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Localized Light-Au-Hyperthermia Treatment for Precise, Rapid, and Drug-Free Blood Clot Lysis

  • Lina DONG
  • , Xiao LIU
  • , Tian WANG
  • , Bixing FANG
  • , Jinghuang CHEN
  • , Chen LI
  • , Xinxin MIAO
  • , Chaochao WEI
  • , Fen YU
  • , Hongbo XIN
  • , Kui HONG*
  • , Xingwei DING
  • , Xiaolei WANG
  • *Corresponding author for this work

Research output: Journal PublicationsJournal Article (refereed)peer-review

Abstract

Thrombus diseases, induced by blood stasis or vascular embolization normally, frequently occur with high disability and mortalities worldwide. At present, drug thrombolysis, a primary clinical therapy for blood clot lysis, could increase the lethal risk for hemorrhage when thrombolysis agents are overused in the whole body. Therefore, a novel and advanced therapy for blood clot lysis, based on remote physical signals, is helpful for assisting clinical therapy. Here, we used the localized light-Au-hyperthermia (LAH) treatment, induced by gold nanorods (Au NRs) irradiated with near-infrared light (808 nm), for precise, rapid, and drug-free blood clot lysis. The LAH technology was first introduced in the murine hematoma model and the murine myocardial infarction model for blood clot lysis. Compared with traditional therapy, LAH was assured to shorten the time of detumescence in the murine hematoma model owing to their precise and localized hyperthermia. Meanwhile, we also discovered that LAH was a benefit to vascular recanalization in the murine myocardial infarction model. In addition, the Au NRs used in LAH present ideal biocompatibility in the murine model, which endows it to be suitable for blood clot lysis in vivo.
Original languageEnglish
Pages (from-to)1951-1956
Number of pages6
JournalACS applied materials & interfaces
Volume11
Issue number2
Early online date20 Dec 2018
DOIs
Publication statusPublished - 16 Jan 2019
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2018 American Chemical Society.

Funding

This work was supported by the National Natural Science Foundation of China (81760641 to X.D.); National Natural Science Foundation of China (81530013 to K.H.); National Natural Science Foundation of China (31860263 and 21461015 to X.W.); National Natural Science Foundation of China (81873659 and 91339113 to H.X.); National Key Basic Research Program of China (2013CB531103 to H.X.); Natural Science Foundation of Jiangxi Province (20165BCB19002, KJLD14010, 20153BCB23035, and 20161ACB21002 to X.W.); and Nanchang University Seed Grant for Biomedicine to X.W.

Keywords

  • blood clot lysis
  • hematoma
  • myocardial infarction
  • photothermal therapy

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