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Involvement of a Novel Organic Cation Transporter in Paeonol Transport Across the Blood-Brain Barrier

机译:新型有机阳离子转运蛋白参与跨血脑屏障的丹皮酚转运

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摘要

Paeonol has neuroprotective function, which could be useful for improving central nervous system disorder. The purpose of this study was to characterize the functional mechanism involved in brain transport of paeonol through blood-brain barrier (BBB). Brain transport of paeonol was characterized by internal carotid artery perfusion (ICAP), carotid artery single injection technique (brain uptake index, BUI) and intravenous (IV) injection technique in vivo. The transport mechanism of paeonol was examined using conditionally immortalized rat brain capillary endothelial cell line (TR-BBB) as an in vitro model of BBB. Brain volume of distribution (VD) of [3H]paeonol in rat brain was about 6-fold higher than that of [14C]sucrose, the vascular space marker of BBB. The uptake of [3H]paeonol was concentration-dependent. Brain volume of distribution of paeonol and BUI as in vivo and inhibition of analog as in vitro studies presented significant reduction effect in the presence of unlabeled lipophilic compounds such as paeonol, imperatorin, diphenhydramine, pyrilamine, tramadol and ALC during the uptake of [3H]paeonol. In addition, the uptake significantly decreased and increased at the acidic and alkaline pH in both extracellular and intracellular study, respectively. In the presence of metabolic inhibitor, the uptake reduced significantly but not affected by sodium free or membrane potential disruption. Similarly, paeonol uptake was not affected on OCTN2 or rPMAT siRNA transfection BBB cells. Interestingly. Paeonol is actively transported from the blood to brain across the BBB by a carrier mediated transporter system.
机译:丹皮酚具有神经保护功能,可能有助于改善中枢神经系统疾病。这项研究的目的是表征通过血脑屏障(BBB)进行丹皮酚脑转运的功能机制。丹皮酚的脑转运以体内颈内动脉灌注(ICAP),颈动脉单次注射技术(脑摄取指数,BUI)和静脉内(IV)注射技术为特征。使用条件永生的大鼠脑毛细血管内皮细胞系(TR-BBB)作为BBB的体外模型检查了丹皮酚的转运机制。 [ 3 H]丹皮酚在大鼠脑中的分布体积(VD)约为[ 14 C]蔗糖(血管壁标记物)的6倍。 BBB。 [ 3 H]丹皮酚的吸收呈浓度依赖性。体内研究的丹皮酚和BUI的脑体积分布以及体外研究对类似物的抑制作用表明,在摄取[ 3 H]丹皮酚。另外,在细胞外和细胞内研究中,在酸性和碱性pH下摄取均显着降低和增加。在存在代谢抑制剂的情况下,摄取显着降低,但不受游离钠或膜电位破坏的影响。同样,在OCTN2或rPMAT siRNA转染的BBB细胞上,丹皮酚的摄入量也不受影响。有趣的是。丹皮酚通过载体介导的转运系统从血液中通过BBB主动转运到大脑。

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