2017
DOI: 10.1002/anie.201709648
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Simultaneous Application of Photothermal Therapy and an Anti‐inflammatory Prodrug using Pyrene–Aspirin‐Loaded Gold Nanorod Graphitic Nanocapsules

Abstract: Photothermal therapy( PTT) has been extensively developed as an effective approach against cancer.H owever, PTT can trigger inflammatory responses,i nt urn simulating tumor regeneration and hindering subsequent therapy. A therapeutic strategy was developed to deliver enhanced PTT and simultaneously inhibit PTT-induced inflammatory response.1 -Pyrene methanol was utilizet os ynthesize the anti-inflammatory prodrug pyrene-aspirin (P-aspirin) with ac leavable ester bond and also facilitate loading the prodrug on … Show more

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Cited by 185 publications
(111 citation statements)
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References 28 publications
(19 reference statements)
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“…In PDT, photosensitizers generate ROS such as singlet oxygen ( 1 O 2 ), superoxide, hydrogen peroxide, and hydroxyl radical under light stimulation to kill cancer or inflammatory cells 120–122. In parallel, the photothermal conversion agents covert NIR light into localized heat for destroying disease regions 123,124. For RA treatment, NIR light with particular penetration depth can penetrate the inflamed joints, ensuring the treatment effect of nanomaterials in PDT and PTT 125…”
Section: Nanotherapeutics Of Ra Based On Nanodrugsmentioning
confidence: 99%
“…In PDT, photosensitizers generate ROS such as singlet oxygen ( 1 O 2 ), superoxide, hydrogen peroxide, and hydroxyl radical under light stimulation to kill cancer or inflammatory cells 120–122. In parallel, the photothermal conversion agents covert NIR light into localized heat for destroying disease regions 123,124. For RA treatment, NIR light with particular penetration depth can penetrate the inflamed joints, ensuring the treatment effect of nanomaterials in PDT and PTT 125…”
Section: Nanotherapeutics Of Ra Based On Nanodrugsmentioning
confidence: 99%
“…The agents should be able to efficiently transfer the absorbed NIR light energy into heat. Various nanomaterials with strong NIR light harvesting ability were reported to be promising in photothermal transferring treatment of cancer, such as (1) noble metal-based nanostructures, including gold nanoparticles, [8][9][10][11] nanorods, 12,13 nanoshells, 14 nanocages, 15,16 and Pd nanomaterials; 17,18 (2) carbon-based nanostructures such as carbon nanotubes, 19,20 nanohorns, 21 and graphenes; 22 (3) organic dye compound, including melanin, 23 indocyanine green (ICG), 24 nanoscale coordination polymers 25 and polypyrrole; 26 (4) oxygen vacancy-rich transition metal compounds, 27 including W 18 O 49 , 28,29 MoO 3Àx , 30 MoSe 2 (ref. 31) and Cu 3 BiS 3 (ref.…”
Section: Introductionmentioning
confidence: 99%
“…As a type of novel graphite nanomaterial with a core–shell structure, superior physicochemical properties, good biocompatibility, superior stability, and controllable size, graphitic nanocapsules have been extensively applied in biosensing, bioimaging, drug delivery, and cancer treatment . Benefiting from the large surface area of the outside graphitic shell, graphitic nanocapsules supply superior nanoplatforms for drugs and targeting‐molecule loading, which further broadens their biomedical applications .…”
Section: Introductionmentioning
confidence: 99%