Cargando…

Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells

Multiple chemodrugs with nanotechnology have proven to be an effective cancer treatment technique. When taken combined, cabazitaxel (CTX) and cisplatin (PT) have more excellent cytotoxic effects than drugs used alone in the chemotherapy of several different cancers. However, several severe side effe...

Descripción completa

Detalles Bibliográficos
Autores principales: Shakila, P. Baby, Hirad, Abdurahman Hajinur, Alarfaj, Abdullah A., Hussein-Al-Ali, Samer Hasan, Mulugeta, Beza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10620031/
https://www.ncbi.nlm.nih.gov/pubmed/37920234
http://dx.doi.org/10.1155/2023/8892099
_version_ 1785130120237809664
author Shakila, P. Baby
Hirad, Abdurahman Hajinur
Alarfaj, Abdullah A.
Hussein-Al-Ali, Samer Hasan
Mulugeta, Beza
author_facet Shakila, P. Baby
Hirad, Abdurahman Hajinur
Alarfaj, Abdullah A.
Hussein-Al-Ali, Samer Hasan
Mulugeta, Beza
author_sort Shakila, P. Baby
collection PubMed
description Multiple chemodrugs with nanotechnology have proven to be an effective cancer treatment technique. When taken combined, cabazitaxel (CTX) and cisplatin (PT) have more excellent cytotoxic effects than drugs used alone in the chemotherapy of several different cancers. However, several severe side effects are associated with using these chemotherapy drugs in cancer patients. Gold nanomaterials (AuNMs) are promising as drug carriers because of their small diameter, easy surface modifications, good biocompatibility, and strong cell penetration. This work aimed to determine the CTX and PT encapsulated with AuNMs against human glioma U87 cancer cells. The fabrication of the AuNMs achieved a negative surface charge, polydispersity index, and the mean sizes. The combined cytotoxic effect of CTX and PT bound to AuNMs was greater than that of either drug alone when tested on U87 cells. The half inhibitory concentration (IC(50)) values for free PT were 54.7 μg/mL (at 24 h) and 4.8 g μg/mL (at 72 h). Results acquired from the MTT assay show cell growth decreases time- and concentration-dependent AuNMs, free CTX, free PT, and AuNMs@CTX/PT-induced cytotoxicity and, ultimately, the cell death of U87 cells via apoptosis. The biochemical apoptosis staining techniques investigated the cells' morphological changes of the cells (acridine orange and ethidium bromide (AO-EB) and nuclear staining (DAPI) techniques). The AO-EB and nuclear staining results reveal that the NPs effectively killed cancer cells. Furthermore, the flow cytometry analysis examined the mode of cell death. Therefore, AuNMs@CTX/PT has excellent potential in the cancer therapy of different cancer cells.
format Online
Article
Text
id pubmed-10620031
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-106200312023-11-02 Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells Shakila, P. Baby Hirad, Abdurahman Hajinur Alarfaj, Abdullah A. Hussein-Al-Ali, Samer Hasan Mulugeta, Beza Bioinorg Chem Appl Research Article Multiple chemodrugs with nanotechnology have proven to be an effective cancer treatment technique. When taken combined, cabazitaxel (CTX) and cisplatin (PT) have more excellent cytotoxic effects than drugs used alone in the chemotherapy of several different cancers. However, several severe side effects are associated with using these chemotherapy drugs in cancer patients. Gold nanomaterials (AuNMs) are promising as drug carriers because of their small diameter, easy surface modifications, good biocompatibility, and strong cell penetration. This work aimed to determine the CTX and PT encapsulated with AuNMs against human glioma U87 cancer cells. The fabrication of the AuNMs achieved a negative surface charge, polydispersity index, and the mean sizes. The combined cytotoxic effect of CTX and PT bound to AuNMs was greater than that of either drug alone when tested on U87 cells. The half inhibitory concentration (IC(50)) values for free PT were 54.7 μg/mL (at 24 h) and 4.8 g μg/mL (at 72 h). Results acquired from the MTT assay show cell growth decreases time- and concentration-dependent AuNMs, free CTX, free PT, and AuNMs@CTX/PT-induced cytotoxicity and, ultimately, the cell death of U87 cells via apoptosis. The biochemical apoptosis staining techniques investigated the cells' morphological changes of the cells (acridine orange and ethidium bromide (AO-EB) and nuclear staining (DAPI) techniques). The AO-EB and nuclear staining results reveal that the NPs effectively killed cancer cells. Furthermore, the flow cytometry analysis examined the mode of cell death. Therefore, AuNMs@CTX/PT has excellent potential in the cancer therapy of different cancer cells. Hindawi 2023-10-25 /pmc/articles/PMC10620031/ /pubmed/37920234 http://dx.doi.org/10.1155/2023/8892099 Text en Copyright © 2023 P. Baby Shakila et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Shakila, P. Baby
Hirad, Abdurahman Hajinur
Alarfaj, Abdullah A.
Hussein-Al-Ali, Samer Hasan
Mulugeta, Beza
Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells
title Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells
title_full Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells
title_fullStr Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells
title_full_unstemmed Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells
title_short Precise Construction of Dual-Promising Anticancer Drugs Associated with Gold Nanomaterials on Glioma Cancer Cells
title_sort precise construction of dual-promising anticancer drugs associated with gold nanomaterials on glioma cancer cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10620031/
https://www.ncbi.nlm.nih.gov/pubmed/37920234
http://dx.doi.org/10.1155/2023/8892099
work_keys_str_mv AT shakilapbaby preciseconstructionofdualpromisinganticancerdrugsassociatedwithgoldnanomaterialsongliomacancercells
AT hiradabdurahmanhajinur preciseconstructionofdualpromisinganticancerdrugsassociatedwithgoldnanomaterialsongliomacancercells
AT alarfajabdullaha preciseconstructionofdualpromisinganticancerdrugsassociatedwithgoldnanomaterialsongliomacancercells
AT husseinalalisamerhasan preciseconstructionofdualpromisinganticancerdrugsassociatedwithgoldnanomaterialsongliomacancercells
AT mulugetabeza preciseconstructionofdualpromisinganticancerdrugsassociatedwithgoldnanomaterialsongliomacancercells