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用于微血管测量的碳菁标记红细胞的评估。

Evaluation of carbocyanine-labeled erythrocytes for microvascular measurements.

作者信息

Unthank J L, Lash J M, Nixon J C, Sidner R A, Bohlen H G

机构信息

Department of Surgery, Indiana University School of Medicine, Indianapolis 46202.

出版信息

Microvasc Res. 1993 Mar;45(2):193-210. doi: 10.1006/mvre.1993.1018.

Abstract

Red blood cells labeled with the carbocyanine dyes, 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate (DiI) and 3,3'-dioctadecyloxacarbocyanine perchlorate (DiO), were evaluated for use in making microvascular measurements in rat small intestine and spinotrapezius muscle. We determined the minimum concentration of each dye which produced near maximal fluorescent intensity and labeled cell fraction. These dyes, which have excitation and emission spectra similar to fluorescein and rhodamine derivatives, have a number of advantages over the isothiocyanates: (1) the labeling procedure is quicker, easier, and less expensive; (2) the labeled cell fraction and the fluorescent intensity of DiI and DiO cells are stable for long periods of time in the rat circulation; and (3) DiI-labeled cells are brighter and transmit light through overlying erythrocytes better than rhodamine X isothiocyanate. However, in vitro and in vivo evaluations illustrate the potential limiting effects of vessel diameter and cell velocity on the accuracy of microvascular measurements made using this technique. In the small intestine and spinotrapezius muscle preparations, measurements of labeled cell flux were readily reproducible and could be partly automated with image analysis only in capillaries and small venules. Counting labeled cells in larger vessels by human observation or with automation was not reproducible, presumably due to absorption and dispersion of the fluorescent signal by overlying erythrocytes and smearing of the cell image at high cell velocities.

摘要

用碳花青染料1,1'-二辛基-3,3,3',3'-四甲基吲哚碳花青高氯酸盐(DiI)和3,3'-二辛基氧杂碳花青高氯酸盐(DiO)标记的红细胞,被评估用于大鼠小肠和斜方肌微血管测量。我们确定了每种染料产生接近最大荧光强度和标记细胞分数的最低浓度。这些染料的激发和发射光谱与荧光素和罗丹明衍生物相似,与异硫氰酸盐相比有许多优点:(1)标记过程更快、更容易且成本更低;(2)在大鼠循环中,DiI和DiO细胞的标记细胞分数和荧光强度长时间稳定;(3)DiI标记的细胞比异硫氰酸罗丹明X更亮,并且能更好地透过上层红细胞传输光。然而,体外和体内评估表明,血管直径和细胞速度对使用该技术进行微血管测量的准确性有潜在限制作用。在小肠和斜方肌制备物中,标记细胞通量的测量很容易重复,并且只有在毛细血管和小静脉中才能通过图像分析部分自动化。通过人工观察或自动化在较大血管中计数标记细胞不可重复,可能是由于上层红细胞对荧光信号的吸收和散射以及在高细胞速度下细胞图像的模糊。

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