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Pregnane X receptor (PXR) protects against cisplatin-induced acute kidney injury in mice

  • Zhilin Luan
  • , Yuanyi Wei
  • , Xiaoxiao Huo
  • , Xiaowan Sun
  • , Cong Zhang
  • , Wenhua Ming
  • , Zhaokang Luo
  • , Chunxiu Du
  • , Yaqing Li
  • , Hu Xu
  • , Heyuan Lu
  • , Feng Zheng
  • , Youfei Guan*
  • , Xiaoyan Zhang
  • *Corresponding author for this work
  • Dalian Medical University

Research output: Contribution to journalArticlepeer-review

Abstract

Cisplatin-induced acute kidney injury (CAKI) has been recognized as one of the most serious side effects of cisplatin. Pregnane X receptor (PXR) is a ligand-dependent nuclear receptor and serves as a master regulator of xenobiotic detoxification. Increasing evidence also suggests PXR has many other functions including the regulation of cell proliferation, inflammatory response, and glucose and lipid metabolism. In this study, we aimed to investigate the role of PXR in cisplatin-induced nephrotoxicity in mice. CAKI model was performed in wild-type or PXR knockout mice. Pregnenolone 16α‑carbonitrile (PCN), a mouse PXR specific agonist, was used for PXR activation. The renal function, biochemical, histopathological and molecular alterations were examined in mouse blood, urine or renal tissues. Whole transcriptome analysis was performed by RNA sequencing. We found that PXR activation significantly attenuated CAKI as reflected by improved renal function, reduced renal tubular apoptosis, ameliorated oxidative and endoplasmic reticulum stress, and suppressed inflammatory gene expression. RNA sequencing analysis revealed that the renoprotective effect of PXR was associated with multiple crucial signaling pathways, especially the PI3K/AKT pathway. In vitro study further revealed that PXR protected against cisplatin-induced apoptosis of cultured proximal tubule cells in a PI3K-dependent manner. Our results demonstrate that PXR activation can preserve renal function in cisplatin-induced AKI and suggest a possibility of PXR as a novel protective target for cisplatin-induced nephrotoxicity.

Original languageEnglish
Article number165996
JournalBiochimica et Biophysica Acta - Molecular Basis of Disease
Volume1867
Issue number3
DOIs
StatePublished - 1 Mar 2021
Externally publishedYes

Keywords

  • Acute kidney injury
  • Cisplatin
  • Nephrotoxicity
  • PI3K/AKT pathway
  • Pregnane X receptor

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