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Use of scintillator-based nanoparticles for in vivo control of light-sensitive bioactive molecules

机译:基于闪烁体的纳米粒子在体内控制光敏生物活性分子的用途

摘要

The method for remote, non-invasive in vivo control of the activation of light-sensitive bioactive molecules for the purpose of research or therapy is based on delivering to the required site of the body of nanoparticles along with said light-sensitive bioactive molecules. Nanoparticles' core is made from scintillator material that absorbs X-ray and in response emits visible light; they have biocompatible protective coating and surface targeting agents enabling accumulation at the required site(s) within the body. Irradiation of the site with the highly penetrable X-rays causes nanoparticles to emit visible light which will activate light-sensitive bioactive molecule(s) within this site inducing sought therapeutic effect.
机译:为了研究或治疗的目的,用于对光敏生物活性分子进行远程,非侵入性体内控制的方法是基于将纳米颗粒与所述光敏生物活性分子一起递送到人体所需的部位。纳米粒子的核心由闪烁体材料制成,该材料吸收X射线并发出可见光。它们具有生物相容性保护涂层和表面靶向剂,可在体内所需的部位积聚。用高度可渗透的X射线照射该部位会导致纳米粒子发出可见光,从而激活该部位内的光敏生物活性分子,从而诱导寻求的治疗效果。

著录项

  • 公开/公告号US10183081B2

    专利类型

  • 公开/公告日2019-01-22

    原文格式PDF

  • 申请/专利权人 YAROSLAV M. SHUBA;

    申请/专利号US201313761206

  • 发明设计人 YAROSLAV M. SHUBA;

    申请日2013-02-07

  • 分类号A61K49/04;A61K49/00;A61K41/00;B82Y5/00;

  • 国家 US

  • 入库时间 2022-08-21 12:12:02

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