首页> 外文期刊>ACS Omega >Near-Infrared Dual-Emission Ratiometric Fluorescence Imaging Nanoprobe for Real-Time Tracing the Generation of Endogenous Peroxynitrite in Single Living Cells and In Vivo
【24h】

Near-Infrared Dual-Emission Ratiometric Fluorescence Imaging Nanoprobe for Real-Time Tracing the Generation of Endogenous Peroxynitrite in Single Living Cells and In Vivo

机译:近红外双发射比例荧光成像纳米孔,用于实时追踪单一活细胞和体内内源性过氧化物的产生

获取原文
           

摘要

Peroxynitrite (ONOO~(–)) is a highly reactive nitrogen species with potent oxidant and nitrating properties. Its excessive generation can cause DNA and protein damage, thereby contributing to cell injury, and it is closely related to the development of many diseases. Thus, there is an urgent need for a reliable method to determine changes in the steady-state levels of ONOO~(–) in vivo. Ratiometric imaging, due to its built-in self-calibration system, can reduce artifacts and enable reliable in vivo imaging. In this study, we designed and prepared near-infrared (NIR) biomass quantum dots (NI-BQDs) and covalently coupled them with the NIR dye Cyanine7 (Cy7) to construct an NIR dual-emission nanoprobe (NI-BQD-Cy7) for real-time tracing the generation of endogenous ONOO~(–) in single living cells and in vivo by ratiometric fluorescence imaging. NI-BQD-Cy7 exhibited high detection sensitivity and selectivity for ONOO~(–) in the mitochondria. Additionally, it can produce dual NIR fluorescence emission, thus allowing in situ ratiometric fluorescence imaging to real-time trace the generation and concentration changes of ONOO~(–) in vivo. The application of the proposed NIR dual-emission nanoprobe can provide accurate information for the study of the biological function of ONOO~(–) in single living cells and in vivo, and it is very useful to explain the mechanism of cell damage caused by ONOO~(–).
机译:过氧基酯(ONOO〜( - ))是具有强效氧化剂和氮化性能的高反应性氮物质。其过度的发电会导致DNA和蛋白质损伤,从而有助于细胞损伤,并且与许多疾病的发展密切相关。因此,迫切需要可靠的方法来确定体内稳态〜( - )稳态水平的变化。由于其内置的自校准系统,比例成像可以减少伪像并在体内成像中可靠。在该研究中,我们设计和制备了近红外(NIR)生物量量子点(Ni-BQDS),并与NIR染料花青膜7(CY7)共价偶联,以构建NIR双发射纳米孔(Ni-BQD-Cy7)用比率荧光成像实时跟踪单一活细胞内源性ONOO〜( - )的产生。 Ni-BQD-Cy7在线粒体中表现出高检测敏感性和选择性对ONOO〜( - )的选择性。另外,它可以产生双Nir荧光发射,从而允许原位荧光成像对实时迹线的实时迹象地进行体内内ONOO〜( - )的产生和浓度变化。所提出的NIR双发射纳米骨瓣的应用可以为在单一活细胞和体内进行ONOO〜( - )的生物学功能的准确信息,并且解释由ONOO造成的细胞损伤机制非常有用〜( - )。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号