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Effect of Fosfomycin on Cyclosporine Nephrotoxicity
Juan Antonio Ortega-Trejo1,2, Rosalba Pérez-Villalva1,2, José M Arreola-Guerra3,4
1Molecular Physiology Unit Instituto de Investigaciones Biomédicas, Unidad de Fisiología Molecular (UNAM), Vasco de Quiroga No. 15, Tlalpan 14080, Mexico.
Abstract:
Fosfomycin (Fos) has emerged as a potential treatment against multidrug-resistant organisms, however, there has been little work done on its influence on calcineurin inhibitor nephrotoxicity (CIN). This study was designed to evaluate the effect of Fos in combination with cyclosporine (CsA) on CIN. Two sets of experiments were undertaken. In the first, Wistar rats received different doses of Fos: 0, 62.5, 125, 250, and 500 mg/kg. In the second, rats were divided into four groups: control, CsA 15 mg/kg s.c., CsA + fosfomycin 62.5 mg/kg (CsA + LF), and CsA + Fos 500 mg/kg (CsA + HF). CsA was administrated daily for 14 days, whereas Fos administration started on the ninth day followed by two more doses, delivered 48 h apart. The administration of different Fos doses did not alter renal function. In contrast, CsA induced arteriolopathy, hypoperfusion, a reduction in the glomerular filtration rate, and downregulation of eNOS, angiotensinogen, and AT1R mRNA levels. Lower doses of Fos did not modify CIN. Instead, the CsA + HF group exhibited greater hypoperfusion, arteriolopathy, and oxidative stress, and increased mRNA levels of pro-inflammatory cytokines. This study shows that Fos administered by itself at different doses did not cause renal injury, but when it was given repeatedly at high dosages (500 mg/kg) in combination with CsA, it increased CIN through the promotion of greater oxidative stress and renal inflammation.
Insights
Fosfomycin (Fos) alone does not harm kidneys, but high doses combined with cyclosporine (CsA) worsen calcineurin inhibitor nephrotoxicity (CIN) by increasing oxidative stress and inflammation.
Area of Science:
- Nephrology
- Pharmacology
- Toxicology
Background:
- Calcineurin inhibitor nephrotoxicity (CIN) is a significant clinical concern.
- Fosfomycin (Fos) is an antibiotic with potential against multidrug-resistant organisms.
- The interaction between Fos and CIN remains largely unexplored.
Purpose of the Study:
- To investigate the impact of Fos on CsA-induced nephrotoxicity in a rat model.
- To determine if Fos exacerbates or mitigates CIN.
Main Methods:
- Wistar rats were administered varying doses of Fos (0-500 mg/kg).
- Separate groups received CsA (15 mg/kg) alone or in combination with low (62.5 mg/kg) or high (500 mg/kg) doses of Fos.
- Renal function, histological changes, and gene expression (eNOS, angiotensinogen, AT1R, inflammatory cytokines) were assessed.
Main Results:
- Fos monotherapy did not affect renal function or induce injury.
- CsA alone induced arteriolopathy, reduced glomerular filtration rate, and altered specific gene expressions.
- High-dose Fos combined with CsA significantly worsened nephrotoxicity, increasing hypoperfusion, arteriolopathy, oxidative stress, and pro-inflammatory cytokine expression.
Conclusions:
- Fos is safe as a single agent at tested doses regarding renal function.
- High-dose, repeated administration of Fos potentiates CsA-induced nephrotoxicity.
- The combination of high-dose Fos and CsA increases renal oxidative stress and inflammation, contributing to enhanced CIN.
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