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Local intracellular ion measurements with luminescent indicators using confocal laser scanning microscopy

机译:使用共聚焦激光扫描显微镜的发光指标局部细胞内离子测量

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Ion sensitive fluoroprobes such as BCECF (pH) and FURA-II (Ca$+2$PLU$/) are frequently used indicators for determination of ion activities in single cells and subcellular compartments, e.g. by video enhanced or video intensified microscopy. Moreover, using confocal laser scanning microscopy (CLSM) with its inherent potential for noninvasive optical sectioning of cells and tissues and subsequent 3D image reconstruction, intracellular ion topographies can be monitored via pseudocolor encoded ratio imaging from pixel to pixel enabling in vivo measurements of dynamic intracellular processes. Regardless of the degree of spatial resolution, reliable qualtitative determinations essentially depend on accurate calibration of the intracellularly entrapped fluoroprobe. Calibration is either established on the basis of a whole cell or within a more or less extended subcellular compartment and the characteristics are displayed as concentration encoded pseudocolor bar within the image frame. This calibration is assumed to be valid for other cellular compartments and, in case of ion imaging, it is even thought to be valid for every single pixel of the complete pixel field. However, the assumption of a topographically invariant intracellular calibration requires a reliable behavior of the intracellularly applied indicator. This intracellular integrity of the dyes often does not seem to exist since intracellular calibration curves considerably deviate from in vitro calibration characteristics. Deviations may be due to intracellular interactions of indicator molecules with cytoplasmic macromolecules, e.g. proteins, resulting in spectral distortions and/or sensitivity deficits as demonstrated by the indicators BCECF and FURA-RED (a FURA-II analogue) or to intracellular redistribution of the indicator as exemplified by pH measurements using carboxy-SNARF-1. Consequences of these investigations as well as further potential interferences are discussed with special respect to ion imaging techniques.
机译:离子敏感fluoroprobes如BCECF(pH值)和FURA-II(钙$ + 2 $ PLU $ /)被频繁使用的指标测定单细胞中离子的活动和亚细胞区室,例如的通过视频增强或加剧视频显微镜。此外,使用共聚焦激光扫描显微镜(CLSM)与其对细胞和组织以及随后的3D图像重建的非侵入性光学切片的内在潜力,细胞内离子形貌可以通过伪彩色编码比率成像监测从像素到像素使得能够动态细胞内的体内测量流程。无论空间分辨率的程度,可靠qualtitative确定主要取决于细胞内夹带的荧光探针的精确校准。校准是一个全细胞的基础上,或更多或更少的扩展亚细胞区室中任一建立和特性被显示为图像帧内编码的浓度伪巴。该校准被假定为有效的其他细胞区室,并在离子成像的情况下,甚至被认为是有效的完整像素场的每一个单个像素。然而,地形不变细胞内校准的假设需要在细胞内应用指标的可靠的行为。往往似乎这种细胞内的染料完整性不存在的,因为细胞内的校准曲线明显从体外校准的特性不符。偏差可能是由于与细胞质大分子,例如指示器分子的细胞内的相互作用蛋白,从而导致谱失真和/或灵敏度缺陷所证实由指标BCECF和FURA-RED(一个FURA-II类似物)或已举例说明通过使用羧基SNARF-1的pH值测量的指示剂的细胞内再分布。这些调查的结果,以及进一步潜在的干扰与特殊对于离子成像技术的讨论。

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