首页> 外文会议>Neural Imaging and Sensing >Feasibility of using RH795 dye for photoacoustic imaging of neuro-electrical activity
【24h】

Feasibility of using RH795 dye for photoacoustic imaging of neuro-electrical activity

机译:使用RH795染料对神经电活动进行光声成像的可行性

获取原文
获取原文并翻译 | 示例

摘要

Currently, the most researched noninvasive approach for monitoring neuro-electrical activity involves optical-fluorescence imaging, which suffers from limited imaging penetration. We propose an alternative approach, photoacoustic imaging (PAI) of biopotentials, that relies on transient absorption of light by voltage-sensitive probes and subsequent generation/detection of ultrasound. PAI-based voltage imaging approach can offer the same advantages as the fluorescence imaging in terms of sensitivity and molecular specificity, but it also can significantly extend the imaging depth, In this pilot study we are investigating the feasibility of photoacoustically visualizing biopotentials in rat pheochromocytoma (PC12) cells tagged with voltage-sensitive styrylpyridinium dye, RH795. A change in the intramembrane potential was induced in PC12 cells by adding tetraphenylborate (TPB) to the cell culture. A custom-made absorption spectrophotometer was used to verify the change in optical absorption of RH795 dye as a result of TPB-induced electrical fields. Absorption spectra recorded before and after the addition of 100 μM TPB exhibited a wavelength shift of the absorption peak (approximately 510 nm to 550 nm) as well as an increase in the overall magnitude of absorption in the wavelength range of 500-1000 nm. The absorption spectral measurements indicated that RH795 is a good candidate as a voltage-sensitive dye for photoacoustically tracking changes in cell-membrane potential.
机译:当前,最受研究的用于监视神经电活动的非侵入性方法涉及光学荧光成像,该技术的成像渗透性有限。我们提出了另一种方法,即生物电势的光声成像(PAI),它依赖于电压敏感探针对光的瞬态吸收以及随后的超声波产生/检测。基于PAI的电压成像方法在灵敏度和分子特异性方面可提供与荧光成像相同的优势,但也可显着扩展成像深度。 PC12)细胞用电压敏感的苯乙烯吡啶鎓染料RH795标记。通过向细胞培养物中添加四苯基硼酸酯(TPB),在PC12细胞中诱导膜内电位的变化。使用定制的吸收分光光度计来验证由于TPB感应电场而导致的RH795染料的光吸收变化。在添加100μMTPB之前和之后记录的吸收光谱显示出吸收峰的波长偏移(大约510 nm至550 nm),以及在500-1000 nm波长范围内的总吸收幅度增加。吸收光谱测量表明,RH795是用于光声跟踪细胞膜电位变化的压敏染料的良好候选者。

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