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实验性脑肿瘤的脉管系统。第4部分。血管通透性的定量分析。

The vasculature of experimental brain tumours. Part 4. The quantification of vascular permeability.

作者信息

Deane B R, Greenwood J, Lantos P L, Pratt O E

出版信息

J Neurol Sci. 1984 Jul;65(1):59-68. doi: 10.1016/0022-510x(84)90067-4.

Abstract

In order to quantify changes in vessel permeability seen previously in experimental astrocytomas produced in rats by an intracerebral injection of cultured neoplastic glial cells, the flux of mannitol across the vascular endothelium from the blood into the normal brain or tumour tissue was measured using a specially devised technique by which a steady level of radioactively labelled mannitol can be achieved rapidly and maintained in the bloodstream. This is done by a continuous injection given at a rate which is adjusted by a predetermined programme so as to replace the tracer at the rate at which it has been found to leave the circulation in previous experiments. In separate experiments on both tumour-bearing and control rats steady levels of the tracer were maintained in the circulation for progressively longer times of up to 30 min. The kinetic parameters of the process gave estimates for the apparent transfer constant of mannitol across the vascular endothelium and of the size of the extravascular extracellular mannitol space in the tumours. The apparent transfer constant for the movement of mannitol across the blood-brain barrier was increased more than a hundred-fold in the region of the tumour compared to the values for the brain of control rats or that of tumour-bearing rats remote from the tumour site. The extracellular extravascular space within the tumour was estimated to be 22%, somewhat larger than accepted normal values.

摘要

为了量化先前在通过脑内注射培养的肿瘤性神经胶质细胞在大鼠中产生的实验性星形细胞瘤中观察到的血管通透性变化,使用一种专门设计的技术测量了甘露醇从血液穿过血管内皮进入正常脑或肿瘤组织的通量,通过该技术可以快速实现并在血流中维持放射性标记甘露醇的稳定水平。这通过以预定程序调整的速率进行连续注射来完成,以便以在先前实验中发现的示踪剂离开循环的速率替换示踪剂。在对荷瘤大鼠和对照大鼠进行的单独实验中,示踪剂在循环中的稳定水平维持的时间逐渐延长,最长可达30分钟。该过程的动力学参数给出了甘露醇穿过血管内皮的表观转运常数以及肿瘤血管外细胞外甘露醇空间大小的估计值。与对照大鼠脑或远离肿瘤部位的荷瘤大鼠脑的值相比,甘露醇穿过血脑屏障的表观转运常数在肿瘤区域增加了一百多倍。肿瘤内的细胞外血管外空间估计为22%,略大于公认的正常值。

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