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    Formation of biocompatible MgO/cellulose grafted hydrogel for efficient bactericidal and controlled release of doxorubicin

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    2022 with Islam Biological macromolecules.pdf (4.281Mb)
    Date
    2022-11
    Author
    Shahzadi, Iram
    Islam, Muhammad
    Saeed, Hamid
    Haider, Ali
    Shahzadi, Anum
    Haider, Junaid
    Ahmed, Nadeem
    Ul-Hamid, Anwar
    Nabgan, Walid
    Ikram, Muhammad
    Rathore, Hassaan Anwer
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    Abstract
    In this study, MgO-doped CNC-g-PAA hydrogel was synthesized by grafting poly (acrylic acid) (PAA) onto cellulose nanocrystals (CNC) and then doped Magnesium oxide (MgO) using pH 7.0 and 12.0 to obtain an efficient nanocomposite hydrogel for antibacterial and anti-cancer activities. The synthesized nanocomposite hydrogels were evaluated by detailed characterization and confirmed the formation of a well-interconnected porous structure. MgO/CNC-g-PAA (pH = 12.0) exhibited improved bactericidal tendencies towards gram-negative and gram-positive bacteria, which was further investigated by in-silico molecular docking analyses and also examined the reactive oxygen species production by photocatalysis and free radical-scavenging assay. After this, Doxorubicin (DOX), a model anticancer drug, was successfully loaded into nanocomposites (∼79 %) by electrostatic interaction and confirmed pH-triggered based release, which was over 53.7 % in 24 h. Finally, in vitro cytotoxicity-based analysis confirmed the improved antitumor efficacy of nanocomposite hydrogels. These findings revealed that MgO/CNC-g-PAA hydrogels might be prospective carriers for controlled drug delivery.
    URI
    https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85137307448&origin=inward
    DOI/handle
    http://dx.doi.org/10.1016/j.ijbiomac.2022.08.142
    http://hdl.handle.net/10576/35470
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