstructurestetheringarylureaandtheirhighlyselectivecytotoxicitytowardhepg2