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Targeted neurotransmitter metabolomics profiling of oleanolic acid in the treatment of spontaneously hypertensive rats

机译:齐墩果酸的靶向神经递质代谢组学研究在自发性高血压大鼠中的治疗

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Essential hypertension (EH) is a prevalent chronic medical condition and a major risk factor for cardiovascular morbidity and mortality. Neurotransmitters are involved in the physiological process of blood pressure regulation in the body. Studies have shown that oleanolic acid (OA) can effectively regulate neurotransmitter-related metabolic disorders caused by EH, but the mechanism is still unclear. Here, we studied the neurotransmitter metabolic profiles in five brain regions by targeted metabolomics approaches in spontaneously hypertensive rats (SHRs) treated with OA and vehicle. Samples from five brain regions (hippocampus, striatum, hypothalamus, temporal lobe, and frontal lobe) were collected from the control group, the spontaneously hypertensive rat (SHR) group, and the OA group. Targeted metabolomics based on UPLC-Q-Exactive-MS was employed to characterize the dramatically changed neurotransmitters in the brain regions of SHRs treated with OA and vehicle. The expressions of the key enzymes involved in the neurotransmitter metabolism were detected by the reverse transcription-polymerase chain reaction (RT-PCR). The metabolomic profiles of SHRs pre-protected by OA were significantly different from those of unprotected SHRs. A total of 18 neurotransmitters could be confirmed as significantly altered metabolites, which were involved in tyrosine and glutamate metabolism as well as other pathways. The results showing seven key enzymes in neurotransmitter metabolism further validated the changes in the metabolic pathways. OA could effectively restore tyrosine metabolism in the striatum and hypothalamus, glutamate metabolism in the hippocampus, striatum and temporal lobe, cholinergic metabolism in the striatum, and histidine metabolism in the hypothalamus due to its inhibition of inflammatory reactions, structural damage of the neuronal cells, and increase in sedative activity. This study indicated that brain region-targeted metabolomics can provide a powerful tool to further investigate the possible mechanism of OA in EH.
机译:原发性高血压(EH)是一种普遍的慢性医学疾病,是心血管疾病发病率和死亡率的主要危险因素。神经递质参与体内血压调节的生理过程。研究表明齐墩果酸(OA)可以有效调节由EH引起的神经递质相关的代谢紊乱,但其机制仍不清楚。在这里,我们通过靶向代谢组学方法研究了OA和媒介物治疗的自发性高血压大鼠(SHRs)在五个大脑区域的神经递质代谢谱。从对照组,自发性高血压大鼠(SHR)组和OA组收集了五个大脑区域(海马,纹状体,下丘脑,颞叶和额叶)的样本。基于UPLC-Q-Exactive-MS的靶向代谢组学被用于表征用OA和媒介物治疗的SHRs大脑区域中急剧变化的神经递质。通过逆转录聚合酶链反应(RT-PCR)检测参与神经递质代谢的关键酶的表达。 OA预保护的SHR的代谢组学谱与未保护的SHR的代谢组学谱显着不同。可以确认总共18种神经递质是代谢物的显着改变,这些代谢物与酪氨酸和谷氨酸的代谢以及其他途径有关。结果表明神经递质代谢中的七个关键酶进一步证实了代谢途径的变化。 OA可以有效抑制纹状体和下丘脑的酪氨酸代谢,海马,纹状体和颞叶的谷氨酸代谢,纹状体的胆碱能代谢以及下丘脑的组氨酸代谢,因为它们抑制了炎症反应,神经元细胞的结构受损,并增加镇静活性。这项研究表明,针对脑区域的代谢组学可以为进一步研究OA在EH中的可能机制提供强大的工具。

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