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神经兴奋性贝类毒素软骨藻酸的血脑屏障渗透转运常数。

Transfer constants for blood-brain barrier permeation of the neuroexcitatory shellfish toxin, domoic acid.

作者信息

Preston E, Hynie I

机构信息

Division of Biological Sciences, National Research Council of Canada, Ottawa, Ontario.

出版信息

Can J Neurol Sci. 1991 Feb;18(1):39-44. doi: 10.1017/s0317167100031279.

Abstract

The cause of the toxic mussel poisoning episode in 1987 was traced to a plankton-produced excitotoxin, domoic acid. Experiments were undertaken to quantitate the degree to which blood-borne domoic acid can permeate the microvasculature to enter the brain. Pentobarbital-anesthetized, adult rats received an i.v. injection of 3H-domoic acid which was permitted to circulate for 3-60 min. Transfer constants (Ki) describing blood-to-brain diffusion of tracer were calculated from analysis of the relationship between brain vs plasma radioactivity with time. Mean values (mL.g-1.s-1 X 10(6] for permeation into 7 brain regions (n = 10 rats) ranged from 1.60 +/- 0.13 (SE) to 1.86 +/- 0.33 (cortex, pons-medulla respectively), and carrier transport or regional selectivity in uptake were not evident. Nephrectomy prior to domoic acid injection resulted in the elevation of circulating plasma tracer level and brain uptake. The Ki values are comparable to those for other polar compounds such as sucrose, and indicate that the blood-brain barrier greatly limits the amount of toxin that enters the brain. Together with absorbed dosage, integrity of the cerebrovascular barrier and normal kidney function are important to the outcome of accidentally ingesting domoic acid.

摘要

1987年有毒贻贝中毒事件的起因被追溯到一种由浮游生物产生的兴奋性毒素——软骨藻酸。开展了实验以定量血源性软骨藻酸透过微血管进入大脑的程度。用戊巴比妥麻醉的成年大鼠接受静脉注射3H-软骨藻酸,使其循环3至60分钟。通过分析脑放射性与血浆放射性随时间的关系,计算出描述示踪剂血脑扩散的转运常数(Ki)。7个脑区(n = 10只大鼠)的渗透平均值(mL·g-1·s-1×10(6])范围为1.60±0.13(标准误)至1.86±0.33(分别为皮质、脑桥-延髓),且未发现载体转运或摄取的区域选择性。在注射软骨藻酸之前进行肾切除术会导致循环血浆示踪剂水平和脑摄取量升高。Ki值与蔗糖等其他极性化合物的Ki值相当,表明血脑屏障极大地限制了进入大脑的毒素量。连同吸收剂量一起,脑血管屏障的完整性和正常肾功能对于意外摄入软骨藻酸的后果很重要。

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