Evidence map›Paper›PMID 41580700›Full record

ArticleCell communication and signaling : CCS2026

PPARγ agonism ameliorates acute kidney injury by inhibiting neutrophil extracellular trap formation-mediated renal tubular epithelial cell PANoptosis.

Changlin Du, Zhonghao Wang, Pengyu Zhang, Chengjiang Cao, Miaomiao Wang, Wenmei Zhang, Jipeng Cheng, Wenna Meng, Yuan Zhang, Zhenlong Liu and 5 more

Abstract read
In one paragraph

Article in Cell communication and signaling : CCS, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.

0numbers the graph read from it
0cells of the map it votes in
2citing papers in PubMed
–field-weighted citation impact
1 · What the graph read from it

What it found

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2 · The registry

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3 · Its place in the literature

Who cites it

2 citing papers in PubMed.

  1. Review
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4 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

15 authors.

Changlin Du *Inflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Zhonghao Wang *Inflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Pengyu ZhangInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Chengjiang CaoInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Miaomiao WangInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Wenmei ZhangInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Jipeng ChengInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Wenna MengInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Yuan ZhangInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Zhenlong LiuInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Na CaiInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Zhenming ZhangInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China.
Cheng HuangInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China. huangcheng@ahmu.edu.cn.
Jun LiInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China. lj@ahmu.edu.cn.
Taotao MaInflammation and Immune Mediated Diseases Laboratory of Anhui Province, School of Pharmacy, The Third Affiliated Hospital of Anhui Medical University, Anhui Medical University, No. 81 Meishan Road, Hefei, 230032, China. mataotao@ahmu.edu.cn.

Funding

Anhui Province Science Foundation for Distinguished Young Scholars 2408085J045Anhui University Fund for Distinguished Young Scholars 2022AH020050Research Fund of Anhui Institute of translational medicine 2022zhyxB07Scientific Research Platform Improvement Project of Anhui Medical University 2022xkjT045the Scientific Research Promotion Fund of Anhui Medical University 2022xkjT010
6 · The paper itself

Abstract

backgroundCisplatin (CP)-induced nephrotoxicity is a major clinical concern. Emerging evidence has revealed the critical role of PANoptosis, a coordinated cell death pathway, and neutrophil extracellular traps (NETs) in renal tubular damage. The nuclear receptor peroxisome proliferator-activated receptor gamma (PPARγ) has been recognized as a potential modulator of inflammation and cell survival; however, its regulatory function and mechanism in acute kidney injury (AKI), especially CP-induced AKI, particularly concerning NETs and PANoptosis, remain poorly understood. This study investigates the central role of PPARγ and explores the therapeutic potential of its novel activator, O-alkyl and o-benzyl hesperetin derivative-1 L (HD-1L), in this context.

methodsCultured renal tubular epithelial cells (mTECs) as well as a CP-induced AKI mouse model (20 mg/kg, 72 h) and renal ischemia-reperfusion injury (IRI) model​ were used. PPARγ heterozygous knockout mice, NET inhibitors (DNase I and GSK484), and pharmacological interventions (including the novel PPARγ agonist HD-1L and rosiglitazone [ROSI]) were used. The molecular mechanisms were assessed using western blotting, immunofluorescence (IF), enzyme-linked immunosorbent assay (ELISA), and cellular thermal shift assays (CETSA). PPARγ activity, NET markers (MPO, Cit-H3, and dsDNA), PANoptosis-related proteins (p-MLKL, GSDMD-N, and cleaved caspase-3), and reactive oxygen species (ROS) levels were quantified.

resultsCP triggered robust PANoptosis in the renal tissues, accompanied by elevated NETs and ROS-dependent NETosis. PPARγ activation significantly suppressed ROS production in neutrophils, thereby reducing NET formation. Mechanistically, NETs facilitate the release of cytoplasmic dsDNA, activate the AIM2 inflammasome, and promote PANoptosome assembly. Genetic PPARγ heterozygous knockout exacerbated renal injury and abolished protective effects, confirming the central role of PPARγ. HD-1L-induced activation of PPARγ reduced markers of PANoptosis and improved renal function in CP-AKI models. Furthermore, PPARγ agonism similarly protected against renal injury and suppressed the NETosis-PANoptosis axis in the IRI model.

conclusionPPARγ is a pivotal checkpoint in CP-AKI by inhibiting ROS-NETosis-driven AIM2-mediated PANoptosis. This protective mechanism is also applicable to IRI-induced AKI, highlighting its broad relevance. HD-1L confers renoprotection through PPARγ activation, providing a novel therapeutic strategy against AKI.

Indexed as

Acute Kidney InjuryEpithelial CellsExtracellular TrapsKidney TubulesPPAR gammaPPAR-gamma AgonistsAnimalsCisplatinMaleMiceMice, Inbred C57BLMice, KnockoutReactive Oxygen SpeciesCisplatinPPAR gammaPPAR-gamma AgonistsReactive Oxygen SpeciesAcute kidney injuryHD-1LNeutrophil extracellular trapPANoptosisPPARγReactive oxygen species

Identifiers

PMID41580700
PMCPMC12910742

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.