TY - JOUR
T1 - β-hydroxybutyrate attenuates renal ischemia-reperfusion injury through its anti-pyroptotic effects
AU - Tajima, Takaya
AU - Yoshifuji, Ayumi
AU - Matsui, Ayumi
AU - Itoh, Tomoaki
AU - Uchiyama, Kiyotaka
AU - Kanda, Takeshi
AU - Tokuyama, Hirobumi
AU - Wakino, Shu
AU - Itoh, Hiroshi
N1 - Funding Information:
This work was partially supported by grants from the Ministry of Education, Culture, Science, Sports and Technology of Japan (26253053, 16H05315). The authors are grateful to Professor Ikuo Kimura, Dr. Junki Miyamoto, and Dr. Junichiro Irie for helpful discussions and to Novartis Pharmaceuticals for helpful support to provide the place to perform research.
Publisher Copyright:
© 2019 International Society of Nephrology
PY - 2019/5
Y1 - 2019/5
N2 - Ketone bodies including β-hydroxybutyrate (β-OHB) have been shown to protect against ischemic tissue injury when present at low concentrations. We evaluated the impact of β-OHB on renal ischemia/reperfusion injury (IRI). Mice were treated with a continuous infusion of β-OHB using an osmotic mini-pump before and after IRI. We also tested the effects of increasing endogenous serum β-OHB levels by fasting. Renal IRI was attenuated by β-OHB treatment compared to saline control, with similar results in the fasting condition. β-OHB treatment reduced the number of terminal deoxynucleotidyl transferase–mediated dUTP nick end-labeling (TUNEL)-positive cells and increased expression of forkhead transcription factor O3 (FOXO3), an upstream regulator of pyroptosis. Although β-OHB treatment did not impact markers of apoptosis, it decreased the expression of caspase-1 and proinflammatory cytokines, indicating that β-OHB blocked pyroptosis. In a human proximal tubular cell line exposed to hypoxia and reoxygenation, β-OHB reduced cell death in a FOXO3-dependent fashion. Histone acetylation was decreased in kidneys exposed to IRI and in proximal tubular cells exposed to hypoxia and reoxygenation, and this effect was ameliorated by β-OHB through the inactivation of histone deacetylases. In vitro, β-OHB treatment restored histone acetylation at the FOXO3 promoter. Consistent with epigenetic molecular effects, the renoprotective effects of β-OHB were still observed when the continuous infusion was stopped at the time of IRI. Thus, β-OHB attenuates renal IRI through anti-pyroptotic effects, likely mediated by an epigenetic effect on FOXO3 expression.
AB - Ketone bodies including β-hydroxybutyrate (β-OHB) have been shown to protect against ischemic tissue injury when present at low concentrations. We evaluated the impact of β-OHB on renal ischemia/reperfusion injury (IRI). Mice were treated with a continuous infusion of β-OHB using an osmotic mini-pump before and after IRI. We also tested the effects of increasing endogenous serum β-OHB levels by fasting. Renal IRI was attenuated by β-OHB treatment compared to saline control, with similar results in the fasting condition. β-OHB treatment reduced the number of terminal deoxynucleotidyl transferase–mediated dUTP nick end-labeling (TUNEL)-positive cells and increased expression of forkhead transcription factor O3 (FOXO3), an upstream regulator of pyroptosis. Although β-OHB treatment did not impact markers of apoptosis, it decreased the expression of caspase-1 and proinflammatory cytokines, indicating that β-OHB blocked pyroptosis. In a human proximal tubular cell line exposed to hypoxia and reoxygenation, β-OHB reduced cell death in a FOXO3-dependent fashion. Histone acetylation was decreased in kidneys exposed to IRI and in proximal tubular cells exposed to hypoxia and reoxygenation, and this effect was ameliorated by β-OHB through the inactivation of histone deacetylases. In vitro, β-OHB treatment restored histone acetylation at the FOXO3 promoter. Consistent with epigenetic molecular effects, the renoprotective effects of β-OHB were still observed when the continuous infusion was stopped at the time of IRI. Thus, β-OHB attenuates renal IRI through anti-pyroptotic effects, likely mediated by an epigenetic effect on FOXO3 expression.
KW - acute kidney injury
KW - cell death
KW - cell survival
KW - inflammation
KW - ischemia reperfusion
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U2 - 10.1016/j.kint.2018.11.034
DO - 10.1016/j.kint.2018.11.034
M3 - Article
C2 - 30826015
AN - SCOPUS:85062081278
SN - 0085-2538
VL - 95
SP - 1120
EP - 1137
JO - Kidney international
JF - Kidney international
IS - 5
ER -