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Role of the complement system in kidney cell death induced by Loxosceles venom Sphingomyelinases D
Cinthya Kimori Okamoto1, Carmen W van den Berg2, Paula C Pohl1
1Immunochemistry Laboratory, Instituto Butantan, São Paulo, Brazil.
Abstract:
Envenomation by Loxosceles spiders can result in local and systemic pathologies. Systemic loxoscelism, which can lead to death, is characterized by intravascular hemolysis, platelet aggregation, and acute kidney injury. Sphingomyelinase D (SMase D) in Loxosceles spider venom is responsible for both local and systemic pathologies, and has been shown to induce metalloprotease activity. As the complement system is involved in many renal pathologies and is involved in hemolysis in systemic loxoscelism, the aim of this study was to investigate its role and the role of complement regulators and metalloproteases in an in vitro model of Loxosceles venom induced renal pathology. We investigated the effects of the venom/SMase D and the complement system on the HK-2 kidney cell line. Using cell viability assays, western blotting, and flow cytometry, we show that human serum, as a source of complement, enhanced the venom/SMase D induced cell death and the deposition of complement components and properdin. Inhibitors for ADAM-10 and ADAM-17 prevented the venom induced release of the of the complement regulator MCP/CD46 and reduced the venom/SMase D induced cell death. Our results show that the complement system can contribute to Loxosceles venom induced renal pathology. We therefore suggest that patients experiencing systemic loxoscelism may benefit from treatment with metalloproteinase inhibitors and complement inhibitors, but this proposition should be further analyzed in future pre-clinical and clinical assays.
Insights
Loxosceles spider venom causes kidney damage by activating the complement system. Inhibiting metalloproteinases and complement may protect against systemic loxoscelism, a potentially fatal condition.
Area of Science:
- Toxicology
- Immunology
- Nephrology
Background:
- Loxosceles spider envenomation causes local and systemic effects, including acute kidney injury.
- Sphingomyelinase D (SMase D) in the venom induces metalloprotease activity and contributes to pathologies.
- The complement system is implicated in renal diseases and hemolysis during systemic loxoscelism.
Purpose of the Study:
- To investigate the role of the complement system, its regulators, and metalloproteinases in an in vitro model of Loxosceles venom-induced renal pathology.
- To explore the effects of venom/SMase D and complement on kidney cells.
Main Methods:
- Utilized the HK-2 kidney cell line.
- Employed cell viability assays, western blotting, and flow cytometry.
- Investigated the impact of human serum (complement source) and SMase D on kidney cells.
Main Results:
- Human serum amplified venom/SMase D-induced kidney cell death and complement component deposition.
- ADAM-10 and ADAM-17 inhibitors reduced venom-induced release of complement regulator MCP/CD46.
- Inhibitors also decreased venom/SMase D-induced kidney cell death.
Conclusions:
- The complement system contributes to Loxosceles venom-induced renal pathology.
- Metalloproteinase and complement inhibitors show potential therapeutic benefits for systemic loxoscelism.
- Further pre-clinical and clinical studies are warranted to validate these findings.
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