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成年大鼠重新支配的环层小体中的多个轴突终末。

Multiple axon terminals in reinnervated Pacinian corpuscles of adult rat.

作者信息

Zelená J

出版信息

J Neurocytol. 1984 Oct;13(5):665-84. doi: 10.1007/BF01148488.

Abstract

The ultrastructure of Pacinian corpuscles localized beneath the crural interosseous membrane was examined two weeks to 18 months after crushing the sciatic nerve in adult rats. The Pacinian inner core and capsule remained preserved during the transient period of denervation. Regenerating axons reached Pacinian corpuscles approximately three weeks after nerve crush. Up to 15 axonal sprouts entered a single corpuscle at the initial stage of reinnervation, but only 1-3 axons increased in size, myelinated and formed axon terminals in the inner core, the excess sprouts being eliminated. Most corpuscles of the crural group were reinnervated by the end of the first month. Three to 19 months after nerve crush, 10% of corpuscles examined were found to be monoaxonal and monoterminal as before the operation; 74% contained multiple terminals; 16% remained denervated. Over half the multiterminal corpuscles were supplied with a single myelinated axon that branched inside the corpuscles; the rest received two or three myelinated axons which formed several terminals. The terminals were distributed at random, usually in the axial region between the lamellae of the inner core. They were cylindrical, with an oval profile; the larger terminals were filled with mitochondria and microtubules at their circumference and contained a core of neurofilaments. Lateral processes of the terminals were filled with vesicles and had membrane specializations as in normal corpuscles. The mean number of terminals in reinnervated corpuscles was 4.07 +/- 0.37 (S.E.M.) at three months, and 3.26 +/- 0.49 (S.E.M.) 6-18 months after nerve crush. This small decrease was apparently the result of degeneration occasionally observed in some axon terminals at later stages of reinnervation. These experiments thus demonstrate that most rat Pacinian corpuscles become reinnervated with multiple terminals after nerve injury and maintain multiterminal innervation permanently.

摘要

在成年大鼠坐骨神经挤压伤后2周18个月,对位于小腿骨间膜下方的环层小体超微结构进行了检查。在去神经支配的短暂时期内,环层小体内核和被膜保持完好。神经挤压伤后约3周,再生轴突抵达环层小体。在再支配初期,多达15个轴突芽进入单个小体,但只有13个轴突增粗、髓鞘化并在内核形成轴突终末,多余的芽则被清除。到第一个月末,小腿组的大多数小体已被重新支配。神经挤压伤后319个月,检查发现10%的小体如手术前一样为单轴突单终末;74%含有多个终末;16%仍为失神经支配。超过半数的多终末小体由一条在小体内分支的有髓轴突供应;其余的接受两条或三条有髓轴突,它们形成几个终末。终末随机分布,通常在内核板层之间的轴区。它们呈圆柱形,轮廓为椭圆形;较大的终末在其周边充满线粒体和微管,并含有神经丝核心。终末的侧突充满小泡,并有与正常小体一样的膜特化结构。再支配小体的终末平均数在神经挤压伤后3个月为4.07±0.37(标准误),618个月为3.26±0.49(标准误)。这种少量减少显然是再支配后期一些轴突终末偶尔发生退变的结果。因此,这些实验表明,大多数大鼠环层小体在神经损伤后被多个终末重新支配,并永久维持多终末支配。

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