Blasberg R G, Patlak C S, Fenstermacher J D
J Cereb Blood Flow Metab. 1983 Jun;3(2):215-25. doi: 10.1038/jcbfm.1983.29.
Reliable blood-brain transfer constants can be determined from data obtained in single-time experiments (i.e., a single experimental time for tissue sampling). The accuracy of such measurements depends on factors such as the test molecule used and the experimental time chosen; therefore, the selection of optimal experimental conditions is important. In this presentation, a model of transport across the blood--brain barrier (BBB) was developed and used to determine appropriate experimental protocols for single-time experiments. Transfer numbers derived from published data with alpha-aminoisobutyric acid (AIB; a compound of low BBB permeability that is readily taken up by brain cells) and diethylenetriaminepentaacetic acid (DTPA; a compound of very low BBB permeability that is not taken up by brain cells) were inserted into the model and apparent blood-to-brain transfer constants (K1) were obtained. In addition, the two basic sets of transfer numbers were altered to mimic various experimental and pathological changes in blood--brain transport. The results of this analysis indicate that moderate to large transfer rates across the BBB (0.01-1.0 ml g-1 min-1) are more easily and reliably measured by AIB-like compounds. In contrast, compounds like DTPA are better test-molecules for measuring small changes in the BBB transfer rate (0.0001-0.001 ml g-1 min-1), provided an appropriate experimental time is chosen.
可靠的血脑转运常数可根据单次实验(即组织采样的单个实验时间)获得的数据来确定。此类测量的准确性取决于所用测试分子和所选实验时间等因素;因此,选择最佳实验条件很重要。在本报告中,开发了一种血脑屏障(BBB)转运模型,并用于确定单次实验的合适实验方案。将从已发表的关于α-氨基异丁酸(AIB;一种BBB通透性低但易被脑细胞摄取的化合物)和二乙烯三胺五乙酸(DTPA;一种BBB通透性极低且不被脑细胞摄取的化合物)的数据中得出的转运数代入模型,获得了表观血脑转运常数(K1)。此外,改变这两组基本转运数以模拟血脑转运中的各种实验和病理变化。该分析结果表明,BBB上中等至较大的转运速率(0.01 - 1.0 ml g-1 min-1)用类似AIB的化合物更容易且更可靠地测量。相比之下,如果选择了合适的实验时间,像DTPA这样的化合物是测量BBB转运速率微小变化(0.0001 - 0.001 ml g-1 min-1)的更好测试分子。