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Updated: Jul 22, 2026

Come to the Light Side: In Vivo Monitoring of Pseudomonas aeruginosa Biofilm Infections in Chronic Wounds in a Diabetic Hairless Murine Model
Published on: October 10, 2017
[Microbiological aspects and antibiotic therapy of diabetic foot infections]
Andreas Ambrosch1, Hendrik Lehnert, Ralf Lobmann
1Zentrallabor, St. Joseph-Hospital, Bremerhaven. dr.ambrosch@st.joseph-hospital.de
Abstract:
IMMUNOLOGICAL AND MICROBIOLOGICAL ASPECTS OF DIABETIC FOOT INFECTIONS: Diabetic patients are at increased risk of severe skin and bone infections. Immunological disturbances are reasonable and due to altered specific and unspecific cellular immune responses. Analysis of epidemiology and microbial pathogenicity shows that staphylococci seem to be predestined to induce such infections. Staphylococcus aureus and coagulase-negative staphylococci are able to adhere to the wound ground by a sequela of mechanisms. Initial bacterial adherence is due to hydrophobicity, ion exchanges, and specific binding of bacterial adhesion molecules to cellular receptors. Moreover, staphylococci secrete polysaccharides which form a biofilm together with multilayer cell clusters. The highly structured communities within a biofilm are resistant to distinct immunoeffectors and have a decreased susceptibility to antibiotics in vivo.
Aspects Of Antibiotic Therapy:
Assessing the severity of an infection is essential to selecting an antibiotic regimen, the mode of drug administration, and the duration of therapy. Regimens for severe and chronic infections are broader spectrum and often intravenously to obtain high drug concentrations immediately. Infections of the bone often require an antibiotic therapy for > 4 weeks, while a 1- to 2-week therapy for mild to moderate infections has been found to be effective.
Conclusions:
Because of the tremendous progress in diagnostics and therapy of diabetic foot infections, infectious complications can be successfully treated by appropriate wound care, metabolic control, and early surgical and antibiotic intervention. Bacterial biofilms involved into chronic infections are new aspects currently not visualized by clinical therapy. Besides the classic antimicrobial therapy, new concepts of an enzymatic therapy or the inhibition of bacterial "communication" (quorum sensing) are in progress and the hope for the future.
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