Handley D A, Chien S
Histochemistry. 1981;71(2):249-58. doi: 10.1007/BF00507828.
When ruthenium red (RR) is combined with OsO4, an electron-opaque complex forms which readily binds to the cell surface coat. However, the RR-OsO4 complex is often excluded from intercellular spaces in many cell types, and thus is not dependable as a tracer of regions continuous with the extracellular space. Postfixation of erythrocytes agglutinated by the lectin helix (Helix promatia) and intact carotid artery endothelium with a freshly prepared mixture of 1% OsO4 containing 0.1% ruthenium red (RR) resulted in a dense surface deposit of these cells, but intercellular regions were penetrated to a minimal degree by the stain. When a similar mixture of RR-OsO4 was allowed to stand 3 h before use, RR is oxidized by OsO4 to yield a ruthenium compound that has a spectrophotometric absorbance maximum at 365 nm. This RR molecule has a reduced number of cationic sites due to binding with osmium dioxide OsO2=. Postfixation of agglutinated RBCs and carotid artery endothelium with this oxidized ruthenium-OsO4 mixture resulted in a 50-80% decrease in surface deposition but markedly enhanced penetration into intercellular regions. The enhanced penetration is attributed to decreased binding affinity of the oxidized ruthenium for anionic surface membrane components, permitting effective stain penetration of cell-to-cell contact rather than extensive surface deposition. These studies indicate that the ruthenium compound formed by OsO4 oxidation of ruthenium red may be a useful tracer for ultrastructural visualization of intercellular spaces and junctions.
当钌红(RR)与四氧化锇(OsO4)结合时,会形成一种电子不透明的复合物,该复合物很容易与细胞表面被膜结合。然而,RR - OsO4复合物在许多细胞类型中常常被排除在细胞间隙之外,因此不能可靠地作为与细胞外空间连续区域的示踪剂。用含有0.1%钌红(RR)的1%四氧化锇新鲜混合液对经凝集素螺旋体(Helix promatia)凝集的红细胞和完整的颈动脉内皮进行后固定,导致这些细胞表面有密集的沉积物,但细胞间区域被染色剂渗透的程度极小。当RR - OsO4的类似混合液在使用前放置3小时时,RR会被OsO4氧化,生成一种在365nm处具有最大分光光度吸收值的钌化合物。由于与二氧化锇OsO2 =结合,这种RR分子的阳离子位点数量减少。用这种氧化钌 - OsO4混合液对凝集的红细胞和颈动脉内皮进行后固定,导致表面沉积物减少50 - 80%,但显著增强了对细胞间区域的渗透。渗透增强归因于氧化钌对阴离子表面膜成分的结合亲和力降低,使得染色剂能够有效渗透细胞间接触区域,而不是大量沉积在表面。这些研究表明,由OsO4氧化钌红形成的钌化合物可能是用于细胞间空间和连接超微结构可视化的有用示踪剂。