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Cited 16 time in webofscience Cited 19 time in scopus
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A cationic amino acid polymer nanocarrier synthesized in supercritical CO2 for co-delivery of drug and gene to cervical cancer cellsopen access

Authors
Kavya, K. V.Vargheese, StellaShukla, ShrutiKhan, ImranDey, Debasish KumarBajpai, Vivek K.Thangavelu, KavithaVivek, RajuKumar, R. T. RajendraHan, Young-KyuHuh, Yun SukHaldorai, Yuvaraj
Issue Date
Aug-2022
Publisher
Elsevier BV
Keywords
Cervical cancer; Drug-siRNA Co-delivery system; Polymer nanocarrier; Programmed cell death; Apoptosis-autophagy crosstalk
Citation
Colloids and Surfaces B: Biointerfaces, v.216, pp 1 - 12
Pages
12
Indexed
SCIE
SCOPUS
Journal Title
Colloids and Surfaces B: Biointerfaces
Volume
216
Start Page
1
End Page
12
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/2778
DOI
10.1016/j.colsurfb.2022.112584
ISSN
0927-7765
1873-4367
Abstract
The present study was undertaken to investigate the ability of a drug curcumin-loaded polymer to inhibit the growth of cervical cancer cells by enhancing the anti-cancer efficiency of curcumin. We synthesized poly (methacryloyl beta-alanine) (PMBA) as a nanocarrier by radical polymerization in supercritical CO2. The results showed that the curcumin encapsulated and folic acid (FA)-treated PMBA (Poly@Cur-FA) for 24 h activated the reactive oxygen species-mediated programmed cell death machinery in HeLa cells. This remarkable effect of Poly@Cur-FA treatment was visualized using different fluorescent probes, which demonstrated that the Poly@Cur-FA treatment disrupted the cell membrane, as also supported by scanning electron microscopy observations. The effect of Poly@Cur-FA dispersion on the cells was observed under a transmission electron microscope. Further, the HeLa cells were treated with the polymer encapsulated curcumin and Bcl2 siRNA (Pol-CursiRNA) for 24 h, which effectively suppressed the Bcl2 and simulated the autophagic pathway. This co-delivery system was designed to inhibit curcumin efflux and can enhance the treatment efficacy by targeting multiple signaling pathways, including cell cycle, apoptotic, and autophagic pathways. Collectively, the Pol-Cur-siRNA system appears to offer an efficient combinational therapeutic strategy that might overcome the problems associated with the chemosensitivity against the standard synthetic anti-cancer drugs. To support the experimental data, an artificial neural network model was developed to foresee the drug and gene release behaviors.
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