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Role of L-Type Amino Acid Transporter 1 at the Inner Blood-Retinal Barrier in the Blood-to-Retina Transport of Gabapentin

机译:L型氨基酸转运蛋白1在血腥素内血尿视网膜屏障中的作用

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摘要

Gabapentin is an antiseizure drug that is known to also have beneficial effects on the retinal cells. To use gabapentin in retinal pharmacotherapy, it is critical to understand gabapentin distribution in the retina. The purpose of this study was to clarify the kinetics of gabapentin influx transport across the inner and outer blood-retinal barrier (BRB), which regulates the exchange of compounds/drugs between the circulating blood and the retina. In vivo blood-to-retina gabapentin transfer was evaluated by the rat carotid artery injection technique. In addition, gabapentin transport was examined using in vitro models of the inner (TR-iBRB2 cells) and outer BRB (RPE-J cells). The in vivo [H-3]gabapentin transfer to the rat retina across the BRB was significantly reduced in the presence of unlabeled gabapentin, suggesting transporter-mediated blood-to-retina distribution of gabapentin. Substrates of the Na+-independent l-type amino acid transporter 1 (LAT1), such as 2-aminobicyclo[2.2.1]heptane-2-carboxylic acid (BCH), also significantly inhibited the in vivo [H-3]gabapentin transfer. [3H]Gabapentin uptake in TR-iBRB2 and RPE-J cells exhibited Na+-independent and saturable kinetics with a Km of 735 and 507 mu M, respectively. Regarding the effect of various transporter substrates/inhibitors on gabapentin transport in these cells, LAT1 substrates significantly inhibited [3H]gabapentin uptake in TR-iBRB2 and RPE-J cells. In addition, preloaded [H-3]gabapentin release from TR-iBRB2 and RPE-J cells was trans-stimulated by LAT1 substrates through the obligatory exchange mechanism as LAT1. Immunoblot analysis indicates the protein expression of LAT1 in TR-iBRB2 and RPE-J cells. These results imply that LAT1 at the inner and outer BRB takes part in gabapentin transport between the circulating blood and retina. Moreover, treatment of LAT1-targeted small interfering RNA to TR-iBRB2 cells significantly reduced both the level of LAT1 protein expression and [H-3]gabapentin uptake activities in TR-iBRB2 cells. In conclusion, data from the present study indicate that LAT1 at the inner BRB is involved in retinal gabapentin transfer, and also suggest that LAT1 mediates gabapentin transport in the RPE cells.
机译:加巴亨坦是一种抗炎药,已知对视网膜细胞具有有益作用。为了在视网膜药物疗法中使用加巴亨坦素,了解甘地蛋白在视网膜中的分布至关重要。本研究的目的是阐明在内部和外血压屏障(BRB)上的加巴彭素流入输送的动力学,其调节循环血液和视网膜之间的化合物/药物的交换。通过大鼠颈动脉注射技术评估体内血对血红蛋白素转移。此外,使用内(Tr-IBRB2细胞)和外部BRB(RPE-J细胞)的体外模型来检查加巴亨坦转运。在未标记的加巴亨坦素存在下,体内[H-3]在体内转移到BRB的大鼠视网膜的转移显着降低,表明转运蛋白介导的加巴普丁血对视网膜分布。 Na + -Independent L型氨基酸转运蛋白1(LAT1)的底物,例如2-氨基双环[2.2.1]庚烷-2-羧酸(BCH),也显着抑制体内[H-3]加巴亨坦转移。 [3H] TR-IBRB2和RPE-J细胞中的加布普坦素摄取表现出Na + -Independent和饱和动力学,分别具有735和507μm的km。关于各种转运物衬底/抑制剂对这些细胞中加布普坦素转运的影响,LAT1基质在TR-IBRB2和RPE-J细胞中显着抑制[3H]加布普蛋白摄取。此外,通过LAT1基板通过LAT1基底通过LAT1的义务交换机制进行预加载的[H-3]加布普坦脲释放。免疫斑分析表明,TR-IBRB2和RPE-J细胞中LAT1的蛋白质表达。这些结果意味着在内部和外部BRB处的LAT1参与循环血液和视网膜之间的加布峰运输。此外,对TR-IBRB2细胞的LAT1-靶向小干扰RNA的治疗显着降低了TR-IBRB2细胞中的LAT1蛋白表达水平和[H-3]加吸收活性。总之,来自本研究的数据表明,内部BRB的LAT1参与视网膜加巴文素转移,并且还表明LAT1介导加巴彭在RPE细胞中的转运。

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