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Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds

The naturally occurring neocryptolepine (5-Methylindolo [2,3-b]quinoline) and its analogs exhibited prominent anticancer and antimalarial activity. However, the main problem of this class of compounds is their poor aqueous solubility, hampering their bioavailability and preventing their clinical dev...

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Autores principales: El Sayed, Ibrahim El-Tantawy, Ullah, Sami, Al-Hartomy, Omar A., Hasanein, Asmaa Mohammed, Ahmed, Abdullah A. S., Kahilo, Khaled A., El-Naggar, Mehrez E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839462/
https://www.ncbi.nlm.nih.gov/pubmed/35164289
http://dx.doi.org/10.3390/molecules27031024
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author El Sayed, Ibrahim El-Tantawy
Ullah, Sami
Al-Hartomy, Omar A.
Hasanein, Asmaa Mohammed
Ahmed, Abdullah A. S.
Kahilo, Khaled A.
El-Naggar, Mehrez E.
author_facet El Sayed, Ibrahim El-Tantawy
Ullah, Sami
Al-Hartomy, Omar A.
Hasanein, Asmaa Mohammed
Ahmed, Abdullah A. S.
Kahilo, Khaled A.
El-Naggar, Mehrez E.
author_sort El Sayed, Ibrahim El-Tantawy
collection PubMed
description The naturally occurring neocryptolepine (5-Methylindolo [2,3-b]quinoline) and its analogs exhibited prominent anticancer and antimalarial activity. However, the main problem of this class of compounds is their poor aqueous solubility, hampering their bioavailability and preventing their clinical development. To overcome the problem of insolubility and to improve the physicochemical and the pharmacological properties of 5-Methylindolo [2,3-b]quinoline compounds, this work was designed to encapsulate such efficient medical compounds into mesoporous silica oxide nanoemulsion (SiO(2)NPs). Thus, in this study, SiO(2)NPs was loaded with three different concentrations (0.2 g, 0.3, and 0.6 g) of 7b (denoted as NPA). The findings illustrated that the nanoparticles were formed with a spherical shape and exhibited small size (less than 500 nm) using a high concentration of the synthesized chemical compound (NPA, 0.6 g) and good stabilization against agglomeration (more than −30 mv). In addition, NPA-loaded SiO(2)NPs had no phase separation as observed by our naked eyes even after 30 days. The findings also revealed that the fabricated SiO(2)NPs could sustain the release of NPA at two different pH levels, 4.5 and 7.4. Additionally, the cell viability of the produced nanoemulsion system loaded with different concentrations of NPA was greater than SiO(2)NPs without loading, affirming that NPA had a positive impact on increasing the safety and cell viability of the whole nanoemulsion. Based on these obtained promising data, it can be considered that the prepared NPA-loaded SiO(2)NPs seem to have the potential for use as an effective anticancer drug nanosystem.
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spelling pubmed-88394622022-02-13 Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds El Sayed, Ibrahim El-Tantawy Ullah, Sami Al-Hartomy, Omar A. Hasanein, Asmaa Mohammed Ahmed, Abdullah A. S. Kahilo, Khaled A. El-Naggar, Mehrez E. Molecules Article The naturally occurring neocryptolepine (5-Methylindolo [2,3-b]quinoline) and its analogs exhibited prominent anticancer and antimalarial activity. However, the main problem of this class of compounds is their poor aqueous solubility, hampering their bioavailability and preventing their clinical development. To overcome the problem of insolubility and to improve the physicochemical and the pharmacological properties of 5-Methylindolo [2,3-b]quinoline compounds, this work was designed to encapsulate such efficient medical compounds into mesoporous silica oxide nanoemulsion (SiO(2)NPs). Thus, in this study, SiO(2)NPs was loaded with three different concentrations (0.2 g, 0.3, and 0.6 g) of 7b (denoted as NPA). The findings illustrated that the nanoparticles were formed with a spherical shape and exhibited small size (less than 500 nm) using a high concentration of the synthesized chemical compound (NPA, 0.6 g) and good stabilization against agglomeration (more than −30 mv). In addition, NPA-loaded SiO(2)NPs had no phase separation as observed by our naked eyes even after 30 days. The findings also revealed that the fabricated SiO(2)NPs could sustain the release of NPA at two different pH levels, 4.5 and 7.4. Additionally, the cell viability of the produced nanoemulsion system loaded with different concentrations of NPA was greater than SiO(2)NPs without loading, affirming that NPA had a positive impact on increasing the safety and cell viability of the whole nanoemulsion. Based on these obtained promising data, it can be considered that the prepared NPA-loaded SiO(2)NPs seem to have the potential for use as an effective anticancer drug nanosystem. MDPI 2022-02-02 /pmc/articles/PMC8839462/ /pubmed/35164289 http://dx.doi.org/10.3390/molecules27031024 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
El Sayed, Ibrahim El-Tantawy
Ullah, Sami
Al-Hartomy, Omar A.
Hasanein, Asmaa Mohammed
Ahmed, Abdullah A. S.
Kahilo, Khaled A.
El-Naggar, Mehrez E.
Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds
title Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds
title_full Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds
title_fullStr Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds
title_full_unstemmed Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds
title_short Synthesis, Nanoformulations, and In Vitro Anticancer Activity of N-Substituted Side Chain Neocryptolepine Scaffolds
title_sort synthesis, nanoformulations, and in vitro anticancer activity of n-substituted side chain neocryptolepine scaffolds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839462/
https://www.ncbi.nlm.nih.gov/pubmed/35164289
http://dx.doi.org/10.3390/molecules27031024
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