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Published on: August 19, 2016
Complement inhibitors from scabies mites promote streptococcal growth--a novel mechanism in infected epidermis?
Angela Mika1, Simone L Reynolds, Darren Pickering
1Infectious Diseases Program, Biology Department, Queensland Institute of Medical Research, Herston, Brisbane, Australia.
Background:
Scabies is highly prevalent in socially disadvantaged communities such as indigenous populations and in developing countries. Generalized itching causes discomfort to the patient; however, serious complications can occur as a result of secondary bacterial pyoderma, commonly caused by Streptococcus pyogenes (GAS) or Staphylococcus aureus. In the tropics, skin damage due to scabies mite infestations has been postulated to be an important link in the pathogenesis of disease associated with acute rheumatic fever and heart disease, poststreptococcal glomerulonephritis and systemic sepsis. Treatment of scabies decreases the prevalence of infections by bacteria. This study aims to identify the molecular mechanisms underlying the link between scabies and GAS infections.
Methodology/Principal Findings:
GAS bacteria were pre-incubated with blood containing active complement, phagocytes and antibodies against the bacteria, and subsequently tested for viability by plate counts. Initial experiments were done with serum from an individual previously exposed to GAS with naturally acquired anti-GAS antibodies. The protocol was optimized for large-scale testing of low-opsonic whole blood from non-exposed human donors by supplementing with a standard dose of heat inactivated human sera previously exposed to GAS. This allowed an extension of the dataset to two additional donors and four proteins tested at a range of concentrations. Shown first is the effect of scabies mite complement inhibitors on human complement using ELISA-based complement activation assays. Six purified recombinant mite proteins tested at a concentration of 50 µg/ml blocked all three complement activation pathways. Further we demonstrate in human whole blood assays that each of four scabies mite complement inhibitors tested increased GAS survival rates by 2-15 fold.
Conclusions/Significance:
We propose that local complement inhibition plays an important role in the development of pyoderma in scabies infested skin. This molecular link between scabies and bacterial infections may provide new avenues to develop alternative treatment options against this neglected disease.
Insights
Scabies mite proteins inhibit the human complement system, increasing the survival of Streptococcus pyogenes (GAS) bacteria. This finding reveals a molecular link between scabies and bacterial infections, potentially leading to new treatments.
Area of Science:
- Immunology
- Infectious Diseases
- Parasitology
Background:
- Scabies is common in disadvantaged communities and can lead to severe bacterial pyoderma caused by Streptococcus pyogenes (GAS) or Staphylococcus aureus.
- Scabies-related skin damage is linked to rheumatic fever, heart disease, glomerulonephritis, and sepsis.
- Treating scabies reduces bacterial infection prevalence.
Purpose of the Study:
- To identify molecular mechanisms linking scabies infestation to GAS infections.
- To investigate how scabies mite proteins affect the human immune response to GAS.
Main Methods:
- Assessed the effect of scabies mite complement inhibitors on human complement pathways using ELISA.
- Tested the impact of mite proteins on GAS survival in human whole blood assays.
- Optimized protocols for large-scale testing using non-exposed human donors and supplemented sera.
Main Results:
- Six purified scabies mite proteins inhibited all three human complement activation pathways.
- Tested mite proteins increased GAS survival rates in human whole blood by 2-15 fold.
- Demonstrated that scabies mite complement inhibitors enhance bacterial survival.
Conclusions:
- Local complement inhibition by scabies mites contributes to pyoderma development in infested skin.
- This molecular link offers potential for novel therapeutic strategies against scabies and associated bacterial infections.
- Highlights scabies as a neglected disease with significant public health implications.
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