Lu Hongtao, Ding Jiarong, Liu Wenrui, Peng Zhongjiang, Chen Wei, Sun Xuejun, Guo Zhiyong
Department of Nephrology, Changhai Hospital, Naval Medical University.
Department of Naval Aeromedicine, Naval Medical University.
Biol Pharm Bull. 2018;41(11):1652-1658. doi: 10.1248/bpb.b18-00307.
Hydrogen has a significant protective effect on calcium oxalate-induced renal injury, but its effect on metabolic profiles is unknown. This study showed the effects of hydrogen on serum and urine metabolites in a renal injury model. Ultra-HPLC quadrupole time-of-flight-MS-based metabolomics was used to characterise metabolic variations. Twenty-five serum metabolites and 14 urine metabolites showed differences in the the nitrogen and oxygen inhalation (NO), nitrogen and oxygen inhalation combined with calcium oxalate induction (CaOx), and hydrogen inhalation combined with calcium oxalate induction (HO+CaOx) groups. Nineteen serum metabolites and 7 urine metabolites showed significant restoration to normal levels after hydrogen gas (H) treatment. These metabolites are primarily related to amino acid metabolism, fatty acid metabolism, and phospholipid metabolism. This study showed that a comprehensive metabolomics approach is an effective strategy to elucidate the mechanisms underlying the effects of hydrogen treatment on calcium oxalate-induced renal injury.
氢气对草酸钙诱导的肾损伤具有显著的保护作用,但其对代谢谱的影响尚不清楚。本研究显示了氢气对肾损伤模型中血清和尿液代谢物的影响。采用基于超高效液相色谱四极杆飞行时间质谱的代谢组学方法来表征代谢变化。25种血清代谢物和14种尿液代谢物在氮气和氧气吸入(NO)组、氮气和氧气吸入联合草酸钙诱导(CaOx)组以及氢气吸入联合草酸钙诱导(HO+CaOx)组中表现出差异。19种血清代谢物和7种尿液代谢物在氢气(H)处理后显著恢复至正常水平。这些代谢物主要与氨基酸代谢、脂肪酸代谢和磷脂代谢有关。本研究表明,综合代谢组学方法是阐明氢气治疗对草酸钙诱导的肾损伤作用机制的有效策略。