Polenov A L, Ugrumov M V, Belenky M A
Cell Tissue Res. 1975 Jun 27;160(1):113-23. doi: 10.1007/BF00219845.
Three types of degenerating peptidergic neurosecretory fibres have been found in the posterior pituitary of chronically dehydrated albino rats. "Dark" neurosecretory fibres and their swellings contain neurosecretory granules, neurotubules, shrunken mitochondria and diffusely distributed fine dense material. Some swellings are filled with synaptic vesicles and/or conglomerations of dense membranes. The transitional forms exist between these fibres and extracellular accumulations of electron dense material. Synaptic vesicles, single neurosecretory granules, lipid-like droplets and lamellar bodies occur in the latter. Some neurosecretory fibres and swellings have numerous polymorphous inclusions arising due to degradation of secretory inclusions and organelles, mitochondria and neurotubules in particular. "Dark" neurosecretory elements and those with numerous polymorphous inclusions are enveloped by pituicyte cytoplasm. Sometimes the plasma membranes both of the pituicytes and neurosecretory fibres are destroyed or transformed into a multi-membrane complex. It is assumed that pituicytes may phagocytize degenerating neurosecretory elements. N urosecretory fibres with a locally dissolved neuroplasm and/or large lucent vacuoles seem to be due to axonal degeneration by the "light" type. These neurosecretory elements, the largest of them in particular, may transform into large cavities bordered by a membrane and containing flake-like material and single-membrane vacuoles. Degeneration of neurosecretory elements seems to occur mainly due to hyperfunction of the hypothalamo-hypophysial neurosecretory system.
在长期脱水的白化大鼠的垂体后叶中发现了三种类型的退行性肽能神经分泌纤维。“暗”神经分泌纤维及其膨体含有神经分泌颗粒、神经微管、皱缩的线粒体和弥漫分布的细致密物质。一些膨体充满了突触小泡和/或致密膜聚集体。这些纤维与细胞外电子致密物质堆积之间存在过渡形式。后者中存在突触小泡、单个神经分泌颗粒、脂样小滴和板层小体。一些神经分泌纤维和膨体有许多多形性内含物,这是由于分泌性内含物和细胞器特别是线粒体和神经微管的降解所致。“暗”神经分泌成分和那些有许多多形性内含物的成分被垂体细胞的细胞质所包裹。有时垂体细胞和神经分泌纤维的质膜都会被破坏或转化为多膜复合体。据推测,垂体细胞可能吞噬退行性神经分泌成分。具有局部溶解的神经浆质和/或大的透明空泡的神经分泌纤维似乎是由“轻”型轴突退变引起的。这些神经分泌成分,尤其是其中最大的,可能会转化为有膜边界的大腔,腔内含有片状物质和单膜空泡。神经分泌成分的退变似乎主要是由于下丘脑-垂体神经分泌系统功能亢进所致。