The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an 710049, China.
Food Funct. 2019 Feb 20;10(2):849-858. doi: 10.1039/c8fo01818a.
In the present study, the renal-protective effect of hawthorn fruit extract (HW) on high-salt hypertension and its effect on metabolic patterns are determined. High salt causes hypertension in Dahl salt sensitive (SS) rats, while HW can effectively attenuate high-salt induced hypertension, and, various antihypertensive ingredients of HW have also been successfully identified using GC/MS. Of note, the biochemical assay indicates that HW significantly increases the concentration of nitric oxide (NO) and decreases the concentration of H2O2 and malonaldehyde. Especially, HW increases the activities of NO synthase and catalase in the renal medulla. Simultaneously, the renal cortex and medulla, harvested from SS rats, are used to perform the metabolomics analysis, and then, 11 and 8 differential metabolites are identified in the renal medulla and cortex with the HW gavage, respectively. All differential metabolites are then used to perform the pathway enrichment analysis. The results show that many metabolic pathways are enriched in both the renal medulla and cortex, especially those in the medulla including 23 enriched pathways. Therefore, it provides evidence that HW confers an antioxidant effect on high-salt induced hypertension and dramatically alters the metabolic patterns of SS rats, and the antihypertensive ingredients of HW also further indicate that it may be used as a nutritional supplemental therapeutic drug to protect against high-salt induced hypertension in the renal medulla.
在本研究中,确定了山楂果提取物 (HW) 对高盐高血压的肾脏保护作用及其对代谢模式的影响。高盐可导致达尔盐敏感 (SS) 大鼠发生高血压,而 HW 可有效减轻高盐引起的高血压,并且使用 GC/MS 成功鉴定了 HW 的各种降压成分。值得注意的是,生化分析表明 HW 显著增加了一氧化氮 (NO) 的浓度,降低了 H2O2 和丙二醛的浓度。特别是,HW 增加了肾髓质中一氧化氮合酶和过氧化氢酶的活性。同时,从 SS 大鼠中采集肾皮质和髓质,用于进行代谢组学分析,然后分别在肾髓质和皮质中鉴定出 11 种和 8 种差异代谢物。然后将所有差异代谢物用于进行途径富集分析。结果表明,HW 灌胃后,在肾髓质和皮质中都有许多代谢途径富集,特别是在髓质中包括 23 个富集途径。因此,这为 HW 对高盐诱导的高血压具有抗氧化作用,并显著改变 SS 大鼠的代谢模式提供了证据,HW 的降压成分也进一步表明它可作为营养补充治疗药物,用于预防肾髓质中高盐引起的高血压。