首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Simultaneous two-dimensional HPLC determination of free d-serine and d-alanine in the brain and periphery of mutant rats lacking d-amino-acid oxidase
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Simultaneous two-dimensional HPLC determination of free d-serine and d-alanine in the brain and periphery of mutant rats lacking d-amino-acid oxidase

机译:二维HPLC同时测定缺乏d-氨基酸氧化酶的突变大鼠脑和外周中的d-丝氨酸和d-丙氨酸

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摘要

A fully automated two-dimensional HPLC system combining a microbore-ODS column and a narrowbore-enantioselective column was designed and validated, and the amounts of d-serine (d-Ser) and d-alanine (d-Ala) in various tissues and physiological fluids of Long-Evans agouti/SENDAI (LEA/Sen) rats lacking d-amino-acid oxidase (DAO) were determined. Intra- and inter-day precision was less than 4.3% and accuracy ranged between 99.9 and 104%. LEA/Sen rats were reported to lack DAO in their kidneys and expected to be a novel mutant animal lacking DAO, however, the amounts of d-amino acids in the LEA/Sen rats have not been investigated. In the present study, the intrinsic amounts of d-Ser and d-Ala, which are neuromodulators of the N-methyl-d-aspartate (NMDA) receptors, were determined in seven brain tissues, four peripheral tissues, plasma and urine of the LEA/Sen rats and compared to those of the control (Wistar and SD) rats having normal DAO activity. The levels of d-Ser in the tissues and physiological fluids of the LEA/Sen rats were significantly higher than those of the Wistar and SD rats except for the frontal brain regions. Concerning d-Ala, the amounts in the tissues and physiological fluids of the LEA/Sen rats were drastically increased compared to those of the Wistar and SD rats. These results indicate that the intrinsic amounts of d-Ser and d-Ala in the tissues of rats are regulated by DAO, and that LEA/Sen rats would be useful for the study of NMDA receptor-related diseases in which DAO is implicated.
机译:设计并验证了结合了微孔-ODS色谱柱和窄孔-对映选择性色谱柱的全自动二维HPLC系统,以及各种组织和组织中d-丝氨酸(d-Ser)和d-丙氨酸(d-Ala)的含量。确定缺少d-氨基酸氧化酶(DAO)的Long-Evans agouti / SENDAI(LEA / Sen)大鼠的生理液。日内和日间精度低于4.3%,精度在99.9%和104%之间。据报道,LEA / Sen大鼠的肾脏中缺乏DAO,有望成为缺乏DAO的新型突变动物,但是,尚未对LEA / Sen大鼠中的d-氨基酸含量进行研究。在本研究中,测定了N-甲基-d-天冬氨酸(NMDA)受体的神经调节剂d-Ser和d-Ala的固有量,测定了大鼠的七个脑组织,四个外围组织,血浆和尿液。将LEA / Sen大鼠与具有正常DAO活性的对照组(Wistar和SD)进行比较。 LEA / Sen大鼠的组织和生理液中的d-Ser水平除额脑区域外均显着高于Wistar和SD大鼠。关于d-Ala,与Wistar和SD大鼠相比,LEA / Sen大鼠的组织和生理液中的含量急剧增加。这些结果表明,大鼠组织中d-Ser和d-Ala的固有量受DAO调节,并且LEA / Sen大鼠可用于研究与DAO有关的NMDA受体相关疾病。

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