Introduction: The present study aimed to investigate whether miR-129-5p can regulate high-mobility group box protein 1 (HMGB1)-modulated TLRs/NF-kappaB inflammatory pathway that contributed to lipopolysaccharide (LPS)-induced podocyte apoptosis and acutekidneyinjury (AKI).
Material And Methods: In vitro and in vivo models of sepsis were simulated using LPS-administrated podocytes and mice, respectively. The effects of LPS, mR-129-5p mimics and short hairpin RNA of HMGB1 (sh-HMGB1) on podocyte apoptosis were monitored using TUNEL staining. Protein expression was measured using western blotting. Survival outcomes were analyzed in septic mice with agomir-mR-129-5p administration.
Results: We observed that stimulation of podocytes with LPS significantly inhibits the expression of miR-129-5p, and overexpression of miR-129-5p protects against LPS-induced podocyte damage, over-activation of inflammatory response and apoptosis. In a mouse model, agomir-miR-129-5p administration significantly improves the survival outcomes in septic mice and LPS-induced AKI. Mechanically, LPS-induced the elevation of HMGB1, TLR2, TLR4 and nuclear NF-κB protein expression in vitro and in vivo are restrained by the overexpression of miR-129-5p.
Conclusions: Overexpression of miR-129-5p protects against LPS-induced podocyte apoptosis, inflammation and AKI in vivo and in vitro models of sepsis. The underlying molecular mechanism is mediated via attenuating HMGB1/TLRs/NF-κB signaling axis modulated inflammatory response.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.intimp.2020.107016 | DOI Listing |
Am J Physiol Renal Physiol
January 2025
Department of Medicine, Boston Medical Center and Department of Medicine, Boston University. Chobanian & Avedisian School of Medicine.
Transcriptomic analysis of microdissected human glomeruli has suggested novel molecular signatures associated with MN by revealing several genes differentially upregulated in MN compared to other glomerular diseases. We focused on a novel protein, Family with sequence similarity 114 member A1 (FAM114A1) that was identified as the top classifier gene in the dataset. To determine the localization of FAM114A1 within glomeruli, we performed immunofluorescence (IF) staining on normal human kidney specimens.
View Article and Find Full Text PDFDrug Chem Toxicol
December 2024
Internal Medicine Department, Shenzhen Bao'an Authentic TCM Therapy Hospital, Shenzhen, China.
Podocyte injury is a major biomarker of primary glomerular disease that leads to massive proteinuria and kidney failure. Ginsenoside Rk1, a substance derived from ginseng, has several pharmacological activities, such as anti-apoptotic, anti-inflammatory, and antioxidant effects. In this study, our goal is to investigate the roles and mechanisms of ginsenoside Rk1 in podocyte injury and acute kidney injury (AKI).
View Article and Find Full Text PDFCent Eur J Immunol
June 2024
Department of Critical Care Medicine, Jinhua Municipal Central Hospital, Jinhua, Zhejiang Province, China.
Cytotechnology
October 2024
Department of Nephrology, Wuhan Sixth Hospital, Affiliated Hospital of Jianghan University, No.168, Jiang 'an District, Wuhan, Hubei China.
Acute kidney injury (AKI) is a common clinical condition and is associated with unacceptable morbidity and mortality. Obtusifolin is an anthraquinone extracted from the seeds of with anti-inflammatory properties. This study focused on the role and mechanism of obtusifolin in AKI.
View Article and Find Full Text PDFNephrology (Carlton)
August 2024
Internal Medicine Department, Shenzhen Bao'an Authentic TCM Therapy Hospital, Shenzhen, China.
Background: Apoptosis and oxidative stress in kidneys are critical players in acute kidney injury (AKI). Rehmapicrogenin, a monomeric compound extracted from Rehmanniae radix, has been found to possess nitric oxide inhibitory and anti-inflammatory activities. Thus, this study aimed to investigate the roles and mechanisms of rehmapicrogenin in AKI.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!