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有组织的哺乳动物中枢神经系统组织培养中颗粒状神经浆流动的速度测量

Velocity measurements of particulate neuroplasmic flow in organized mammalian CNS tissue cultures.

作者信息

Leestma J E

出版信息

J Neurobiol. 1976 Mar;7(2):173-83. doi: 10.1002/neu.480070209.

Abstract

The movements of spherical particles in the range of 0.3 to 0.8 mum diameter within neurities of cultured embryonic mouse spinal cord fragments were observed and recorded by means of Nomarski optics and time-lapse photocinematography at high power. Particulate movements were measured by projecting the motion pictures onto a calibrated screen and recording the distances moved with time of linearly moving particles and making note of the direction (toward or away from the neuron soma) of movement. In all, 128 particles were measured in six cultures. These measurements were taken away from the neuron soma near the periphery of the neurites. Eight-three particles were noted to be moving toward the neuron at a mean velocity of 1.03 +/- 0.38 (SD) mum/sec while 45 anterograde moving particles were noted to move at 1.07 +/- 0.62 (SD) mum/sec. Statistical analysis of these veolcities revealed no significant difference between them. Particles which were elongated and probably represented mitochondria moved more sluggishly and could not be measured accurately by the techniques employed. It appeared the spherical particles moving in a retrograde direction originated at the neurite tip apparently by pinocytosis. There was a suggestion that anterograde flow and retrograde flow may have been affected unequally by factors which develop in the observation chamber over a period of 2 hr or more. The most likely factor responsible was probably hypoxia.

摘要

运用诺马斯基光学显微镜和高倍延时摄影技术,对培养的胚胎小鼠脊髓片段神经突内直径在0.3至0.8微米范围内的球形颗粒运动进行了观察和记录。通过将动态影片投射到校准屏幕上,并记录直线运动颗粒随时间移动的距离,同时记录其运动方向(朝向或远离神经元胞体),来测量颗粒的运动。总共在六种培养物中测量了128个颗粒。这些测量是在神经突外围靠近神经元胞体的位置进行的。发现83个颗粒以平均速度1.03±0.38(标准差)微米/秒向神经元移动,而45个顺行移动的颗粒以1.07±0.62(标准差)微米/秒的速度移动。对这些速度的统计分析表明它们之间没有显著差异。那些细长的、可能代表线粒体的颗粒移动较为缓慢,无法用所采用的技术准确测量。看起来逆行移动的球形颗粒显然是通过胞饮作用起源于神经突尖端。有人提出,顺行流和逆行流可能在观察室中2小时或更长时间内出现的因素影响下受到了不同程度的影响。最可能的因素可能是缺氧。

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