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Updated: Feb 15, 2026

Quantification of the Immunosuppressant Tacrolimus on Dried Blood Spots Using LC-MS/MS
Published on: November 8, 2015
Tacrolimus-induced nephrotoxicity in mice is associated with microRNA deregulation
Cyrille Vandenbussche1,2, Cynthia Van der Hauwaert1,3, Edmone Dewaeles1
1EA 4483-IMPECS-IMPact of Environmental ChemicalS on Human Health, Faculté de Médecine/Pôle Recherche, Univ. Lille, 1, place de Verdun, 59045, Lille Cedex, France.
Abstract:
Although Tacrolimus is an immunosuppressive drug widely used in renal transplantation, its chronic use paradoxically induces nephrotoxic effects, in particular renal fibrosis, which is responsible for chronic allograft dysfunction and represents a major prognostic factor of allograft survival. As molecular pathways and mechanisms involved in Tacrolimus-induced fibrogenic response are poorly elucidated, we assessed whether miRNAs are involved in the nephrotoxic effects mediated by Tacrolimus. Treatment of CD-1 mice with Tacrolimus (1 mg/kg/d for 28 days) resulted in kidney injury and was associated with alteration of a gene expression signature associated with cellular stress, fibrosis and inflammation. Tacrolimus also affected renal miRNA expression, including miRNAs previously involved in fibrotic and inflammatory processes as "fibromirs" such as miR-21-5p, miR-199a-5p and miR-214-3p. In agreement with in vivo data, Renal Proximal Tubular Epithelial cells exposed to Tacrolimus (25 and 50 µM) showed upregulation of miR-21-5p and the concomitant induction of epithelial phenotypic changes, inflammation and oxidative stress. In conclusion, this study suggests for the first time that miRNAs, especially fibromiRs, participate to Tacrolimus-induced nephrotoxic effects. Therefore, targeting miRNAs may be a new therapeutic option to counteract Tacrolimus deleterious effects on kidney.
Insights
Tacrolimus, an immunosuppressant, causes kidney damage and fibrosis by altering microRNA (miRNA) expression. Targeting these miRNAs may offer a new therapy to prevent Tacrolimus-induced nephrotoxicity.
Area of Science:
- Nephrology
- Molecular Biology
- Immunology
Background:
- Tacrolimus is crucial for renal transplantation but causes nephrotoxicity, including renal fibrosis, impacting graft survival.
- The molecular mechanisms behind Tacrolimus-induced fibrosis are not fully understood.
- MicroRNAs (miRNAs) are investigated for their potential role in mediating these adverse effects.
Purpose of the Study:
- To investigate the involvement of miRNAs in Tacrolimus-induced nephrotoxicity.
- To identify specific miRNAs and pathways affected by Tacrolimus in the kidney.
Main Methods:
- CD-1 mice were treated with Tacrolimus (1 mg/kg/d for 28 days).
- Gene expression profiling and miRNA expression analysis were performed on kidney tissues.
- Renal Proximal Tubular Epithelial cells were exposed to Tacrolimus in vitro.
Main Results:
- Tacrolimus treatment induced kidney injury, fibrosis, inflammation, and altered gene expression in mice.
- Specific miRNAs, including "fibromirs" like miR-21-5p, miR-199a-5p, and miR-214-3p, showed altered expression.
- In vitro, Tacrolimus upregulated miR-21-5p and induced epithelial changes, inflammation, and oxidative stress in renal cells.
Conclusions:
- MicroRNAs, particularly fibromiRs, play a significant role in Tacrolimus-induced nephrotoxic effects.
- Targeting these miRNAs presents a potential therapeutic strategy to mitigate Tacrolimus's detrimental impact on the kidneys.
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