...
首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Optical imaging and functional characterization of the transverse tubular system of mammalian muscle fibers using the potentiometric indicator di-8-ANEPPS.
【24h】

Optical imaging and functional characterization of the transverse tubular system of mammalian muscle fibers using the potentiometric indicator di-8-ANEPPS.

机译:使用电位指示剂di-8-ANEPPS对哺乳动物肌肉纤维的横向管状系统进行光学成像和功能表征。

获取原文
获取原文并翻译 | 示例

摘要

Potentiometric dyes are useful tools for studying membrane potential changes from compartments inaccessible to direct electrical recordings. In the past, we have combined electrophysiological and optical techniques to investigate, by using absorbance and fluorescence potentiometric dyes, the electrical properties of the transverse tubular system in amphibian skeletal muscle fibers. In this paper we expand on recent observations using the fluorescent potentiometric indicator di-8-ANEPPS to investigate structural and functional properties of the transverse tubular system in mammalian skeletal muscle fibers. Two-photon laser scanning confocal fluorescence images of live muscle fibers suggest that the distance between consecutive rows of transverse tubules flanking the Z-lines remains relatively constant in muscle fibers stretched to attain sarcomere lengths of up to 3.5 microm. Furthermore, the combined use of two-microelectrode electrophysiological techniques with microscopic fluorescence spectroscopy and imaging allowed us to compare the spectral properties of di-8-ANEPPS fluorescence in fibers at rest, with those of fluorescence transients recorded in stimulated fibers. We found that although the indicator has excitation and emission peaks at 470 and 588 nm, respectively, fluorescence transients display optimal fractional changes (13%/100 mV) when using filters to select excitation wavelengths in the 530-550 nm band and emissions beyond 590 nm. Under these conditions, results from tetanically stimulated fibers and from voltage-clamp experiments suggest strongly that, although the kinetics of di-8-ANEPPS transients in mammalian fibers are very rapid and approximate those of the surface membrane electrical recordings, they arise from the transverse tubular system membranes.
机译:电位染料是研究膜电势变化的有用工具,从难以接近的隔室到直接电记录。过去,我们结合电生理和光学技术,通过使用吸光度和荧光电位染料研究两栖骨骼肌纤维中横向管状系统的电学特性。在本文中,我们使用荧光电位指示剂di-8-ANEPPS扩展了最近的观察结果,以研究哺乳动物骨骼肌纤维中横管系统的结构和功能特性。双光子激光扫描活肌纤维的共聚焦荧光图像表明,在延伸到达到3.5微米的肌节长度的肌纤维中,在Z线两侧的横向小管的连续行之间的距离保持相对恒定。此外,将两种微电极电生理技术与显微荧光光谱法和成像技术结合使用,使我们能够比较静止纤维中di-8-ANEPPS荧光的光谱特性与受激纤维中记录的荧光瞬变特性。我们发现,尽管指示器在470和588 nm处分别具有激发和发射峰,但是当使用滤光片选择530-550 nm波段的激发波长和590以上的发射时,荧光瞬变显示出最佳的分数变化(13%/ 100 mV)。纳米在这些条件下,强固性纤维刺激和电压钳实验的结果强烈表明,尽管哺乳动物纤维中di-8-ANEPPS瞬变的动力学非常迅速,并且近似于表面膜电记录的动力学,但它们来自横向管状系统膜。

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