出生后豚鼠松果体“突触”带和球粒的发育。

J C Banks, A E Dalgleish, L Vollrath
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引用次数: 10

摘要

先前的研究表明,功能神秘的松果体“突触”带在结构上是一个异质的细胞器群,由严格感觉的棒状带、球型带和中间形式组成。由于在不同的实验条件下,带状和小球体的反应不同,因此在豚鼠出生后对这些细胞器进行了定性和定量研究。结果发现,松果体细胞在出生时高度分化,并包含所有三种形式的“突触”结构。带状和中间形态比球粒更丰富,在出生后第1天和第2天表现出显著的数量增加;这一增长之后是一个明显的低谷,第12天和第13天是第二个高峰,之后它们的数量在第20天下降到成虫的水平。球粒在出生时数量很少,并且没有显示出在出生后观察到的带状和中间形式的大量立即增加。相反,在第12天(绝对数量)或第15天(相对数量),数量稳步增加,随后在第20天下降到成虫水平。而在出生后早期(第1 ~ 3天),大多数松果体细胞以带状和中间形态为特征,随着年龄的增长,球状松果体细胞的数量增加。由于带状和球粒通常不存在于相同的松果体细胞中,因此本研究的结果被解释为带状和球粒是不同类型的松果体细胞的特征,在出生后表现出相反的数值发育。发展的中间形式表现得像缎带。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Postnatal development of "synaptic" ribbons and spherules in the guinea pig pineal gland.

Previous studies have shown that the functionally enigmatic pineal "synaptic" ribbons are structurally a heterogeneous group of organelles consisting of rodlike ribbons sensu stricto, spherules, and intermediate forms. As ribbons and spherules react differently under various experimental conditions, these organelles were studied qualitatively and quantitatively during the postnatal period in guinea pigs. It was found that the pinealocytes were highly differentiated at birth and contained all three forms of "synaptic" structures. Ribbons and intermediate forms were more abundant than spherules and exhibited a striking increase in number on postnatal days 1 and 2; this increase was followed by a distinct trough and by a second peak at days 12 and 13, after which their numbers declined to reach adult levels by day 20. The spherules were small in number at birth and did not show the large immediate postnatal increase observed for the ribbons and intermediate forms. Instead there was a steady numerical increase up to day 12 (absolute number) or day 15 (relative numbers), followed by a decrease to adult level by day 20. Whereas during the early postnatal period (days 1 to 3) the majority of pinealocytes were characterized by ribbons and intermediate forms, with increasing age spherule-bearing pinealocytes increased in number. As ribbons and spherules were usually not found in the same pinealocyte, the present findings are interpreted to mean that ribbons and spherules characterize different types of pinealocytes showing an inverse numerical development postnatally. Developmentally intermediate forms behave like ribbons.

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