Cargando…

Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer

Nanotechnology-based drug delivery systems are an emerging technology for the targeted delivery of chemotherapeutic agents in cancer therapy with low/no toxicity to the non-cancer cells. With that view, the present work reports the synthesis, characterization, and testing of Mn:ZnS quantum dots (QDs...

Descripción completa

Detalles Bibliográficos
Autores principales: Manan, Fariza Aina Abd, Yusof, Nor Azah, Abdullah, Jaafar, Mohammad, Faruq, Nurdin, Armania, Yazan, Latifah Saiful, Khiste, Sachin K., Al-Lohedan, Hamad A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8469644/
https://www.ncbi.nlm.nih.gov/pubmed/34575455
http://dx.doi.org/10.3390/pharmaceutics13091379
_version_ 1784573987140927488
author Manan, Fariza Aina Abd
Yusof, Nor Azah
Abdullah, Jaafar
Mohammad, Faruq
Nurdin, Armania
Yazan, Latifah Saiful
Khiste, Sachin K.
Al-Lohedan, Hamad A.
author_facet Manan, Fariza Aina Abd
Yusof, Nor Azah
Abdullah, Jaafar
Mohammad, Faruq
Nurdin, Armania
Yazan, Latifah Saiful
Khiste, Sachin K.
Al-Lohedan, Hamad A.
author_sort Manan, Fariza Aina Abd
collection PubMed
description Nanotechnology-based drug delivery systems are an emerging technology for the targeted delivery of chemotherapeutic agents in cancer therapy with low/no toxicity to the non-cancer cells. With that view, the present work reports the synthesis, characterization, and testing of Mn:ZnS quantum dots (QDs) conjugated chitosan (CS)-based nanocarrier system encapsulated with Mitomycin C (MMC) drug. This fabricated nanocarrier, MMC@CS-Mn:ZnS, has been tested thoroughly for the drug loading capacity, drug encapsulation efficiency, and release properties at a fixed wavelength (358 nm) using a UV–Vis spectrophotometer. Followed by the physicochemical characterization, the cumulative drug release profiling data of MMC@CS-Mn:ZnS nanocarrier (at pH of 6.5, 6.8, 7.2, and 7.5) were investigated to have the highest release of 56.48% at pH 6.8, followed by 50.22%, 30.88%, and 10.75% at pH 7.2, 6.5, and 7.5, respectively. Additionally, the drug release studies were fitted to five different pharmacokinetic models including pesudo-first-order, pseudo-second-order, Higuchi, Hixson–Crowell, and Korsmeyers–Peppas models. From the analysis, the cumulative MMC release suits the Higuchi model well, revealing the diffusion-controlled mechanism involving the correlation of cumulative drug release proportional to the function square root of time at equilibrium, with the correlation coefficient values (R(2)) of 0.9849, 0.9604, 0.9783, and 0.7989 for drug release at pH 6.5, 6.8, 7.2, and 7.5, respectively. Based on the overall results analysis, the formulated nanocarrier system of MMC synergistically envisages the efficient delivery of chemotherapeutic agents to the target cancerous sites, able to sustain it for a longer time, etc. Consequently, the developed nanocarrier system has the capacity to improve the drug loading efficacy in combating the reoccurrence and progression of cancer in non-muscle invasive bladder diseases.
format Online
Article
Text
id pubmed-8469644
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-84696442021-09-27 Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer Manan, Fariza Aina Abd Yusof, Nor Azah Abdullah, Jaafar Mohammad, Faruq Nurdin, Armania Yazan, Latifah Saiful Khiste, Sachin K. Al-Lohedan, Hamad A. Pharmaceutics Article Nanotechnology-based drug delivery systems are an emerging technology for the targeted delivery of chemotherapeutic agents in cancer therapy with low/no toxicity to the non-cancer cells. With that view, the present work reports the synthesis, characterization, and testing of Mn:ZnS quantum dots (QDs) conjugated chitosan (CS)-based nanocarrier system encapsulated with Mitomycin C (MMC) drug. This fabricated nanocarrier, MMC@CS-Mn:ZnS, has been tested thoroughly for the drug loading capacity, drug encapsulation efficiency, and release properties at a fixed wavelength (358 nm) using a UV–Vis spectrophotometer. Followed by the physicochemical characterization, the cumulative drug release profiling data of MMC@CS-Mn:ZnS nanocarrier (at pH of 6.5, 6.8, 7.2, and 7.5) were investigated to have the highest release of 56.48% at pH 6.8, followed by 50.22%, 30.88%, and 10.75% at pH 7.2, 6.5, and 7.5, respectively. Additionally, the drug release studies were fitted to five different pharmacokinetic models including pesudo-first-order, pseudo-second-order, Higuchi, Hixson–Crowell, and Korsmeyers–Peppas models. From the analysis, the cumulative MMC release suits the Higuchi model well, revealing the diffusion-controlled mechanism involving the correlation of cumulative drug release proportional to the function square root of time at equilibrium, with the correlation coefficient values (R(2)) of 0.9849, 0.9604, 0.9783, and 0.7989 for drug release at pH 6.5, 6.8, 7.2, and 7.5, respectively. Based on the overall results analysis, the formulated nanocarrier system of MMC synergistically envisages the efficient delivery of chemotherapeutic agents to the target cancerous sites, able to sustain it for a longer time, etc. Consequently, the developed nanocarrier system has the capacity to improve the drug loading efficacy in combating the reoccurrence and progression of cancer in non-muscle invasive bladder diseases. MDPI 2021-08-31 /pmc/articles/PMC8469644/ /pubmed/34575455 http://dx.doi.org/10.3390/pharmaceutics13091379 Text en © 2021 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
Manan, Fariza Aina Abd
Yusof, Nor Azah
Abdullah, Jaafar
Mohammad, Faruq
Nurdin, Armania
Yazan, Latifah Saiful
Khiste, Sachin K.
Al-Lohedan, Hamad A.
Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer
title Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer
title_full Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer
title_fullStr Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer
title_full_unstemmed Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer
title_short Drug Release Profiles of Mitomycin C Encapsulated Quantum Dots–Chitosan Nanocarrier System for the Possible Treatment of Non-Muscle Invasive Bladder Cancer
title_sort drug release profiles of mitomycin c encapsulated quantum dots–chitosan nanocarrier system for the possible treatment of non-muscle invasive bladder cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8469644/
https://www.ncbi.nlm.nih.gov/pubmed/34575455
http://dx.doi.org/10.3390/pharmaceutics13091379
work_keys_str_mv AT mananfarizaainaabd drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer
AT yusofnorazah drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer
AT abdullahjaafar drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer
AT mohammadfaruq drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer
AT nurdinarmania drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer
AT yazanlatifahsaiful drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer
AT khistesachink drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer
AT allohedanhamada drugreleaseprofilesofmitomycincencapsulatedquantumdotschitosannanocarriersystemforthepossibletreatmentofnonmuscleinvasivebladdercancer