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From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells

The insurgence of drug resistance in treating Multiple Myeloma (MM) still represents a major hamper in finding effective treatments, although over the past decades new classes of drugs, such as proteasome inhibitors and immunomodulatory drugs, have been discovered. Recently, our research team, withi...

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Autores principales: Listro, Roberta, Malacrida, Alessio, Ambrosio, Francesca Alessandra, Rossino, Giacomo, Di Giacomo, Marcello, Cavalloro, Valeria, Garbagnoli, Martina, Linciano, Pasquale, Rossi, Daniela, Cavaletti, Guido, Costa, Giosuè, Alcaro, Stefano, Miloso, Mariarosaria, Collina, Simona
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658545/
https://www.ncbi.nlm.nih.gov/pubmed/36361848
http://dx.doi.org/10.3390/ijms232113061
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author Listro, Roberta
Malacrida, Alessio
Ambrosio, Francesca Alessandra
Rossino, Giacomo
Di Giacomo, Marcello
Cavalloro, Valeria
Garbagnoli, Martina
Linciano, Pasquale
Rossi, Daniela
Cavaletti, Guido
Costa, Giosuè
Alcaro, Stefano
Miloso, Mariarosaria
Collina, Simona
author_facet Listro, Roberta
Malacrida, Alessio
Ambrosio, Francesca Alessandra
Rossino, Giacomo
Di Giacomo, Marcello
Cavalloro, Valeria
Garbagnoli, Martina
Linciano, Pasquale
Rossi, Daniela
Cavaletti, Guido
Costa, Giosuè
Alcaro, Stefano
Miloso, Mariarosaria
Collina, Simona
author_sort Listro, Roberta
collection PubMed
description The insurgence of drug resistance in treating Multiple Myeloma (MM) still represents a major hamper in finding effective treatments, although over the past decades new classes of drugs, such as proteasome inhibitors and immunomodulatory drugs, have been discovered. Recently, our research team, within a Nature-Aided Drug Discovery project, isolated from Hibiscus Sabdariffa L. calyces the secondary metabolite called Hib-ester which possesses antiproliferative properties against human multiple myeloma RPMI 8226 cells, reduces migration and cell invasion and inhibits proteasome without neurotoxic effects. In the present study, we explored the chemical spaces of the hit compound Hib-ester. We explored the structure-activity relationships (SAR), and we optimized the scaffold through sequentially modifying Hib-ester subunits. Compound screening was performed based on cytotoxicity against the RPMI 8226 cells to assess the potential efficacy toward human MM. The ability of the most effective molecules to inhibit the proteasome was evaluated and the binding mode of the most promising compounds in the proteasome chymotrypsin binding pocket was deciphered through molecular modeling simulations. Compounds 13 and 14 are more potent than Hib-ester, demonstrating that our strategy was suitable for the identification of a novel chemotype for developing possible drug candidates and hopefully widening the drug armamentarium against MM.
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spelling pubmed-96585452022-11-15 From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells Listro, Roberta Malacrida, Alessio Ambrosio, Francesca Alessandra Rossino, Giacomo Di Giacomo, Marcello Cavalloro, Valeria Garbagnoli, Martina Linciano, Pasquale Rossi, Daniela Cavaletti, Guido Costa, Giosuè Alcaro, Stefano Miloso, Mariarosaria Collina, Simona Int J Mol Sci Article The insurgence of drug resistance in treating Multiple Myeloma (MM) still represents a major hamper in finding effective treatments, although over the past decades new classes of drugs, such as proteasome inhibitors and immunomodulatory drugs, have been discovered. Recently, our research team, within a Nature-Aided Drug Discovery project, isolated from Hibiscus Sabdariffa L. calyces the secondary metabolite called Hib-ester which possesses antiproliferative properties against human multiple myeloma RPMI 8226 cells, reduces migration and cell invasion and inhibits proteasome without neurotoxic effects. In the present study, we explored the chemical spaces of the hit compound Hib-ester. We explored the structure-activity relationships (SAR), and we optimized the scaffold through sequentially modifying Hib-ester subunits. Compound screening was performed based on cytotoxicity against the RPMI 8226 cells to assess the potential efficacy toward human MM. The ability of the most effective molecules to inhibit the proteasome was evaluated and the binding mode of the most promising compounds in the proteasome chymotrypsin binding pocket was deciphered through molecular modeling simulations. Compounds 13 and 14 are more potent than Hib-ester, demonstrating that our strategy was suitable for the identification of a novel chemotype for developing possible drug candidates and hopefully widening the drug armamentarium against MM. MDPI 2022-10-27 /pmc/articles/PMC9658545/ /pubmed/36361848 http://dx.doi.org/10.3390/ijms232113061 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
Listro, Roberta
Malacrida, Alessio
Ambrosio, Francesca Alessandra
Rossino, Giacomo
Di Giacomo, Marcello
Cavalloro, Valeria
Garbagnoli, Martina
Linciano, Pasquale
Rossi, Daniela
Cavaletti, Guido
Costa, Giosuè
Alcaro, Stefano
Miloso, Mariarosaria
Collina, Simona
From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells
title From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells
title_full From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells
title_fullStr From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells
title_full_unstemmed From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells
title_short From Nature to Synthetic Compounds: Novel 1(N),2,3 Trisubstituted-5-oxopyrrolidines Targeting Multiple Myeloma Cells
title_sort from nature to synthetic compounds: novel 1(n),2,3 trisubstituted-5-oxopyrrolidines targeting multiple myeloma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658545/
https://www.ncbi.nlm.nih.gov/pubmed/36361848
http://dx.doi.org/10.3390/ijms232113061
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