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通过同时测量多细胞球体中的氧张力和标记密度来校准米索硝唑标记。

Calibration of misonidazole labeling by simultaneous measurement of oxygen tension and labeling density in multicellular spheroids.

作者信息

Gross M W, Karbach U, Groebe K, Franko A J, Mueller-Klieser W

机构信息

Institute of Physiology and Pathophysiology, Johannes Gutenberg-University of Mainz, Germany.

出版信息

Int J Cancer. 1995 May 16;61(4):567-73. doi: 10.1002/ijc.2910610422.

Abstract

To correlate misonidazole concentrations and oxygen pressures (Po2) at identical locations within EMT6/Ro multi-cell spheroids (mean diameters +/- SD: 867 +/- 20 microns), Po2 measurements were performed with oxygen-sensitive microelectrodes during incubation of these spheroids with tritiated misonidazole (10 mg/I; 445 microCi/mg). In each individual spheroid, Po2 profiles were correlated with the corresponding spatial distribution of misonidazole as quantified by conventional autoradiography and grain counting. To compare the oxygenation status of spheroids in the measuring chamber with that of spheroids in spinner culture, misonidazole labeling was performed in both environments following the same protocol. All experiments were conducted in 20% oxygen and BME or in 5% oxygen and DMEM to obtain spheroids with different degrees of oxygenation. Labeled misonidazole was fairly evenly distributed in the outer, better oxygenated regions of EMT6 spheroids. In contrast, there was an accumulation of the labeled substance near central necrosis where low oxygen tensions were measured. Grain densities were similar at corresponding oxygen pressures under both environmental conditions. Except for some scatter, grain density as a function of oxygen pressure showed little variation in the Po2 range of 20-60 mm Hg, but exhibited a steep increase below 10 mm Hg. The findings imply that a substantial rise in local misonidazole labeling indicates a metabolically active tissue region at low Po2 that is not necessarily identical with the radiobiologically hypoxic cell fraction. A comparison of the labeling densities of spheroids in spinner flasks and in the Po2 measuring chamber indicates that oxygenation of spheroids is better in rotation culture than during microelectrode measurements.

摘要

为了关联EMT6/Ro多细胞球体(平均直径±标准差:867±20微米)内相同位置的米索硝唑浓度和氧分压(Po2),在用氚标记的米索硝唑(10mg/I;445微居里/毫克)孵育这些球体的过程中,使用氧敏感微电极进行Po2测量。在每个单独的球体中,Po2分布与通过传统放射自显影和颗粒计数定量的米索硝唑相应空间分布相关。为了比较测量室中球体的氧合状态与旋转培养中球体的氧合状态,按照相同方案在两种环境中进行米索硝唑标记。所有实验均在20%氧气和BME中或在5%氧气和DMEM中进行,以获得不同氧合程度的球体。标记的米索硝唑在EMT6球体的外部、氧合较好的区域分布相当均匀。相比之下,在测量到低氧张力的中央坏死附近有标记物质的积累。在两种环境条件下,相应氧压下的颗粒密度相似。除了一些散点外,颗粒密度作为氧压的函数在20 - 60毫米汞柱的Po2范围内变化很小,但在低于10毫米汞柱时急剧增加。这些发现表明,局部米索硝唑标记的大幅增加表明在低Po2下有一个代谢活跃的组织区域,该区域不一定与放射生物学上的缺氧细胞部分相同。旋转瓶中球体与Po2测量室中球体标记密度的比较表明,旋转培养中球体的氧合比微电极测量期间更好。

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