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H2O2-triggered bubble generating antioxidant polymeric nanoparticles as ischemia/reperfusion targeted nanotheranostics.
Kang, Changsun; Cho, Wooram; Park, Minhyung; Kim, Jinsub; Park, Sanghoon; Shin, Dongho; Song, Chulgyu; Lee, Dongwon.
Afiliação
  • Kang C; Department of BIN Convergence Technology, Chonbuk National University, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea.
  • Cho W; Department of BIN Convergence Technology, Chonbuk National University, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea.
  • Park M; Department of BIN Convergence Technology, Chonbuk National University, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea.
  • Kim J; Department of BIN Convergence Technology, Chonbuk National University, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea.
  • Park S; Department of Electronics Engineering, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea.
  • Shin D; Department of Electronics Engineering, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea.
  • Song C; Department of Electronics Engineering, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea.
  • Lee D; Department of BIN Convergence Technology, Chonbuk National University, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea; Department of Polymer⋅Nano Science and Technology, Chonbuk National University, Baekjedaero 567, Jeonju, Chonbuk 561-756, Republic of Korea. Electronic address: dlee@
Biomaterials ; 85: 195-203, 2016 Apr.
Article em En | MEDLINE | ID: mdl-26874282
ABSTRACT
Overproduction of reactive oxygen species (ROS) such as hydrogen peroxide (H2O2) leads to oxidative stress, causing inflammation and cellular damages and death. H2O2 is one of the most stable and abundant ROS and H2O2-mediated oxidative stress is considered as a key mediator of cellular and tissue damages during ischemia/reperfusion (I/R) injury. Therefore, H2O2 could hold tremendous potential as a diagnostic biomarker and therapeutic target for oxidative stress-associated inflammatory conditions such as I/R injury. Here, we report a novel nanotheranostic agent that can express ultrasound imaging and simultaneous therapeutic effects for hepatic I/R treatment, which is based on H2O2-triggered CO2-generating antioxidant poly(vanillin oxalate) (PVO). PVO nanoparticles generate CO2 through H2O2-triggered oxidation of peroxalate esters and release vanillin, which exerts antioxidant and anti-inflammatory activities. PVO nanoparticles intravenously administrated remarkably enhanced the ultrasound signal in the site of hepatic I/R injury and also effectively suppressed the liver damages by inhibiting inflammation and apoptosis. To our best understanding, H2O2-responsive PVO is the first platform which generates bubbles to serve as ultrasound contrast agents and also exerts therapeutic activities. We therefore anticipate that H2O2-triggered bubble-generating antioxidant PVO nanoparticles have great potential for ultrasound imaging and therapy of H2O2-associated diseases.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Polímeros / Traumatismo por Reperfusão / Nanopartículas / Nanomedicina Teranóstica / Peróxido de Hidrogênio / Antioxidantes Tipo de estudo: Diagnostic_studies Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Polímeros / Traumatismo por Reperfusão / Nanopartículas / Nanomedicina Teranóstica / Peróxido de Hidrogênio / Antioxidantes Tipo de estudo: Diagnostic_studies Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article