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甘氨酸在内眼血视网膜屏障中的转运特征。

Characteristics of glycine transport across the inner blood-retinal barrier.

机构信息

Department of Pharmaceutics, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, 2630 Sugitani, Toyama 930-0194, Japan.

出版信息

Neurochem Int. 2009 Dec;55(8):789-95. doi: 10.1016/j.neuint.2009.08.001. Epub 2009 Aug 8.


DOI:10.1016/j.neuint.2009.08.001
PMID:19666071
Abstract

Although glycine plays a pivotal role in neurotransmission and neuromodulation in the retina and is present in high concentration in the retina, the source of retinal glycine is still unclear. The purpose of the present study was to investigate glycine transport across the inner blood-retinal barrier (inner BRB). [(14)C]Glycine transport at the inner BRB was characterized using a conditionally immortalized rat retinal capillary endothelial cell line (TR-iBRB2 cells) as an in vitro model of the inner BRB and in vivo vascular injection techniques. [(14)C]Glycine uptake by TR-iBRB2 cells was Na(+)- and Cl(-)-dependent, and concentration-dependent with Michaelis-Menten constants of 55.4 microM and 8.02 mM, and inhibited by glycine transporter 1 (GlyT1) and system A inhibitors. These uptake studies suggest that GlyT1 and system A are involved in [(14)C]glycine uptake by TR-iBRB2 cells. RT-PCR analysis demonstrated that GlyT1 and system A (encoding ATA 1 and ATA2) mRNA are expressed in TR-iBRB2 cells. An in vivo study suggested that [(14)C]glycine is transported from blood to the retina whereas [(14)C]alpha-methylaminoisobutyric acid, a selective substrate for system A, is not. In conclusion, GlyT1 most likely mediates glycine transport at the inner BRB and is expected to play an important role in regulating the glycine concentration in the neural retina.

摘要

虽然甘氨酸在视网膜的神经传递和神经调节中起着关键作用,并且在视网膜中浓度很高,但视网膜甘氨酸的来源仍不清楚。本研究的目的是研究甘氨酸在视网膜内血脑屏障(内 BRB)中的转运。[(14)C]甘氨酸转运在内 BRB 中采用条件永生化大鼠视网膜毛细血管内皮细胞系(TR-iBRB2 细胞)作为内 BRB 的体外模型和体内血管内注射技术进行了表征。[(14)C]甘氨酸通过 TR-iBRB2 细胞的摄取是 Na(+)和 Cl(-)依赖性的,并且与 Michaelis-Menten 常数为 55.4μM 和 8.02mM 呈浓度依赖性,并且被甘氨酸转运蛋白 1(GlyT1)和系统 A 抑制剂抑制。这些摄取研究表明 GlyT1 和系统 A 参与了 TR-iBRB2 细胞中[(14)C]甘氨酸的摄取。RT-PCR 分析表明 GlyT1 和系统 A(编码 ATA1 和 ATA2)mRNA 在 TR-iBRB2 细胞中表达。一项体内研究表明,[(14)C]甘氨酸从血液转运到视网膜,而[(14)C]alpha-甲基氨基异丁酸,一种系统 A 的选择性底物,不能转运。总之,GlyT1 很可能介导内 BRB 中的甘氨酸转运,预计在调节神经视网膜中甘氨酸浓度方面发挥重要作用。

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引用本文的文献

[1]
Some Operational Characteristics of Glycine Release in Rat Retina: The Role of Reverse Mode Operation of Glycine Transporter Type-1 (GlyT-1) in Ischemic Conditions.

Neurochem Res. 2016-2

[2]
A computer-based quantitative systems pharmacology model of negative symptoms in schizophrenia: exploring glycine modulation of excitation-inhibition balance.

Front Pharmacol. 2014-10-21

[3]
Organization, control and function of extrasynaptic NMDA receptors.

Philos Trans R Soc Lond B Biol Sci. 2014-10-19

[4]
Hypoxia alters ocular drug transporter expression and activity in rat and calf models: implications for drug delivery.

Mol Pharm. 2013-5-22

[5]
Immunohistochemical and functional characterization of peptide, organic cation, neutral and basic amino acid, and monocarboxylate drug transporters in human ocular tissues.

Drug Metab Dispos. 2012-11-20

[6]
The role of N-methyl-D-aspartate receptor activation in homocysteine-induced death of retinal ganglion cells.

Invest Ophthalmol Vis Sci. 2011-7-25

[7]
Lipophilicity and transporter influence on blood-retinal barrier permeability: a comparison with blood-brain barrier permeability.

Pharm Res. 2010-9-22

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