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利用氚标记的2-脱氧葡萄糖对局部脑葡萄糖代谢率进行定量测量。

Quantitative measurement of local cerebral metabolic rate for glucose utilizing tritiated 2-deoxyglucose.

作者信息

Alexander G M, Schwartzman R J, Bell R D, Yu J, Renthal A

出版信息

Brain Res. 1981 Oct 26;223(1):59-67. doi: 10.1016/0006-8993(81)90806-4.

Abstract

The [14C]2-deoxyglucose (2-DG) technique has been widely utilized for quantitative measurement of local cerebral metabolic for glucose (1CMRG) in animals. The technique as presently used is limited by the energy of 14C beta-particles, which can travel relatively great distances in tissue. This results in limited audioradiographic resolution and in computed 14C concentrations which are a function of tissue section thickness. [3H]2-DG has less energetic beta-particles; hence, autoradiographs have better resolution and optical densities are independent of tissue thickness for sections greater than 5 micrometer. We have developed a method for quantitation of 1CMRG in rats using [3H]2-DG and a newly developed ultrasensitive X-ray film. Autoradiographic tissue standards were prepared by injecting rats with [3H]2-DG and assaying micro-samples of brain for 3H concentration. Ten rats were used in this study. Five rats received [3H]2-DG (300 muCi/100 g) and 5 rats received [14C]2-DG (7.5 muCi/100 g). The mean 1CMRG values for selected areas of the central nervous system demonstrated no significant difference (P greater than 0.05) between the [14C]2-DG and the [3H]2-DG groups. Values for 1CMRG from the [3H]2-DG group showed no variation attributable to inadequate microtome precision. The improved resolution obtained by utilizing [3H]2-DG is especially evident where gray matter (high 1CMRG) is immediately adjacent to white matter (low 1CMRG).

摘要

[14C]2-脱氧葡萄糖(2-DG)技术已被广泛用于定量测量动物局部脑葡萄糖代谢率(1CMRG)。目前使用的该技术受到14Cβ粒子能量的限制,β粒子在组织中能传播相对较长的距离。这导致放射自显影分辨率有限,且计算出的14C浓度是组织切片厚度的函数。[3H]2-DG的β粒子能量较低;因此,对于厚度大于5微米的切片,放射自显影片具有更好的分辨率,且光密度与组织厚度无关。我们已经开发出一种使用[3H]2-DG和新开发的超灵敏X射线胶片定量大鼠1CMRG的方法。通过给大鼠注射[3H]2-DG并测定脑微量样本的3H浓度来制备放射自显影组织标准品。本研究使用了10只大鼠。5只大鼠接受[3H]2-DG(300μCi/100 g),5只大鼠接受[14C]2-DG(7.5μCi/100 g)。中枢神经系统选定区域的平均1CMRG值在[14C]2-DG组和[3H]2-DG组之间无显著差异(P大于0.05)。[3H]2-DG组的1CMRG值未显示出因切片机精度不足而导致的变化。在灰质(高1CMRG)紧邻白质(低1CMRG)的情况下,使用[3H]2-DG获得的分辨率提高尤为明显。

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