脊髓神经节的神经周围胶质组织。兔从幼年到极高龄的数量变化。

Anatomy and Embryology Pub Date : 2006-10-01 Epub Date: 2006-06-23 DOI:10.1007/s00429-006-0097-x
C Martinelli, P Sartori, S De Palo, M Ledda, E Pannese
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引用次数: 11

摘要

采用形态计量学方法测定了幼兔、成年兔、老年兔和特高龄兔脊髓神经节神经细胞体和周围卫星细胞鞘的体积。随着年龄的增长,神经细胞体的平均体积逐渐增大;这可能与所研究的兔子随着年龄的增长体型增加有关。卫星细胞鞘的平均体积在幼龄、成年和老年动物中差异不显著,但在非常年老的动物中明显较小。卫星细胞鞘体积的这种显著减少是病理过程的结果,这是极不可能的。卫星细胞鞘与相关神经细胞体体积比的平均值在幼龄和成年动物中差异不显著,但在老年和极老年动物中明显较小。这一比例在非常年老的动物中尤其低。我们的分析表明,在每个年龄组中,卫星细胞鞘的体积与相关神经细胞体的体积呈线性相关。这一结果表明,在兔脊髓神经节中,神经组织和神经胶质组织之间的定量关系在整个生命过程中受到严格控制。这表明神经节神经元释放信号来影响和控制其相关胶质组织的体积。由于卫星细胞对其周围的神经元具有重要的支持作用,因此极高龄时神经元周围鞘体积的显著减少很可能伴随着这些作用的减少,从而对神经元活动产生负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The perineuronal glial tissue of spinal ganglia. Quantitative changes in the rabbit from youth to extremely advanced age.

The volumes of the nerve cell bodies and those of the enveloping satellite cell sheaths from spinal ganglia were determined by morphometric methods applied to electron micrographs in young, adult, old and very old rabbits. The mean volume of the nerve cell bodies increased progressively with age; this is probably related to the increase with age of the body size of the rabbits studied. The mean volume of the satellite cell sheaths did not differ significantly in young, adult and old animals, but was significantly smaller in very old animals. It is extremely unlikely that this marked reduction in the volume of the satellite cell sheath is the result of a pathological process. The mean value of the volume ratio between the satellite cell sheaths and the related nerve cell bodies did not differ significantly in young and adult animals, but was significantly smaller in old and very old animals. This ratio was particularly low in very old animals. Our analysis showed that in each age group the volume of the satellite cell sheath is linearly related to the volume of the related nerve cell body. This result suggests that in rabbit spinal ganglia the quantitative relations between glial and nervous tissue are tightly controlled throughout life. It is suggested that ganglionic neurons release signals to influence and control the volume of their associated glial tissue. Since satellite cells have important support roles for the neurons they surround, it is likely that the marked reduction in the volume of perineuronal sheaths in the extremely advanced age is accompanied by a reduction of those roles, with negative consequences for neuronal activity.

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