Gear A R, Bednarek J M
J Cell Biol. 1972 Aug;54(2):325-45. doi: 10.1083/jcb.54.2.325.
Resistive particle counting has been developed for the accurate sizing and counting of mitochondria in solution. The normal detection limit with a 30 micro aperture is 0.48 micro diameter, or 0.056 micro(3) particle volume The mean volume of rat liver mitochondria was 0.42 micro(3) or 0.93 micro in diameter. The average value for numbers of particles per milligram of mitochondrial protein was 4.3 x 10(3), and per gram of rat liver was about 11 x 10(10). These values compare satisfactorily with those derived by light microscopy and electron microscopy. The mean volume for mitochondria from rat heart was 0 60 micro(3) and from rat kidney cortex, 0.23 micro(3). These values agree within 15% of those determined by electron microscopy of whole tissue. Mitochondrial fragility and contaminating subcellular organelles were shown to have little influence on the experimentally determined size distributions The technique may be applied to rapid swelling studies, as well as to estimations of the number and size of mitochondria from animals under different conditions such as liver regeneration and hormonal, pathological, or drug-induced states Mitochondrial DNA, RNA, cytochrome c-oxidase, cytochrome (a / a(3)), and iron were nearly constant per particle over large differences in particle size. Such data may be particularly valuable for biogenesis studies and support the hypothesis that the net amount per particle of certain mitochondrial constituents remains constant during mitochondrial growth and enlargement
电阻颗粒计数技术已被开发用于精确测定溶液中线粒体的大小和数量。使用30微米孔径时的正常检测限为直径0.48微米,或0.056立方微米的颗粒体积。大鼠肝脏线粒体的平均体积为0.42立方微米或直径0.93微米。每毫克线粒体蛋白的颗粒数平均值为4.3×10³,每克大鼠肝脏中的颗粒数约为11×10¹⁰。这些值与通过光学显微镜和电子显微镜得出的值相比令人满意。大鼠心脏线粒体的平均体积为0.60立方微米,大鼠肾皮质线粒体的平均体积为0.23立方微米。这些值与通过全组织电子显微镜测定的值相差在15%以内。线粒体的易碎性和污染的亚细胞器对实验确定的大小分布影响很小。该技术可应用于快速肿胀研究,以及估算不同条件下(如肝脏再生以及激素、病理或药物诱导状态)动物线粒体的数量和大小。线粒体DNA、RNA、细胞色素c氧化酶、细胞色素(a/a₃)和铁在颗粒大小差异很大的情况下,每个颗粒的含量几乎恒定。这些数据对于生物发生研究可能特别有价值,并支持这样一种假设,即在 mitochondrial growth and enlargement过程中,某些线粒体成分的每个颗粒的净含量保持恒定。 (注:原文中“mitochondrial growth and enlargement”前面的“mitochondrial”表述似乎有误,推测可能是“mitochondrial growth and division”,即线粒体生长和分裂)