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Permeability of ergot alkaloids across the blood-brain barrier in vitro and influence on the barrier integrity.

机译:麦角生物碱在体外穿过血脑屏障的渗透性及其对屏障完整性的影响。

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Scope. Ergot alkaloids are secondary metabolites of Claviceps spp. and they have been in the focus of research for many years. Experiments focusing on ergotamine as a former migraine drug referring to the ability to reach the brain revealed controversial results. The question to which extent ergot alkaloids are able to cross the blood-brain barrier is still not answered. Methods and results. In order to answer this question we have studied the ability of ergot alkaloids to penetrate the blood-brain barrier in a well established in vitro model system using primary porcine brain endothelial cells. It could clearly be demonstrated that ergot alkaloids are able to cross the blood-brain barrier in high quantities in only a few hours. We could further identify an active transport for ergometrine as a substrate for the BCRP/ABCG2 transporter. Investigations concerning barrier integrity properties have identified ergocristinine as a potent substance to accumulate in these cells ultimately leading to a weakened barrier function. Conclusion. For the first time we could show that the so far as biologically inactive described 8-(S) isomers of ergot alkaloids seem to have an influence on barrier integrity underlining the necessity for a risk assessment of ergot alkaloids in food and feed.
机译:范围。麦角生物碱是克拉维氏菌的次生代谢产物。他们多年来一直是研究的重点。围绕麦角胺作为一种偏头痛药物的实验涉及到进入大脑的能力,这一实验发现了有争议的结果。麦角生物碱能够在多大程度上穿过血脑屏障的问题仍未得到解答。方法和结果。为了回答这个问题,我们已经在使用原代猪脑内皮细胞的成熟模型系统中研究了麦角生物碱穿透血脑屏障的能力。可以清楚地证明麦角生物碱能够在短短几个小时内大量通过血脑屏障。我们可以进一步确定麦角新碱的主动转运蛋白作为BCRP / ABCG2转运蛋白的底物。有关屏障完整性特性的研究已确定麦角新碱为有效物质,可在这些细胞中蓄积,最终导致屏障功能减弱。结论。首次我们可以证明,到目前为止,麦角生物碱的生物无活性的8-( S )异构体似乎对屏障的完整性有影响,强调了对麦角生物碱进行风险评估的必要性。食物和饲料。

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