volume 37 issue 5 pages 2387-2395

Fe3O4@Au core–shell hybrid nanocomposite for MRI-guided magnetic targeted photo-chemotherapy

Tahereh Khani 1
Zahra Alamzadeh 1
Abolfazl Sarikhani 1, 2
Mahdie Mousavi 1
Mehri Mirrahimi 1
Mousa Tabei 1
Rasoul Irajirad 1
Ziaeddin Abed 1
Jaber Beik 1
Publication typeJournal Article
Publication date2022-01-23
scimago Q2
wos Q1
SJR0.625
CiteScore4.4
Impact factor2.4
ISSN02688921, 1435604X
Surgery
Dermatology
Abstract
The combination of multiple therapeutic and diagnostic functions is fast becoming a key feature in the area of clinical oncology. The advent of nanotechnology promises multifunctional nanoplatforms with the potential to deliver multiple therapeutics while providing diagnostic information simultaneously. In this study, novel iron oxide-gold core–shell hybrid nanocomposites (Fe3O4@Au HNCs) coated with alginate hydrogel carrying doxorubicin (DOX) were constructed for targeted photo-chemotherapy and magnetic resonance imaging (MRI). The magnetic core enables the HNCs to be detected through MRI and targeted towards the tumor using an external magnetic field, a method known as magnetic drug targeting (MDT). The Au shell could respond to light in the near-infrared (NIR) region, generating a localized heating for photothermal therapy (PTT) of the tumor. The cytotoxicity assay showed that the treatment of CT26 colon cancer cells with the DOX-loaded HNCs followed by laser irradiation induced a significantly higher cell death as opposed to PTT and chemotherapy alone. The in vivo MRI study proved MDT to be an effective strategy for targeting the HNCs to the tumor, thereby enhancing their intratumoral concentration. The antitumor study revealed that the HNCs can successfully combine chemotherapy and PTT, resulting in superior therapeutic outcome. Moreover, the use of MDT following the injection of HNCs caused a more extensive tumor shrinkage as compared to non-targeted group. Therefore, the as-prepared HNCs could be a promising nanoplatform for image-guided targeted combination therapy of cancer.
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GOST Copy
Khani T. et al. Fe3O4@Au core–shell hybrid nanocomposite for MRI-guided magnetic targeted photo-chemotherapy // Lasers in Medical Science. 2022. Vol. 37. No. 5. pp. 2387-2395.
GOST all authors (up to 50) Copy
Khani T., Alamzadeh Z., Sarikhani A., Mousavi M., Mirrahimi M., Tabei M., Irajirad R., Abed Z., Beik J. Fe3O4@Au core–shell hybrid nanocomposite for MRI-guided magnetic targeted photo-chemotherapy // Lasers in Medical Science. 2022. Vol. 37. No. 5. pp. 2387-2395.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1007/s10103-021-03486-9
UR - https://doi.org/10.1007/s10103-021-03486-9
TI - Fe3O4@Au core–shell hybrid nanocomposite for MRI-guided magnetic targeted photo-chemotherapy
T2 - Lasers in Medical Science
AU - Khani, Tahereh
AU - Alamzadeh, Zahra
AU - Sarikhani, Abolfazl
AU - Mousavi, Mahdie
AU - Mirrahimi, Mehri
AU - Tabei, Mousa
AU - Irajirad, Rasoul
AU - Abed, Ziaeddin
AU - Beik, Jaber
PY - 2022
DA - 2022/01/23
PB - Springer Nature
SP - 2387-2395
IS - 5
VL - 37
PMID - 35066676
SN - 0268-8921
SN - 1435-604X
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2022_Khani,
author = {Tahereh Khani and Zahra Alamzadeh and Abolfazl Sarikhani and Mahdie Mousavi and Mehri Mirrahimi and Mousa Tabei and Rasoul Irajirad and Ziaeddin Abed and Jaber Beik},
title = {Fe3O4@Au core–shell hybrid nanocomposite for MRI-guided magnetic targeted photo-chemotherapy},
journal = {Lasers in Medical Science},
year = {2022},
volume = {37},
publisher = {Springer Nature},
month = {jan},
url = {https://doi.org/10.1007/s10103-021-03486-9},
number = {5},
pages = {2387--2395},
doi = {10.1007/s10103-021-03486-9}
}
MLA
Cite this
MLA Copy
Khani, Tahereh, et al. “Fe3O4@Au core–shell hybrid nanocomposite for MRI-guided magnetic targeted photo-chemotherapy.” Lasers in Medical Science, vol. 37, no. 5, Jan. 2022, pp. 2387-2395. https://doi.org/10.1007/s10103-021-03486-9.