Cargando…

Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells

The use of naturally occurring anticancer materials in combination with doped metal oxide has emerged as one of the most promising ways for improving anticancer treatment efficacy. In this study, the anticancer potential of curcumin-loaded Ag–TiO(2)-halloysite nanotubes (curcumin-loaded Ag–TiO(2)-HN...

Descripción completa

Detalles Bibliográficos
Autores principales: Nyankson, Emmanuel, Awuzah, Dominic, Tiburu, Elvis K., Efavi, Johnson K., Agyei-Tuffour, Benjamin, Paemka, Lily
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9672909/
https://www.ncbi.nlm.nih.gov/pubmed/36425174
http://dx.doi.org/10.1039/d2ra05777h
_version_ 1784832842310615040
author Nyankson, Emmanuel
Awuzah, Dominic
Tiburu, Elvis K.
Efavi, Johnson K.
Agyei-Tuffour, Benjamin
Paemka, Lily
author_facet Nyankson, Emmanuel
Awuzah, Dominic
Tiburu, Elvis K.
Efavi, Johnson K.
Agyei-Tuffour, Benjamin
Paemka, Lily
author_sort Nyankson, Emmanuel
collection PubMed
description The use of naturally occurring anticancer materials in combination with doped metal oxide has emerged as one of the most promising ways for improving anticancer treatment efficacy. In this study, the anticancer potential of curcumin-loaded Ag–TiO(2)-halloysite nanotubes (curcumin-loaded Ag–TiO(2)-HNTs) was examined. Ag–TiO(2)-HNTs with different wt% of Ag–TiO(2) were synthesized and characterized using XRD, TGA, FT-IR, UV-Vis spectroscopy, and SEM-EDX. The XRD results revealed the presence of crystalline TiO(2). However, the presence of Ag was detected through the SEM-EDX analysis. Cyclic voltammetry measurements suggested the enhancement of the release of ROS from TiO(2) upon deposition with Ag. FT-IR and TGA analysis confirmed the successful loading of curcumin inside the nanotubes of the halloysite. In vitro drug released studies revealed the release of approximately 80–99% curcumin within 48 hours. Kinetic model studies revealed that the release of curcumin from HNT and Ag–TiO(2)-HNT followed the first-order and Higuchi models, respectively. The light irradiated curcumin-loaded Ag–TiO(2)-HNTs samples exhibited considerable anticancer potential as compared to the free curcumin, irradiated Ag–TiO(2) NPs samples, and unirradiated curcumin loaded Ag–TiO(2)-HNTs samples. The obtained results revealed that combined chemo- and photodynamic therapy using curcumin-loaded Ag–TiO(2)-HNTs nanomaterial has the potential as an effective anticancer treatment method.
format Online
Article
Text
id pubmed-9672909
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-96729092022-11-23 Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells Nyankson, Emmanuel Awuzah, Dominic Tiburu, Elvis K. Efavi, Johnson K. Agyei-Tuffour, Benjamin Paemka, Lily RSC Adv Chemistry The use of naturally occurring anticancer materials in combination with doped metal oxide has emerged as one of the most promising ways for improving anticancer treatment efficacy. In this study, the anticancer potential of curcumin-loaded Ag–TiO(2)-halloysite nanotubes (curcumin-loaded Ag–TiO(2)-HNTs) was examined. Ag–TiO(2)-HNTs with different wt% of Ag–TiO(2) were synthesized and characterized using XRD, TGA, FT-IR, UV-Vis spectroscopy, and SEM-EDX. The XRD results revealed the presence of crystalline TiO(2). However, the presence of Ag was detected through the SEM-EDX analysis. Cyclic voltammetry measurements suggested the enhancement of the release of ROS from TiO(2) upon deposition with Ag. FT-IR and TGA analysis confirmed the successful loading of curcumin inside the nanotubes of the halloysite. In vitro drug released studies revealed the release of approximately 80–99% curcumin within 48 hours. Kinetic model studies revealed that the release of curcumin from HNT and Ag–TiO(2)-HNT followed the first-order and Higuchi models, respectively. The light irradiated curcumin-loaded Ag–TiO(2)-HNTs samples exhibited considerable anticancer potential as compared to the free curcumin, irradiated Ag–TiO(2) NPs samples, and unirradiated curcumin loaded Ag–TiO(2)-HNTs samples. The obtained results revealed that combined chemo- and photodynamic therapy using curcumin-loaded Ag–TiO(2)-HNTs nanomaterial has the potential as an effective anticancer treatment method. The Royal Society of Chemistry 2022-11-18 /pmc/articles/PMC9672909/ /pubmed/36425174 http://dx.doi.org/10.1039/d2ra05777h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Nyankson, Emmanuel
Awuzah, Dominic
Tiburu, Elvis K.
Efavi, Johnson K.
Agyei-Tuffour, Benjamin
Paemka, Lily
Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells
title Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells
title_full Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells
title_fullStr Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells
title_full_unstemmed Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells
title_short Curcumin loaded Ag–TiO(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells
title_sort curcumin loaded ag–tio(2)-halloysite nanotubes platform for combined chemo-photodynamic therapy treatment of cancer cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9672909/
https://www.ncbi.nlm.nih.gov/pubmed/36425174
http://dx.doi.org/10.1039/d2ra05777h
work_keys_str_mv AT nyanksonemmanuel curcuminloadedagtio2halloysitenanotubesplatformforcombinedchemophotodynamictherapytreatmentofcancercells
AT awuzahdominic curcuminloadedagtio2halloysitenanotubesplatformforcombinedchemophotodynamictherapytreatmentofcancercells
AT tiburuelvisk curcuminloadedagtio2halloysitenanotubesplatformforcombinedchemophotodynamictherapytreatmentofcancercells
AT efavijohnsonk curcuminloadedagtio2halloysitenanotubesplatformforcombinedchemophotodynamictherapytreatmentofcancercells
AT agyeituffourbenjamin curcuminloadedagtio2halloysitenanotubesplatformforcombinedchemophotodynamictherapytreatmentofcancercells
AT paemkalily curcuminloadedagtio2halloysitenanotubesplatformforcombinedchemophotodynamictherapytreatmentofcancercells