首页> 外文期刊>Tetrahedron >A noncovalent, fluoroalkyl coating monomer for phosphonate-covered nanoparticles to Paul Wender, who taught us as undergraduate (AYC) and graduate (TJW) students to 'suspend the constraints of reality'
【24h】

A noncovalent, fluoroalkyl coating monomer for phosphonate-covered nanoparticles to Paul Wender, who taught us as undergraduate (AYC) and graduate (TJW) students to 'suspend the constraints of reality'

机译:Paul Wender的一种非共价氟代烷基涂层单体,用于膦酸酯覆盖的纳米粒子,Paul Wender曾教我们作为本科生(AYC)和研究生(TJW)的学生“悬浮现实的束缚”

获取原文
获取原文并翻译 | 示例
           

摘要

Gadolinium-containing phosphonate-coated gold nanoparticles were prepared and then non-covalently coated with an amphiphilic fluorous monomer. The monomer spontaneously self-assembles into a non-covalent monolayer shell around the particle. The binding of the shell utilizes a guanidinium-phosphonate interaction analogous to the one exploited by the Wender molecular transporter system. Particle-shell binding was characterized by a 27% decrease in ~(19)F T_1 of the fluorous shell upon exposure to the paramagnetic gadolinium in the particle and a corresponding increase in hydrodynamic diameter from 3 nm to 4 nm. Interestingly, a much smaller modulation of ~(19)F T_1 is observed when the shell monomer is treated with a phosphonate-free particle. By contrast, the phosphonate-free particle is a much more relaxive ~1H T_1 agent for water. Together, these observations show that the fluoroalkylguanidinium shell binds selectively to the phosphonate-covered particle. The system's relaxivity and selectivity give it potential for use in 19F based nanotheranostic agents.
机译:制备含d的膦酸酯包被的金纳米颗粒,然后用两亲性氟单体非共价地包被。单体自发地自组装成颗粒周围的非共价单层壳。壳的结合利用与Wender分子转运蛋白系统所利用的类似的胍鎓-膦酸酯相互作用。颗粒-壳结合的特征在于,暴露于颗粒中的顺磁性ado后,氟壳的〜(19)F T_1降低27%,流体动力学直径从3 nm相应增加到4 nm。有趣的是,当用不含膦酸酯的颗粒处理壳单体时,观察到〜(19)F T_1的调制要小得多。相比之下,不含膦酸酯的颗粒是水的〜1H T_1松弛剂。总之,这些观察结果表明,氟代烷基胍壳选择性地结合到膦酸酯覆盖的颗粒上。该系统的弛豫性和选择性使其有可能用于19F基纳米热敏剂。

著录项

相似文献

  • 外文文献
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