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Myeloid bodies in drug-induced acute tubular necrosis
Abstract:
A growing list of drugs, metals, and chemicals has been implicated as the cause of functional and structural damage specifically to the proximal tubular epithelium. Renal biopsies were obtained from three patients who had developed nephrotoxic agent-related acute renal failure. Two of the patients had received gentamicin and viomycin; the third patient had heavy exposure to chromium. All three biopsies showed acute tubular necrosis (ATN) on light microscopy. Electron microscopy revealed that the proximal tubular cells and, to a lesser degree, the distal tubular cells, contained abundant, variably sized myeloid bodies. In our previous experimental study of viomycin-induced ATN in rats, similar ultrastructural findings of a gradual increase in the number of myeloid bodies in the proximal tubular cells were also observed. The constant presence of myeloid bodies in the tubular epithelial cells following drug-induced tubular necrosis suggests that they may represent lysosomal isolation of drug-bound cytoplasmic structures, as a cellular mechanism to degrade toxic substances and, therefore, may serve as an ultrastructural marker of cellular drug uptake and drug disposition.
Insights
Nephrotoxic agents like gentamicin and chromium can cause acute tubular necrosis. Myeloid bodies in kidney cells may indicate cellular drug uptake and detoxification processes.
Area of Science:
- Nephrology
- Toxicology
- Cell Biology
Background:
- Drugs, metals, and chemicals can damage kidney proximal tubular epithelium.
- Acute renal failure can result from exposure to nephrotoxic agents.
Observation:
- Renal biopsies from three patients with acute tubular necrosis (ATN) were examined.
- Patients had received gentamicin, viomycin, or had chromium exposure.
- Light microscopy showed ATN; electron microscopy revealed myeloid bodies in proximal and distal tubular cells.
Findings:
- Myeloid bodies were abundant in proximal tubular cells and present in distal tubular cells.
- Previous studies showed increased myeloid bodies in rats with viomycin-induced ATN.
- Myeloid bodies may represent lysosomal isolation of drug-bound structures.
Implications:
- Myeloid bodies suggest a cellular mechanism for degrading toxic substances.
- These bodies may serve as ultrastructural markers of cellular drug uptake and disposition.
- Understanding these markers could aid in diagnosing and managing nephrotoxicity.