Analysis of myeloperoxidase activity in wound fluids as a marker of infection

Author:

Hasmann A1,Wehrschuetz-Sigl E2,Marold A1,Wiesbauer H3,Schoeftner R3,Gewessler U1,Kandelbauer A4,Schiffer D1,Schneider K P2,Binder B5,Schintler M6,Guebitz G M1

Affiliation:

1. Department of Environmental Biotechnology, Graz University of Technology, Petersgasse 12

2. Austrian Center of Industrial Biotechnology, Petersgasse 14, 8010 Graz

3. Functional Surfaces & Nanostructures, PROFACTOR GmbH, Im Stadtgut A2, 4407 Steyr-Gleink, Austria

4. School of Applied Chemistry, Reutlingen University, 72762 Reutlingen, Germany

5. Department of Dermatology

6. Department of Surgery, Medical University of Graz, 8010 Graz, Austria

Abstract

Background Neutrophilic polymorphonuclear leukocytes play a crucial role in the host defence against bacterial and fungal infections. They participate in the inflammatory response through the liberation of peptides and enzymes like myeloperoxidase (MPO). Therefore, MPO has a potential as a marker enzyme for the diagnosis of wound infection. Methods Substrate specificities and reaction pathways of MPO were investigated for new MPO substrates: crystal violet, leuco crystal violet, fast blue RR (4-benzoylamino-2,5-dimethoxybenzenediazonium chloride hemi(zinc chloride) salt) and various systematically substituted model substrates based on 2,7-dihydroxy-1-(4-hydroxyphenylazo)naphtalene-3,6-disulphonic acid. In addition, fast blue RR was covalently bound to siloxanes allowing immobilization of the substrate, while cellobiosedehydrogenase was integrated for generation of hydrogen peroxide required by MPO. Results Elevated concentrations of MPO were found in infected wounds compared with non-infected wounds (92.2 ± 45.0 versus 1.9 ± 1.8 U/mL). Various soluble and immobilized substrates were oxidized by MPO in wound samples and the influence of substrate structure and reaction pathways were elucidated for selected compounds. Conclusions Incubation of different MPO substrates with infected wound fluid samples resulted in a clear colour change in the case of elevated MPO concentrations, thus allowing early diagnosis of wound infection.

Publisher

SAGE Publications

Subject

Clinical Biochemistry,General Medicine

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