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Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids

Chenodeoxycholic acid and ursodeoxycholic acid (CDCA and UDCA, respectively) have been conjugated with paclitaxel (PTX) anticancer drugs through a high-yield condensation reaction. Bile acid-PTX hybrids (BA-PTX) have been investigated for their pro-apoptotic activity towards a selection of cancer ce...

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Autores principales: Melloni, Elisabetta, Marchesi, Elena, Preti, Lorenzo, Casciano, Fabio, Rimondi, Erika, Romani, Arianna, Secchiero, Paola, Navacchia, Maria Luisa, Perrone, Daniela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8779069/
https://www.ncbi.nlm.nih.gov/pubmed/35056786
http://dx.doi.org/10.3390/molecules27020471
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author Melloni, Elisabetta
Marchesi, Elena
Preti, Lorenzo
Casciano, Fabio
Rimondi, Erika
Romani, Arianna
Secchiero, Paola
Navacchia, Maria Luisa
Perrone, Daniela
author_facet Melloni, Elisabetta
Marchesi, Elena
Preti, Lorenzo
Casciano, Fabio
Rimondi, Erika
Romani, Arianna
Secchiero, Paola
Navacchia, Maria Luisa
Perrone, Daniela
author_sort Melloni, Elisabetta
collection PubMed
description Chenodeoxycholic acid and ursodeoxycholic acid (CDCA and UDCA, respectively) have been conjugated with paclitaxel (PTX) anticancer drugs through a high-yield condensation reaction. Bile acid-PTX hybrids (BA-PTX) have been investigated for their pro-apoptotic activity towards a selection of cancer cell lines as well as healthy fibroblast cells. Chenodeoxycholic-PTX hybrid (CDC-PTX) displayed cytotoxicity and cytoselectivity similar to PTX, whereas ursodeoxycholic-PTX hybrid (UDC-PTX) displayed some anticancer activity only towards HCT116 colon carcinoma cells. Pacific Blue (PB) conjugated derivatives of CDC-PTX and UDC-PTX (CDC-PTX-PB and UDC-PTX-PB, respectively) were also prepared via a multistep synthesis for evaluating their ability to enter tumor cells. CDC-PTX-PB and UDC-PTX-PB flow cytometry clearly showed that both CDCA and UDCA conjugation to PTX improved its incoming into HCT116 cells, allowing the derivatives to enter the cells up to 99.9%, respect to 35% in the case of PTX. Mean fluorescence intensity analysis of cell populations treated with CDC-PTX-PB and UDC-PTX-PB also suggested that CDC-PTX-PB could have a greater ability to pass the plasmatic membrane than UDC-PTX-PB. Both hybrids showed significant lower toxicity with respect to PTX on the NIH-3T3 cell line.
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spelling pubmed-87790692022-01-22 Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids Melloni, Elisabetta Marchesi, Elena Preti, Lorenzo Casciano, Fabio Rimondi, Erika Romani, Arianna Secchiero, Paola Navacchia, Maria Luisa Perrone, Daniela Molecules Article Chenodeoxycholic acid and ursodeoxycholic acid (CDCA and UDCA, respectively) have been conjugated with paclitaxel (PTX) anticancer drugs through a high-yield condensation reaction. Bile acid-PTX hybrids (BA-PTX) have been investigated for their pro-apoptotic activity towards a selection of cancer cell lines as well as healthy fibroblast cells. Chenodeoxycholic-PTX hybrid (CDC-PTX) displayed cytotoxicity and cytoselectivity similar to PTX, whereas ursodeoxycholic-PTX hybrid (UDC-PTX) displayed some anticancer activity only towards HCT116 colon carcinoma cells. Pacific Blue (PB) conjugated derivatives of CDC-PTX and UDC-PTX (CDC-PTX-PB and UDC-PTX-PB, respectively) were also prepared via a multistep synthesis for evaluating their ability to enter tumor cells. CDC-PTX-PB and UDC-PTX-PB flow cytometry clearly showed that both CDCA and UDCA conjugation to PTX improved its incoming into HCT116 cells, allowing the derivatives to enter the cells up to 99.9%, respect to 35% in the case of PTX. Mean fluorescence intensity analysis of cell populations treated with CDC-PTX-PB and UDC-PTX-PB also suggested that CDC-PTX-PB could have a greater ability to pass the plasmatic membrane than UDC-PTX-PB. Both hybrids showed significant lower toxicity with respect to PTX on the NIH-3T3 cell line. MDPI 2022-01-12 /pmc/articles/PMC8779069/ /pubmed/35056786 http://dx.doi.org/10.3390/molecules27020471 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
Melloni, Elisabetta
Marchesi, Elena
Preti, Lorenzo
Casciano, Fabio
Rimondi, Erika
Romani, Arianna
Secchiero, Paola
Navacchia, Maria Luisa
Perrone, Daniela
Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids
title Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids
title_full Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids
title_fullStr Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids
title_full_unstemmed Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids
title_short Synthesis and Biological Investigation of Bile Acid-Paclitaxel Hybrids
title_sort synthesis and biological investigation of bile acid-paclitaxel hybrids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8779069/
https://www.ncbi.nlm.nih.gov/pubmed/35056786
http://dx.doi.org/10.3390/molecules27020471
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