...
首页> 外文期刊>Analytical chemistry >Selective Tracking of Lysosomal Cu2+ Ions Using Simultaneous Target- and Location-Activated Fluorescent Nanoprobes
【24h】

Selective Tracking of Lysosomal Cu2+ Ions Using Simultaneous Target- and Location-Activated Fluorescent Nanoprobes

机译:使用同时的目标和位置激活的荧光纳米探针对溶酶体Cu 2+离子的选择性追踪

获取原文
获取原文并翻译 | 示例
           

摘要

Levels of lysosomal copper are tightly regulated in the human body. However, few methods for monitoring dynamic changes in copper pools are available, thus limiting the ability to diagnostically assess the influence of copper accumulation on health status. We herein report the development of a dual target and location-activated rhodaminespiropyran probe, termed Rhod-SP, activated by the presence of lysosomal Cu2+. Rhod-SP contains a proton recognition unit of spiropyran, which provides molecular switching capability, and a latent rhodamine fluorophore for signal transduction. Upon activation by lysosomal acidic pH, Rhod-SP binds with Cu2+ by spiropyran-based proton activation, promoting, in turn, rhodamine ring opening, which shows a switched on fluorescence signal. However, to protect Rhod-SP from degradation and interference by the physiological environment, it is engineered on mesoporous silica nanoparticles (MSNs), and the surface of Rhod-SP@MSNs is further anchored with beta-cyclodextrin (beta-CD) to enhance the solubility and bioavailability of Rhod-SP@MSN-CD. Next, to enhance cell specificity, a guiding unit of c(RGDyK) peptide conjugated adamantane (Ad-RGD) as prototypical system, is incorporated on the surface of Rhod-SP@MSN-CD to target integrin alpha(v)beta(3) and alpha(v)beta(5) overexpressed on cancer cells. Fluorescence imaging showed that both Rhod-SP@MSN-CD and Rhod-SP@MSN-CD-RGD were suitable for visualizing exogenous and endogenous Cu2+ in lysosomes of living cells. This strategy addresses some common challenges of chemical probes in biosensing, such as spatial resolution in cell imaging, the solubility and stability in biological system, and the interference from intracellular species. The newly designed nanoprobe, which allows one to track, on a location-specific basis, and visualize lysosomal Cu2+, offers a potentially rich opportunity to examine copper physiology in both healthy and diseased states.
机译:溶酶体铜的水平在人体中受到严格调节。但是,很少有用于监视铜池动态变化的方法,因此限制了诊断评估铜积累对健康状况的影响的能力。我们在此报告了通过溶酶体Cu2 +的存在而激活的双重目标和位置激活的若丹明螺吡喃探针(称为Rhod-SP)的开发。 Rhod-SP包含螺吡喃的质子识别单元,可提供分子转换功能,以及潜在的若丹明荧光团,可进行信号转导。通过溶酶体酸性pH活化后,Rhod-SP通过基于螺吡喃的质子活化与Cu2 +结合,进而促进了若丹明开环,这显示了打开的荧光信号。但是,为了保护Rhod-SP免受生理环境的降解和干扰,将其设计在介孔二氧化硅纳米粒子(MSNs)上,并且Rhod-SP @ MSNs的表面进一步锚固了β-环糊精(beta-CD)以增强Rhod-SP @ MSN-CD的溶解度和生物利用度。接下来,为了增强细胞特异性,将c(RGDyK)肽共轭金刚烷(Ad-RGD)的指导单元作为原型系统,掺入Rhod-SP @ MSN-CD的表面上,以靶向整联蛋白alpha(v)beta(3) )和alpha(v)beta(5)在癌细胞上过表达。荧光成像显示,Rhod-SP @ MSN-CD和Rhod-SP @ MSN-CD-RGD都适合可视化活细胞溶酶体中的外源性和内源性Cu2 +。该策略解决了生物探针中化学探针的一些常见挑战,例如细胞成像中的空间分辨率,生物系统中的溶解度和稳定性以及细胞内物种的干扰。新设计的纳米探针使人们可以在特定位置进行跟踪并可视化溶酶体Cu2 +,这为检查健康和患病状态下的铜生理提供了潜在的丰富机会。

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