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Thiol-Responsive Gold Nanodot Swarm with Glycol Chitosan for Photothermal Cancer Therapy

Authors
Jo, SeongHoonSun, In-CheolYun, Wan SuKim, JinseongLim, Dong-KwonAhn, Cheol-HeeKim, Kwangmeyung
Issue Date
10월-2021
Publisher
MDPI
Keywords
glycol chitosan; gold nanoparticle; immunogenic cell death; photothermal therapy; thiol-responsiveness
Citation
MOLECULES, v.26, no.19
Indexed
SCIE
SCOPUS
Journal Title
MOLECULES
Volume
26
Number
19
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/136145
DOI
10.3390/molecules26195980
ISSN
1420-3049
Abstract
Photothermal therapy (PTT) is one of the most promising cancer treatment methods because hyperthermal effects and immunogenic cell death via PTT are destructive to cancer. However, PTT requires photoabsorbers that absorb near-infrared (NIR) light with deeper penetration depth in the body and effectively convert light into heat. Gold nanoparticles have various unique properties which are suitable for photoabsorbers, e.g., controllable optical properties and easy surface modification. We developed gold nanodot swarms (AuNSw) by creating small gold nanoparticles (sGNPs) in the presence of hydrophobically-modified glycol chitosan. The sGNPs assembled with each other through their interaction with amine groups of glycol chitosan. AuNSw absorbed 808-nm laser and increased temperature to 55 degrees C. In contrast, AuNSw lost its particle structure upon exposure to thiolated molecules and did not convert NIR light into heat. In vitro studies demonstrated the photothermal effect and immunogenic cell death after PTT with AuNSW. After intratumoral injection of AuNSw with laser irradiation, tumor growth of xenograft mouse models was depressed. We found hyperthermal damage and immunogenic cell death in tumor tissues through histological and biochemical analyses. Thiol-responsive AuNSw showed feasibility for PTT, with advanced functionality in the tumor microenvironment.
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