TY - JOUR
T1 - Xanthine oxidase inhibitor ameliorates postischemic renal injury in mice by promoting resynthesis of adenine nucleotides
AU - Fujii, Kentaro
AU - Kubo, Akiko
AU - Miyashita, Kazutoshi
AU - Sato, Masaaki
AU - Hagiwara, Aika
AU - Inoue, Hiroyuki
AU - Ryuzaki, Masaki
AU - Tamaki, Masanori
AU - Hishiki, Takako
AU - Hayakawa, Noriyo
AU - Kabe, Yasuaki
AU - Itoh, Hiroshi
AU - Suematsu, Makoto
N1 - Funding Information:
This work was supported by the Japan Society for the Promotion of Science, Grant-in-Aid for Scientific Research with grant numbers JP26460920 to KM, JP16K07203 to AK, and JP16K15471 to H Itoh. Imaging MS infrastructure was established by JST ERATO Suematsu Gas Biology (FY2010-FY2015, to M Suematsu). Metabolomics infrastructure to determine metabolites labeled with stable isotopes in cultured cells was supported by AMED-CREST (JP17gm0710010 to YK).
Publisher Copyright:
© 2019, American Society for Clinical Investigation.
PY - 2019/11/14
Y1 - 2019/11/14
N2 - Although oxidative stress plays central roles in postischemic renal injury, region-specific alterations in energy and redox metabolism caused by short-duration ischemia remain unknown. Imaging mass spectrometry enabled us to reveal spatial heterogeneity of energy and redox metabolites in the postischemic murine kidney. After 10-minute ischemia and 24-hour reperfusion (10mIR), in the cortex and outer stripes of the outer medulla, ATP substantially decreased, but not in the inner stripes of the outer medulla and inner medulla. 10mIR caused renal injury with elevation of fractional excretion of sodium, although histological damage by oxidative stress was limited. Ischemia-induced NADH elevation in the cortex indicated prolonged production of reactive oxygen species by xanthine oxidase (XOD). However, consumption of reduced glutathione after reperfusion suggested the amelioration of oxidative stress. An XOD inhibitor, febuxostat, which blocks the degradation pathway of adenine nucleotides, promoted ATP recovery and exerted renoprotective effects in the postischemic kidney. Because effects of febuxostat were canceled by silencing of the hypoxanthine phosphoribosyl transferase 1 gene in cultured tubular cells, mechanisms for the renoprotective effects appear to involve the purine salvage pathway, which uses hypoxanthine to resynthesize adenine nucleotides, including ATP. These findings suggest a novel therapeutic approach for acute ischemia/reperfusion renal injury with febuxostat through salvaging high-energy adenine nucleotides.
AB - Although oxidative stress plays central roles in postischemic renal injury, region-specific alterations in energy and redox metabolism caused by short-duration ischemia remain unknown. Imaging mass spectrometry enabled us to reveal spatial heterogeneity of energy and redox metabolites in the postischemic murine kidney. After 10-minute ischemia and 24-hour reperfusion (10mIR), in the cortex and outer stripes of the outer medulla, ATP substantially decreased, but not in the inner stripes of the outer medulla and inner medulla. 10mIR caused renal injury with elevation of fractional excretion of sodium, although histological damage by oxidative stress was limited. Ischemia-induced NADH elevation in the cortex indicated prolonged production of reactive oxygen species by xanthine oxidase (XOD). However, consumption of reduced glutathione after reperfusion suggested the amelioration of oxidative stress. An XOD inhibitor, febuxostat, which blocks the degradation pathway of adenine nucleotides, promoted ATP recovery and exerted renoprotective effects in the postischemic kidney. Because effects of febuxostat were canceled by silencing of the hypoxanthine phosphoribosyl transferase 1 gene in cultured tubular cells, mechanisms for the renoprotective effects appear to involve the purine salvage pathway, which uses hypoxanthine to resynthesize adenine nucleotides, including ATP. These findings suggest a novel therapeutic approach for acute ischemia/reperfusion renal injury with febuxostat through salvaging high-energy adenine nucleotides.
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U2 - 10.1172/jci.insight.124816
DO - 10.1172/jci.insight.124816
M3 - Article
C2 - 31723053
AN - SCOPUS:85077398207
SN - 2379-3708
VL - 4
JO - JCI Insight
JF - JCI Insight
IS - 22
M1 - e124816
ER -