2018
DOI: 10.1021/acsanm.8b00410
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Combining Magnetic Resonance Imaging with Photothermal Therapy of CuS@BSA Nanoparticles for Cancer Theranostics

Abstract: The treatment of tumors has been a wide concern by a large number of scientific researchers. Combining magnetic resonance imaging (MRI) with photothermal therapy (PTT) enables cancer theranostics to be more efficient and accurate. Herein, we synthesized CuS@BSA nanoparticles with an average grain diameter of about 16.5 nm through a facile one-pot eco-friendly and user-friendly strategy and it was found to have strong near-infrared absorption property and magnetic resonance imaging ability so that it can be uti… Show more

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Cited by 33 publications
(32 citation statements)
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“…It should be noted that the element of silicon, magnesium and iron could be attributed to their association with carbon. This result is related to (CHU et al, 2018).…”
Section: Energy Dispersive X-ray Spectrum (Edx)supporting
confidence: 51%
See 2 more Smart Citations
“…It should be noted that the element of silicon, magnesium and iron could be attributed to their association with carbon. This result is related to (CHU et al, 2018).…”
Section: Energy Dispersive X-ray Spectrum (Edx)supporting
confidence: 51%
“…The band at 1105.25 cm-1is due to C-O stretching vibration and the band at 1035.81 cm-1 stretching from to C-N stretching of amines. The results were closed to (HUANG et al, 2010;CHU et al, 2018;ZHAO et al, 2018) when they con irm the existence of functional groups in the synthesized CuS-BSA NPs.…”
Section: Fourier Transform Infrared (Ftir) Spectroscopy Analysismentioning
confidence: 82%
See 1 more Smart Citation
“…In carbon-based material such as carbon nanotubes, the heat generated by the vibrational modes of the lattice arises from the optical transitions causing excitation and subsequent relaxation [ 144 ]. In transition metal nanoparticles like CuS, d-d transition of metal ions drives the absorption of near-infrared light [ 145 ]. During PTT, when the temperature rises up to 40–45 °C around the tumor site, it causes many changes in the cancer cells, such as protein denaturation, swelling of mitochondrial membrane, and breakage of cellular membrane leading to cell death.…”
Section: Biomedical Applications Of Nanochitosanmentioning
confidence: 99%
“…During PTT, when the temperature rises up to 40–45 °C around the tumor site, it causes many changes in the cancer cells, such as protein denaturation, swelling of mitochondrial membrane, and breakage of cellular membrane leading to cell death. But noncancerous cells were found to be immune to such changes up to 1 h of similar light treatment, making PTT a targeted and minimally invasive therapy [ 145 , 146 ]. The researchers revealed that the PTT dependent cancer cell death could occur from either apoptosis or necrosis, and the more desirable apoptotic pathway, which depresses inflammatory response, can be induced in cells by controlling the NIR light intensity and the exposure time [ 147 ].…”
Section: Biomedical Applications Of Nanochitosanmentioning
confidence: 99%