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Selective decline of the metabolic competence of oversized synaptic mitochondria in the old monkey cerebellum.

机译:猴子小脑中超大突触线粒体代谢能力的选择性下降。

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摘要

The morphofunctional features of synaptic mitochondria, positive to the activity of cytochrome oxidase (COX), were investigated in the cerebellar cortex of adult and old monkeys (Macaca fascicularis) to assess the potential age-related changes in the energy metabolism occurring at the neuronal synaptic compartment. The following mitochondrial ultrastructural parameters-numeric density (Nv), volume density (Vv), average volume (V), and average length (Fmax)-were measured by computer-assisted morphometric methods. The ratio (R) area of the COX cytochemical precipitate/area of the mitochondrion was semi-automatically calculated and considered as an estimation of the mitochondrial metabolic competence (MMC), that is, the capacity of single organelles to provide adequate amounts of adenosinetriphosphate. No age-related significant differences were found in any of the ultrastructural parameters taken into account, whereas a significant decrease of R was observed in old animals. In these animals, the quartiledistribution of the COX-positive organelles, according to their respective cross-sectional area, showed no significant difference of R when comparing small (I quartile), medium-sized (II quartile), and large (III quartile) mitochondria, while a significant decrease of R was evident in oversized mitochondria (IV quartile). Although our data document an age-related preservation of the morphological features of COX-positive mitochondria in the monkey cerebellum, the significant decrease of R in old animals needs to be considered from the functional standpoint. Since COX is the terminal enzyme of the mitochondrial respiratory chain, the estimation of its activity is regarded as a reliable MMC index; thus our findings, by matching preferential cytochemistry and morphometry, support the hypothesis that the specific functional impairment of enlarged synaptic mitochondria may seriously affect information processing and cell-to-cell communication at synaptic junctional areas with aging.
机译:在成年和老猴子(猕猴)的小脑皮层中研究了对细胞色素氧化酶(COX)呈阳性的突触线粒体的形态功能特征,以评估神经元突触处能量代谢的潜在年龄相关变化。隔间。通过计算机辅助形态计量学方法测量以下线粒体超微结构参数-数值密度(Nv),体积密度(Vv),平均体积(V)和平均长度(Fmax)。半自动计算COX细胞化学沉淀物/线粒体面积的比(R)面积,并将其视为线粒体代谢能力(MMC)的估算值,即单个细胞器提供足够量的三磷酸腺苷的能力。在考虑的任何超微结构参数中均未发现与年龄相关的显着差异,而在老动物中观察到R的显着降低。在这些动物中,当比较小(I四分位数),中型(II四分位数)和大(III四分位数)时,根据它们各自的横截面积,COX阳性细胞器的四分位数分布没有显示出显着的R差异。线粒体,而在超大型线粒体(IV四分位数)中,R明显降低。尽管我们的数据记录了猴小脑中COX阳性线粒体形态特征的年龄相关性保存,但从功能的角度出发,需要考虑老年动物中R的显着降低。由于COX是线粒体呼吸链的末端酶,因此对其活性的估计被认为是可靠的MMC指标。因此,我们的研究结果通过匹配优先的细胞化学和形态学,支持以下假设:随着年龄的增长,突触线粒体的特定功能受损可能会严重影响信息处理和突触连接区域的细胞间通讯。

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