Thorball N
Histochemistry. 1981;71(2):209-33. doi: 10.1007/BF00507826.
Coupling fluorescein-isothiocyanate to dextrans (FITC-D) extends the usefulness of the dextrans as electron microscopic tracer particles by permitting preceding fluorescence stereo microscopy and high-power light microscopy of the tissue specimens. The fate of the tracer may thus be studied in vivo during the experiment, during fixation, and during the succeeding tissue processing. A study of some simple physicochemical characteristics of the tracer, and the influence, if any, of the fixing agent are also made possible. FITC-D was found to be uncharged in the pH range from 6.5 to 8.5, more rapidly precipitated by acetone than by alcohol, and to react with glutaraldehyde and osmium tetroxide in an unknown way during tissue fixation. FITC-D with molecular weights 70,000 and 150,000 showed no signs of diffusion during tissue preparation with the methods reported in the paper, whereas FITC-D 40,000 did so to a slight degree, when the tissue was kept for several days in the fixative vehicle. Securing the preservation of the lower molecular weight FITC-Ds during tissue fixation and preparation is more difficult and the described methods are not adequate. Dextrans provoke an anaphylactic reaction in most rat strains, but are well tolerated by Wistar Furth rats. The introduction of FITC into the dextran molecule might alter the biological reactions, but was also well tolerated by Wistar Furth rats. Combined fluorescence stereo microscopy, fluorescence microscopy of sections, light microscopy of strained sections and electron microscopy made it possible to follow a particular microcirculatory area, selected in vivo, to the final study in the electron microscope.
将异硫氰酸荧光素与葡聚糖偶联(FITC-D),通过对组织标本进行荧光立体显微镜检查和高倍光学显微镜检查,扩大了葡聚糖作为电子显微镜示踪颗粒的用途。因此,可以在实验过程中、固定过程中以及后续组织处理过程中在体内研究示踪剂的命运。对示踪剂的一些简单物理化学特性以及固定剂(如有)的影响进行研究也成为可能。发现FITC-D在pH值6.5至8.5范围内呈电中性,丙酮使其沉淀的速度比酒精快,并且在组织固定过程中以未知方式与戊二醛和四氧化锇发生反应。分子量为70,000和150,000的FITC-D在用本文报道的方法进行组织制备过程中未显示扩散迹象,而分子量为40,000的FITC-D在组织在固定剂载体中保存数天时会有轻微扩散。在组织固定和制备过程中确保低分子量FITC-D的保存更加困难,所述方法并不适用。葡聚糖在大多数大鼠品系中会引发过敏反应,但Wistar Furth大鼠对其耐受性良好。将FITC引入葡聚糖分子可能会改变生物学反应,但Wistar Furth大鼠对其耐受性也良好。联合荧光立体显微镜检查、切片荧光显微镜检查、染色切片光学显微镜检查和电子显微镜检查使得能够追踪在体内选定的特定微循环区域,直至在电子显微镜下进行最终研究。