Empagliflozin targets Mfn1 and Opa1 to attenuate microglia-mediated neuroinflammation in retinal ischemia and reperfusion injury

被引:13
作者
Yang, Zhenlan [1 ]
Liu, Yidan [1 ]
Chen, Xuhao [1 ]
Huang, Shaofen [1 ]
Li, Yangyang [1 ]
Ye, Guitong [1 ]
Cao, Xu [1 ]
Su, Wenru [1 ]
Zhuo, Yehong [1 ]
机构
[1] Sun Yat Sen Univ, Zhongshan Ophthalm Ctr, State Key Lab Ophthalmol, Guangdong Prov Key Lab Ophthalmol & Visual Sci, Guangzhou 510060, Peoples R China
关键词
Retinal ischemia and reperfusion injury; Neuroinflammation; Empagliflozin; Mitofusin; 1; Optic atrophy 1; COTRANSPORTER; 2; INHIBITORS; MITOCHONDRIAL DYNAMICS; ACTIVATION; INFLAMMATION; ASSOCIATION; TIME;
D O I
10.1186/s12974-023-02982-9
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
BackgroundNeuroinflammation and mitochondrial dysfunction play crucial roles in retinal ischemia and reperfusion (IR) injury. Recent studies have identified mitochondrial function as a promising target for immunomodulation. Empagliflozin (EMPA), an anti-diabetic drug, has exhibited great potential as both an anti-inflammatory agent and a protector of mitochondrial health. This study aimed to assess the therapeutic efficacy of EMPA in retinal IR injury.MethodsTo evaluate the protective effects of EMPA, the drug was injected into the vitreous body of mice post-retinal IR. Single-cell RNA sequencing (scRNA-seq) analysis was conducted to uncover the underlying mechanisms, and the results were further validated through in vivo and in vitro experiments.ResultsEMPA effectively protected retinal ganglion cells (RGCs) from IR injury by attenuating local retinal inflammation. The scRNA-seq analysis revealed that EMPA downregulated the nucleotide-binding domain and leucine-rich repeat containing protein 3 (NLRP3) signaling pathway and restored mitochondrial dynamics by upregulating the expression of mitochondrial fusion-related genes, Mitofusin 1 (Mfn1) and optic atrophy 1 (Opa1). These findings were further corroborated by Western blotting. In vitro experiments provided additional insights, demonstrating that EMPA suppressed lipopolysaccharide (LPS)-induced cell inflammation and NLRP3 inflammasome activation. Moreover, EMPA enhanced mitochondrial fusion, neutralized mitochondrial reactive oxygen species (mtROS), and restored mitochondrial membrane potential (MMP) in BV2 microglia. Notably, genetic ablation of Mfn1 or Opa1 abolished the anti-inflammatory effects of EMPA.ConclusionsOur findings highlight the positive contribution of Mfn1 and Opa1 to the anti-inflammatory therapeutic effect of EMPA. By restoring mitochondrial dynamics, EMPA effectively mitigates microglia-mediated neuroinflammation and prevents RGC loss in retinal IR injury.
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页数:18
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共 60 条
[1]   Empagliflozin attenuates neurodegeneration through antioxidant, anti-inflammatory, and modulation of a-synuclein and Parkin levels in rotenone-induced Parkinson's disease in rats [J].
Ahmed, Sanaa ;
El-Sayed, Mahmoud M. ;
Kandeil, Mohamed A. ;
Khalaf, Marwa M. .
SAUDI PHARMACEUTICAL JOURNAL, 2022, 30 (06) :863-873
[2]   Empagliflozin attenuates transient cerebral ischemia/reperfusion injury in hyperglycemic rats via repressing oxidative-inflammatory-apoptotic pathway [J].
Amin, Entesar F. ;
Rifaai, Rehab A. ;
Abdel-Latif, Rania G. .
FUNDAMENTAL & CLINICAL PHARMACOLOGY, 2020, 34 (05) :548-558
[3]   The pathways of mitophagy for quality control and clearance of mitochondria [J].
Ashrafi, G. ;
Schwarz, T. L. .
CELL DEATH AND DIFFERENTIATION, 2013, 20 (01) :31-42
[4]   Mitochondria at the interface between neurodegeneration and neuroinflammation [J].
Bader, Verian ;
Winklhofer, Konstanze F. .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2020, 99 :163-171
[5]   Mitochondrial fission-induced mtDNA stress promotes tumor-associated macrophage infiltration and HCC progression [J].
Bao, Dengke ;
Zhao, Jing ;
Zhou, Xingchun ;
Yang, Qi ;
Chen, Yibing ;
Zhu, Jianjun ;
Yuan, Peng ;
Yang, Jin ;
Qin, Tao ;
Wan, Shaogui ;
Xing, Jinliang .
ONCOGENE, 2019, 38 (25) :5007-5020
[6]   Impact of empagliflozin on decongestion in acute heart failure: the EMPULSE trial [J].
Biegus, Jan ;
Voors, Adriaan A. ;
Collins, Sean P. ;
Kosiborod, Mikhail N. ;
Teerlink, John R. ;
Angermann, Christiane E. ;
Tromp, Jasper ;
Ferreira, Joao Pedro ;
Nassif, Michael E. ;
Psotka, Mitchell A. ;
Brueckmann, Martina ;
Salsali, Afshin ;
Blatchford, Jonathan P. ;
Ponikowski, Piotr .
EUROPEAN HEART JOURNAL, 2023, 44 (01) :41-+
[7]   Integrating single-cell transcriptomic data across different conditions, technologies, and species [J].
Butler, Andrew ;
Hoffman, Paul ;
Smibert, Peter ;
Papalexi, Efthymia ;
Satija, Rahul .
NATURE BIOTECHNOLOGY, 2018, 36 (05) :411-+
[8]   Empagliflozin attenuates cardiac microvascular ischemia/reperfusion through activating the AMPKα1/ULK1/FUNDC1/mitophagy pathway [J].
Cai, Chen ;
Guo, Zhongzhou ;
Chang, Xing ;
Li, Ziying ;
Wu, Feng ;
He, Jing ;
Cao, Tiantian ;
Wang, Kangrong ;
Shi, Nengxian ;
Zhou, Hao ;
Toan, Sam ;
Muid, David ;
Tan, Ying .
REDOX BIOLOGY, 2022, 52
[9]   Mitochondrial Dynamics and Its Involvement in Disease [J].
Chan, David C. .
ANNUAL REVIEW OF PATHOLOGY: MECHANISMS OF DISEASE, VOL 15, 2020, 2020, 15 :235-259
[10]   Interleukin-4 promotes microglial polarization toward a neuroprotective phenotype after retinal ischemia/reperfusion injury [J].
Chen, Di ;
Peng, Cheng ;
Ding, Xu-Ming ;
Wu, Yue ;
Zeng, Chang-Juan ;
Xu, Li ;
Guo, Wen-Yi .
NEURAL REGENERATION RESEARCH, 2022, 17 (12) :2755-2760