Napolitano L, Lebaron F, Scaletti J
J Cell Biol. 1967 Sep;34(3):817-26. doi: 10.1083/jcb.34.3.817.
The fine structure of myelin was studied in glutaraldehyde-fixed rat sciatic nerves depleted of lipid by acetone, chloroform:methanol (2:1 v/v), and chloroform:methanol:concentrated HCl (200:100:1, v/v/v). One portion of each of these nerves, plus the extracts, was saponified and analyzed by gas-liquid chromatography for fatty acids. The remainder of each nerve was stained in osmium tetroxide in CCl(4) (5g/100cc) and was embedded in Epon 812. Thin sections, examined in the electron microscope, revealed the preservation of myelin lamellar structure with a 170 A periodicity in nerves depleted of 98% of their lipids. Preservation of myelin lamellar structure depended on glutaraldehyde fixation and the introduction of osmium tetroxide in a nonpolar vehicle (CCl(4)) after the lipids had been extracted. It is concluded that the periodic lamellar structure in electron micrographs of myelin depleted of lipid results from the complexing of osmium tetroxide, plus uranyl and lead stains, with protein.
研究了经戊二醛固定、并用丙酮、氯仿:甲醇(2:1 v/v)和氯仿:甲醇:浓盐酸(200:100:1,v/v/v)去除脂质的大鼠坐骨神经髓鞘的精细结构。将这些神经中的每一部分以及提取物进行皂化处理,并通过气液色谱法分析脂肪酸。每条神经的其余部分用四氧化锇在四氯化碳(5g/100cc)中染色,然后包埋在Epon 812中。在电子显微镜下检查的超薄切片显示,在去除98%脂质的神经中,髓鞘板层结构得以保留,其周期为170埃。髓鞘板层结构的保留取决于戊二醛固定以及在脂质提取后将四氧化锇引入非极性载体(四氯化碳)中。得出的结论是,脂质去除后的髓鞘电子显微照片中的周期性板层结构是由四氧化锇与铀酰和铅染剂以及蛋白质的络合作用产生的。