...
首页> 外文期刊>Nanoscale >Correlative dual-alternating-color photoswitching fluorescence imaging and AFM enable ultrastructural analyses of complex structures with nanoscale resolution
【24h】

Correlative dual-alternating-color photoswitching fluorescence imaging and AFM enable ultrastructural analyses of complex structures with nanoscale resolution

机译:相关dual-alternating-color光电开关荧光成像和AFM启用超微结构的复杂结构的分析纳米级分辨率的

获取原文
获取原文并翻译 | 示例

摘要

There is a practical motivation for correlating different types of microscopy for revealing complementary information of ultrastructures with resolution beyond the diffraction limit. The correlative microscopy strategy based on the combination of super-resolution fluorescence imaging with atomic force microscopy (AFM) is expected to provide both the specificity and three-dimensional structural information of nanomaterials. Herein we synthesized a dual-alternating-color photoswitchable fluorescent probe based on a naphthalimide-spiropyran dyad (NI-SP) and explored the capability of such correlative microscopy for visualizing nanostructures with complex structural hierarchy. NI-SP underwent reversible photoswitching between green and red fluorescence based on a reversible photochemical reaction and such reaction-linked correlation between two distinct types of fluorescence signals intrinsically enabled mutual authentication in super-resolution fluorescence imaging. Additionally, such correlative microscopy also demonstrated mutual complementation between different pieces of structural information of the target acquiredviafluorescence imaging and AFM, respectively, in which the former reveals spatial distribution of fluorescent dyes in the nanoscale polymer fibroid micelles while the latter maps the topographical structure of the target with complex structural hierarchy. The results obtained in this work proclaimed that the combination of such correlative microscopy with our NI-SP probe is an effective modality for ultrastructural analysis and has future applications in various complex systems such as tissue/organ imaging.
机译:有一个实际的动机相关为揭示不同类型的显微镜补充信息的超微结构分辨率衍射极限。基于相关显微镜策略结合超分辨率荧光与原子力显微镜(AFM)成像将提供特异性和的三维结构信息纳米材料。dual-alternating-color photoswitchable基于一个荧光探针naphthalimide-spiropyran二分体(NI-SP)和探索这类相关的能力显微镜的纳米结构可视化复杂的结构层次。绿色和红色之间的可逆的光电开关基于可逆光化学荧光反应等必然反应相关之间的两个不同类型的荧光启用信号本质上相互验证在超分辨率荧光成像。显微镜还演示了相互不同部分之间的互补结构信息的目标acquiredviafluorescence成像和AFM,分别前的显示空间荧光染料在纳米尺度上的分布聚合物纤维状的微粒而后者地图目标的地形结构复杂的结构层次。在这本书中宣称,获得的结合相关的显微镜我们NI-SP探测器是一种有效的方式超微结构分析和未来应用程序等各种复杂的系统组织/器官成像。

著录项

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