Showing posts with label Staphylococcus. Show all posts
Showing posts with label Staphylococcus. Show all posts

Bacteria (Staph aureus )may cause type 2 diabetes -- ScienceDaily

The research team led by Patrick Schlievert, PhD, professor and DEO of
microbiology at the UI Carver College of Medicine, found that prolonged
exposure to a toxin produced by Staphylococcus aureus (staph)
bacteria causes rabbits to develop the hallmark symptoms of Type 2
diabetes, including insulin resistance, glucose intolerance, and
systemic inflammation.

Chronic exposure to staph bacteria may be risk factor for lupus, study finds

Chronic exposure to even small amounts of staph bacteria could be a risk factor for the chronic inflammatory disease lupus, Mayo Clinic research shows. Staph, short for Staphylococcus aureus, is a germ commonly found on the skin or in the nose, sometimes causing infections. In the Mayo study, mice were exposed to low doses of a protein found in staph and developed a lupus-like disease, with kidney disease and autoantibodies like those found in the blood of lupus patients.
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Staphylococcus aureus α-toxin modulates skin host response to viral infection.

Patients with atopic dermatitis (AD) with a history of eczema herpeticum have increased staphylococcal colonization and infections. However, whether Staphylococcus aureus alters the outcome of skin viral infection has not been determined.OBJECTIVE:We investigated whether S aureus toxins modulated host response to herpes simplex virus (HSV) 1 and vaccinia virus (VV) infections in normal human keratinocytes (NHKs) and in murine infection models.METHODS:NHKs were treated with S aureus toxins before incubation of viruses. BALB/c mice were inoculated with S aureus 2 days before VV scarification. Viral loads of HSV-1 and VV were evaluated by using real-time PCR, a viral plaque-forming assay, and immunofluorescence staining. Small interfering RNA duplexes were used to knockdown the gene expression of the cellular receptor of α-toxin, a disintegrin and metalloprotease 10 (ADAM10). ADAM10 protein and α-toxin heptamers were detected by using Western blot assays.RESULTS:We demonstrate that sublytic staphylococcal α-toxin increases viral loads of HSV-1 and VV in NHKs. Furthermore, we demonstrate in vivo that the VV load is significantly greater (P < .05) in murine skin inoculated with an α-toxin-producing S aureus strain compared with murine skin inoculated with the isogenic α-toxin-deleted strain. The viral enhancing effect of α-toxin is mediated by ADAM10 and is associated with its pore-forming property. Moreover, we demonstrate that α-toxin promotes viral entry in NHKs.CONCLUSION:
The current study introduces the novel concept that staphylococcal α-toxin promotes viral skin infection and provides a mechanism by which S aureus infection might predispose the host toward disseminated viral infections.
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