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Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation

The tumor resistance to p53 activators posed a clinical challenge. Combination studies disclosed that concomitant administration of Bcl2 inhibitors can sensitize the tumor cells and induce apoptosis. In this study, we utilized a rapid synthetic route to synthesize two novel hybrid spirooxindole-base...

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Autores principales: Aziz, Yasmine M. Abdel, Lotfy, Gehad, Said, Mohamed M., El Ashry, El Sayed H., El Tamany, El Sayed H., Soliman, Saied M., Abu-Serie, Marwa M., Teleb, Mohamed, Yousuf, Sammer, Dömling, Alexander, Domingo, Luis R., Barakat, Assem
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8713455/
https://www.ncbi.nlm.nih.gov/pubmed/34970530
http://dx.doi.org/10.3389/fchem.2021.735236
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author Aziz, Yasmine M. Abdel
Lotfy, Gehad
Said, Mohamed M.
El Ashry, El Sayed H.
El Tamany, El Sayed H.
Soliman, Saied M.
Abu-Serie, Marwa M.
Teleb, Mohamed
Yousuf, Sammer
Dömling, Alexander
Domingo, Luis R.
Barakat, Assem
author_facet Aziz, Yasmine M. Abdel
Lotfy, Gehad
Said, Mohamed M.
El Ashry, El Sayed H.
El Tamany, El Sayed H.
Soliman, Saied M.
Abu-Serie, Marwa M.
Teleb, Mohamed
Yousuf, Sammer
Dömling, Alexander
Domingo, Luis R.
Barakat, Assem
author_sort Aziz, Yasmine M. Abdel
collection PubMed
description The tumor resistance to p53 activators posed a clinical challenge. Combination studies disclosed that concomitant administration of Bcl2 inhibitors can sensitize the tumor cells and induce apoptosis. In this study, we utilized a rapid synthetic route to synthesize two novel hybrid spirooxindole-based p53-MDM2 inhibitors endowed with Bcl2 signaling attenuation. The adducts mimic the thematic features of the chemically stable potent spiro [3H-indole-3,2′-pyrrolidin]-2(1H)-ones p53-MDM2 inhibitors, while installing a pyrrole ring via a carbonyl spacer inspired by the natural marine or synthetic products that efficiently inhibit Bcl2 family functions. A chemical insight into the two synthesized spirooxindoles including single crystal x-ray diffraction analysis unambiguously confirmed their structures. The synthesized spirooxindoles 2a and 2b were preliminarily tested for cytotoxic activities against normal cells, MDA-MB 231, HepG-2, and Caco-2 via MTT assay. 2b was superior to 5-fluorouracil. Mechanistically, 2b induced apoptosis-dependent anticancer effect (43%) higher than that of 5-fluorouracil (34.95%) in three studied cancer cell lines, activated p53 (47%), downregulated the Bcl2 gene (1.25-fold), and upregulated p21 (2-fold) in the treated cancer cells. Docking simulations declared the possible binding modes of the synthesized compounds within MDM2.
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spelling pubmed-87134552021-12-29 Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation Aziz, Yasmine M. Abdel Lotfy, Gehad Said, Mohamed M. El Ashry, El Sayed H. El Tamany, El Sayed H. Soliman, Saied M. Abu-Serie, Marwa M. Teleb, Mohamed Yousuf, Sammer Dömling, Alexander Domingo, Luis R. Barakat, Assem Front Chem Chemistry The tumor resistance to p53 activators posed a clinical challenge. Combination studies disclosed that concomitant administration of Bcl2 inhibitors can sensitize the tumor cells and induce apoptosis. In this study, we utilized a rapid synthetic route to synthesize two novel hybrid spirooxindole-based p53-MDM2 inhibitors endowed with Bcl2 signaling attenuation. The adducts mimic the thematic features of the chemically stable potent spiro [3H-indole-3,2′-pyrrolidin]-2(1H)-ones p53-MDM2 inhibitors, while installing a pyrrole ring via a carbonyl spacer inspired by the natural marine or synthetic products that efficiently inhibit Bcl2 family functions. A chemical insight into the two synthesized spirooxindoles including single crystal x-ray diffraction analysis unambiguously confirmed their structures. The synthesized spirooxindoles 2a and 2b were preliminarily tested for cytotoxic activities against normal cells, MDA-MB 231, HepG-2, and Caco-2 via MTT assay. 2b was superior to 5-fluorouracil. Mechanistically, 2b induced apoptosis-dependent anticancer effect (43%) higher than that of 5-fluorouracil (34.95%) in three studied cancer cell lines, activated p53 (47%), downregulated the Bcl2 gene (1.25-fold), and upregulated p21 (2-fold) in the treated cancer cells. Docking simulations declared the possible binding modes of the synthesized compounds within MDM2. Frontiers Media S.A. 2021-12-14 /pmc/articles/PMC8713455/ /pubmed/34970530 http://dx.doi.org/10.3389/fchem.2021.735236 Text en Copyright © 2021 Aziz, Lotfy, Said, El Ashry, El Tamany, Soliman, Abu-Serie, Teleb, Yousuf, Dömling, Domingo and Barakat. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Aziz, Yasmine M. Abdel
Lotfy, Gehad
Said, Mohamed M.
El Ashry, El Sayed H.
El Tamany, El Sayed H.
Soliman, Saied M.
Abu-Serie, Marwa M.
Teleb, Mohamed
Yousuf, Sammer
Dömling, Alexander
Domingo, Luis R.
Barakat, Assem
Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation
title Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation
title_full Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation
title_fullStr Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation
title_full_unstemmed Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation
title_short Design, Synthesis, Chemical and Biochemical Insights Into Novel Hybrid Spirooxindole-Based p53-MDM2 Inhibitors With Potential Bcl2 Signaling Attenuation
title_sort design, synthesis, chemical and biochemical insights into novel hybrid spirooxindole-based p53-mdm2 inhibitors with potential bcl2 signaling attenuation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8713455/
https://www.ncbi.nlm.nih.gov/pubmed/34970530
http://dx.doi.org/10.3389/fchem.2021.735236
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