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受X射线照射的青蛙体内交感神经元的精细结构

The fine structure of sympathetic neurons in x-irradiated frogs.

作者信息

Pick J

出版信息

J Cell Biol. 1965 Aug;26(2):335-52. doi: 10.1083/jcb.26.2.335.

Abstract

The effects of whole body x-irradiation on the fine structure of sympathetic neurons were studied in 15 unanesthetized adult frogs (Rana pipiens), as seen at intervals ranging from 1 hour to 2 weeks after single exposures to 1000 r and 2000 r. Using standard procedures, the lumbar sympathetic ganglia of experimental and 20 control animals were prepared for electron microscope examination. Radiation produced conspicuous but irregular and variable deterioration, swelling, and clearing of neuronal lysosomes. These changes may have been due to an increased permeability of lysosomal membranes, causing the entry of fluid into lysosomes and their swelling and deterioration, but a pronounced escape of lysosomal enzymes into the cytoplasm was questionable. Less frequent were the dilatation and the parallel layering or complete fusion and tight packing of the rough-edged endoplasmic reticulum. The number of vacuoles, probably derived from Golgi cisternae, was somewhat increased. These vacuoles were conjectured to serve the "sequestration" of damaged cytoplasmic areas. Abnormal amounts of presumptive glycogen granules occupied some axons of myelinated and unmyelinated fibers, especially of presynaptic nerve fibers. This was assumed to be due to a decreased breakdown of glycogen and probably caused the interruption of the transmission of nerve impulses in presynaptic fibers. The maximal incidence of these alterations seemingly occurred 8 days after exposure to 1000 r, and 1 hour after x-irradiation with 2000 r. Signs of recovery appeared 2 weeks after exposure to 2000 r.

摘要

在15只未麻醉的成年蛙(豹蛙)身上研究了全身X射线照射对交感神经元精细结构的影响,单次照射1000伦琴和2000伦琴后,在1小时至2周的不同时间间隔进行观察。采用标准程序,对实验动物和20只对照动物的腰交感神经节进行制备,用于电子显微镜检查。辐射导致神经元溶酶体出现明显但不规则且多变的退化、肿胀和清晰化。这些变化可能是由于溶酶体膜通透性增加,导致液体进入溶酶体并使其肿胀和退化,但溶酶体酶大量逸入细胞质则值得怀疑。糙面内质网的扩张、平行分层或完全融合及紧密堆积则较少见。可能源自高尔基池的空泡数量有所增加。推测这些空泡起到“隔离”受损细胞质区域的作用。大量假定的糖原颗粒占据了一些有髓和无髓纤维的轴突,尤其是突触前神经纤维的轴突。这被认为是由于糖原分解减少所致,可能导致突触前纤维神经冲动传递中断。这些改变的最大发生率似乎在照射1000伦琴后8天以及2000伦琴X射线照射后1小时出现。在照射2000伦琴后2周出现恢复迹象。

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