Bertoni-Freddari C, Fattoretti P, Caselli U, Paoloni R, Meier-Ruge W
Neurobiology of Aging Laboratory, N. Masera INRCA Research Department, Ancona, Italy.
Mech Ageing Dev. 1996 Sep 9;90(1):53-62. doi: 10.1016/0047-6374(96)01753-8.
A computer-assisted morphometric study has been carried out on the ultrastructure of perikaryal CA1 pyramidal cell mitochondria positive to the copper ferricyanide cytochemical reaction for succinic dehydrogenase (SDH) in rats of 3, 12 and 23 months of age. The cytoplasmic volume fraction occupied by the positive mitochondria (Volume density: Vv), the number of organelles/micron 3 of CA1 pyramidal cell cytoplasm (Numerical density: Nv) and the average mitochondrial volume (V) were automatically calculated by means of computer-assisted morphometry. Vv was significantly decreased in 23-month-old animals versus the other age groups. Nv was unchanged between 3 and 12 months of age, but was decreased to a significant extent in old animals. V did not undergo significant changes in the three age groups taken into account. In the old animals the percent of organelles smaller than 0.16 micron 3 is above 20%, while in the young and adult groups the same size of mitochondria accounts for 7 and 3%, respectively. Thus, a reduction in the number of medium sized organelles appears to be responsible for the decrease in Vv due to age. Since SDH activity is known to support maximum rates of respiration, quantitative estimation of the active mitochondria provides information on the metabolic competence of the cells investigated when energy demand is high. In this context, our present findings document that a significant impairment in the efficiency to match actual energy provisions occurs in old CA1 pyramidal cells.
对3个月、12个月和23个月大的大鼠中,经亚铁氰化铜细胞化学反应检测琥珀酸脱氢酶(SDH)呈阳性的CA1锥体细胞线粒体超微结构进行了计算机辅助形态计量学研究。通过计算机辅助形态计量学自动计算出阳性线粒体所占的细胞质体积分数(体积密度:Vv)、CA1锥体细胞细胞质每立方微米的细胞器数量(数量密度:Nv)以及线粒体平均体积(V)。与其他年龄组相比,23个月大的动物Vv显著降低。Nv在3个月和12个月大时没有变化,但在老年动物中显著降低。在所考虑的三个年龄组中,V没有显著变化。在老年动物中,小于0.16立方微米的细胞器百分比高于20%,而在年轻和成年组中,相同大小的线粒体分别占7%和3%。因此,中等大小细胞器数量的减少似乎是导致Vv随年龄下降的原因。由于已知SDH活性支持最大呼吸速率,因此对活性线粒体的定量估计提供了在能量需求高时所研究细胞代谢能力的信息。在这种情况下,我们目前的研究结果表明,老年CA1锥体细胞在匹配实际能量供应的效率方面存在显著损害。