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Effects of organophosphates on precision-cut kidney slices
C Hoeffner1, F Worek1, N Amend1,2
1Bundeswehr Institute of Pharmacology and Toxicology, Munich, Germany.
Abstract:
Organophosphate (OP) poisoning, both accidental and with suicidal intent, is a global medical challenge. While the primary toxicity of these pesticides is based on the inhibition of acetylcholinesterase (AChE), case reports describe patients developing OP-mediated renal insufficiency. We set out to investigate possible pathomechanisms utilizing rat precision-cut kidney slices (PCKS). Depending on the method of investigation, PCKS were observed for a maximum of 10 days. PCKS exposed to OP compounds (malaoxon, malathion, paraoxon, parathion) showed a dose-dependent loss of viability and a reduction of total protein content over the course of 10 days. A concentration of 500 µM OP showed the most differences between OP compounds. After two days of incubation parathion showed a significantly lower level of viability than malathion. The respective effects of paraoxon and malaoxon were not significantly different from the control. However, effects of OP were only observed in concentrations exceeding those that were needed to achieve significant AChE inhibition in rat kidney tissue. In addition, we observed histological changes, without inducing LDH leakage. Overall, results suggest that OP exert effects in kidney tissue, that exceed those expected from the sole inhibition of AChE and vary between compounds. Without signs of necrosis, findings call for studies that address other possible pathomechanisms, including inflammatory response, oxidative stress or activation of apoptosis to further understand the nephrotoxicity of OP compounds. Monitoring oxon concentration over time, we demonstrated reduced enzyme-inhibiting properties in the presence of PCKS, suggesting interactions between OP compound and kidney tissue.
Insights
Organophosphate (OP) poisoning causes kidney damage beyond acetylcholinesterase (AChE) inhibition. Studies on rat kidney slices show OP compounds induce nephrotoxicity through mechanisms other than AChE inhibition, requiring further investigation.
Area of Science:
- Toxicology
- Nephrology
- Biochemistry
Background:
- Organophosphate (OP) poisoning is a global health issue.
- OPs primarily cause toxicity by inhibiting acetylcholinesterase (AChE).
- Nephrotoxicity has been reported in OP poisoning cases.
Purpose of the Study:
- To investigate the mechanisms of OP-induced kidney damage.
- To utilize rat precision-cut kidney slices (PCKS) to study OP effects.
- To determine if OP toxicity in kidneys exceeds AChE inhibition.
Main Methods:
- PCKS were exposed to various OP compounds (malaoxon, malathion, paraoxon, parathion) for up to 10 days.
- Cell viability, total protein content, and LDH leakage were measured.
- Histological changes and AChE inhibition were assessed.
- Oxon concentration was monitored to evaluate enzyme-inhibiting properties.
Main Results:
- OP exposure caused a dose-dependent loss of viability and reduced protein content in PCKS.
- Significant differences in toxicity were observed among OP compounds at 500 µM.
- Histological changes occurred without LDH leakage, indicating no necrosis.
- OP effects were observed at concentrations higher than those causing significant AChE inhibition.
- PCKS reduced the enzyme-inhibiting properties of OPs, suggesting tissue interaction.
Conclusions:
- OP compounds exert kidney effects beyond AChE inhibition.
- The nephrotoxicity mechanisms of OPs vary between compounds.
- Further research is needed to explore inflammatory response, oxidative stress, and apoptosis in OP-induced nephrotoxicity.

