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Contrast-induced nephropathy (CIN) is one of the most common causes of acute kidney injury (AKI). However, management is still limited, and the cellular response to radiocontrast removal for CIN remains unclear. This study aimed to explore the latent effects of iohexol in cultured renal tubular cells with or without the removal of iohexol by medium replacement. HK2 renal tubular cells were subcultured 24 h before use in CIN experiments. Three treatment groups were established: the control, a radiocontrast (iohexol)-only group at 75 mg I/mL (I-75), and iohexol exposure for 24 h with culture medium replacement (I-75/M). Cell cycle arrest, fibrogenic mediator assays, cell viability, cell function, and cell-cycle-related protein expression were compared between groups. Iohexol induced numerous changes in HK2 renal tubular cells, such as enlarged cell shape, cell cycle arrest, increased apoptosis, and polyploidy. Iohexol inhibited the expression of cyclins, CDKs, ZO-1, and E-cadherin but conversely enhanced the expression of p21 and fibrosis-related genes, including TGF-β1, CTGF, collagen I, collagen III, and HIF-1α within 60 hr after the exposure. Except for the recovery from cell cycle arrest and cell cycle gene expression, notably, the removal of iohexol by medium replacement could not fully recover the renal tubular cells from the formation of polyploid cells, the adhesion or spreading, or the expression of fibrosis-related genes. The present study demonstrates, for the first time, that iohexol exerts latent cytotoxic effects on cultured renal tubular cells after its removal, suggesting that these irreversible cell changes may cause the insufficiency of radiocontrast reduction in CIN, which is worth investigating further.
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http://dx.doi.org/10.3390/ijms241310945 | DOI Listing |
Kidney Blood Press Res
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Objective: Cisplatin-induced acute kidney injury (Cis-AKI) is a significant cause of renal damage, characterized by tubular injury, ferroptosis, and oxidative stress. While therapeutic options for Cis-AKI remain limited, identifying novel targets to prevent kidney injury is critical. This study focuses on GALNT14, a gene associated with ferroptosis, and its potential role in mitigating Cis-AKI.
View Article and Find Full Text PDFFASEB J
September 2025
School of Disaster and Emergency Medicine, Tianjin University, Tianjin, China.
Extracorporeal membrane oxygenation (ECMO) is a high-risk, invasive therapy that sustains life through an external system. However, it often leads to complications such as bleeding, thrombosis, infection, and acute kidney injury (AKI). While up to 70% of ECMO patients develop AKI, the mechanisms driving this injury remain unclear, and effective treatments are limited.
View Article and Find Full Text PDFPhysiol Rep
September 2025
Department of Medicine, Dunedin School of Medicine, University of Otago, Dunedin, New Zealand.
Lithium-induced kidney injury is commonly associated with the development of nephrogenic diabetes insipidus. Longer term lithium exposure is associated with the development of chronic interstitial fibrosis. The mechanisms of lithium-induced kidney injury are multifaceted, affecting many intracellular cell signaling pathways associated with cell cycle regulation, cell proliferation, and subsequent increased extracellular matrix formation and interstitial fibrosis.
View Article and Find Full Text PDFBMJ Case Rep
September 2025
Guy's and St Thomas' Hospitals NHS Trust, London, England, UK.
Autosomal recessive renal tubular dysgenesis (RTD) is a rare genetic disorder caused by defects in the renin-angiotensin system, with the most common outcomes being foetal or neonatal death from renal failure, pulmonary hypoplasia and/or refractory arterial hypotension. A small proportion of patients survive past the neonatal period. We present the case of a toddler with RTD due to compound heterozygous variants in the gene that codes for ACE, who has not required renal replacement therapy to date and in whom fludrocortisone has achieved electrolyte and acid/base balance.
View Article and Find Full Text PDFMethods Cell Biol
September 2025
Renal Physiopathology Laboratory, Department of Nephrology, Instituto de Investigación Sanitaria Gregorio Marañón, Hospital General Universitario Gregorio Marañón, Madrid, Spain; Department of Physiology, School of Medicine, Universidad Complutense de Madrid, Madrid, Spain. Electronic address:
Chronic kidney disease (CKD) is currently a serious global health problem, due to its high risk of progression, prevalence and mortality. It not only affects the kidneys but also causes multi-organ damage. Moreover, there is no effective pharmacological treatment, and the only available alternatives are dialysis or transplantation, both of which impose a significant financial burden on healthcare systems.
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