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Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice

Previously, we synthesized curcumin and a succinate ester prodrug of curcumin namely curcumin diethyl disuccinate (CurDD) in the lab scale, which yielded hundred milligrams to few grams of the compounds. CurDD was found to be more stable in a phosphate buffer pH 7.4 and exhibited better cytotoxicity...

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Autores principales: Muangnoi, Chawanphat, Ratnatilaka Na Bhuket, Pahweenvaj, Jithavech, Ponsiree, Wichitnithad, Wisut, Srikun, Onsiri, Nerungsi, Chakkrapan, Patumraj, Suthiluk, Rojsitthisak, Pornchai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6723761/
https://www.ncbi.nlm.nih.gov/pubmed/31374932
http://dx.doi.org/10.3390/pharmaceutics11080373
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author Muangnoi, Chawanphat
Ratnatilaka Na Bhuket, Pahweenvaj
Jithavech, Ponsiree
Wichitnithad, Wisut
Srikun, Onsiri
Nerungsi, Chakkrapan
Patumraj, Suthiluk
Rojsitthisak, Pornchai
author_facet Muangnoi, Chawanphat
Ratnatilaka Na Bhuket, Pahweenvaj
Jithavech, Ponsiree
Wichitnithad, Wisut
Srikun, Onsiri
Nerungsi, Chakkrapan
Patumraj, Suthiluk
Rojsitthisak, Pornchai
author_sort Muangnoi, Chawanphat
collection PubMed
description Previously, we synthesized curcumin and a succinate ester prodrug of curcumin namely curcumin diethyl disuccinate (CurDD) in the lab scale, which yielded hundred milligrams to few grams of the compounds. CurDD was found to be more stable in a phosphate buffer pH 7.4 and exhibited better cytotoxicity against Caco-2 cells than curcumin. Here, the one-pot syntheses of curcumin and CurDD were scaled up to afford multigram quantities of both compounds for preclinical studies using a 10-L chemical reactor. The key steps for the synthesis of curcumin were the formation of boron-acetylacetone complex and the decomplexation of boron-curcumin complex. The synthesis of CurDD could be achieved via a one-step esterification between curcumin and succinic acid monoethyl ester chloride using 4-(N,N-dimethylamino)pyridine as a catalyst. The synthesized curcumin and CurDD were then investigated and compared for an anti-tumor activity in HepG2-xenograft mice. CurDD could reduce the tumor growth in HepG2-xenograft mice better than curcumin. CurDD also exerted the stronger inhibition on VEGF secretion, COX-2 and Bcl-2 expression and induced higher Bax expression in comparison with curcumin. The results suggest that CurDD is a promising prodrug of curcumin and has a potential to be further developed as a therapeutic agent or an adjuvant for the treatment of hepatocellular carcinoma.
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spelling pubmed-67237612019-09-10 Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice Muangnoi, Chawanphat Ratnatilaka Na Bhuket, Pahweenvaj Jithavech, Ponsiree Wichitnithad, Wisut Srikun, Onsiri Nerungsi, Chakkrapan Patumraj, Suthiluk Rojsitthisak, Pornchai Pharmaceutics Article Previously, we synthesized curcumin and a succinate ester prodrug of curcumin namely curcumin diethyl disuccinate (CurDD) in the lab scale, which yielded hundred milligrams to few grams of the compounds. CurDD was found to be more stable in a phosphate buffer pH 7.4 and exhibited better cytotoxicity against Caco-2 cells than curcumin. Here, the one-pot syntheses of curcumin and CurDD were scaled up to afford multigram quantities of both compounds for preclinical studies using a 10-L chemical reactor. The key steps for the synthesis of curcumin were the formation of boron-acetylacetone complex and the decomplexation of boron-curcumin complex. The synthesis of CurDD could be achieved via a one-step esterification between curcumin and succinic acid monoethyl ester chloride using 4-(N,N-dimethylamino)pyridine as a catalyst. The synthesized curcumin and CurDD were then investigated and compared for an anti-tumor activity in HepG2-xenograft mice. CurDD could reduce the tumor growth in HepG2-xenograft mice better than curcumin. CurDD also exerted the stronger inhibition on VEGF secretion, COX-2 and Bcl-2 expression and induced higher Bax expression in comparison with curcumin. The results suggest that CurDD is a promising prodrug of curcumin and has a potential to be further developed as a therapeutic agent or an adjuvant for the treatment of hepatocellular carcinoma. MDPI 2019-08-01 /pmc/articles/PMC6723761/ /pubmed/31374932 http://dx.doi.org/10.3390/pharmaceutics11080373 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Muangnoi, Chawanphat
Ratnatilaka Na Bhuket, Pahweenvaj
Jithavech, Ponsiree
Wichitnithad, Wisut
Srikun, Onsiri
Nerungsi, Chakkrapan
Patumraj, Suthiluk
Rojsitthisak, Pornchai
Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice
title Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice
title_full Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice
title_fullStr Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice
title_full_unstemmed Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice
title_short Scale-Up Synthesis and In Vivo Anti-Tumor Activity of Curcumin Diethyl Disuccinate, an Ester Prodrug of Curcumin, in HepG2-Xenograft Mice
title_sort scale-up synthesis and in vivo anti-tumor activity of curcumin diethyl disuccinate, an ester prodrug of curcumin, in hepg2-xenograft mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6723761/
https://www.ncbi.nlm.nih.gov/pubmed/31374932
http://dx.doi.org/10.3390/pharmaceutics11080373
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