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Effect of Cadexomer Iodine on the Microbial Load and Diversity of Chronic Non-healing Diabetic Foot Ulcers Complicated by Biofilm in Vivo

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Date 2017 Apr 13
PMID 28402558
Citations 28
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Abstract

Objectives: The performance of cadexomer iodine was determined against microbial populations from chronic non-healing diabetic foot ulcers (DFUs) complicated by biofilm in vivo , using molecular, microscopy and zymography methods.

Methods: Chronic non-healing DFUs due to suspected biofilm involvement were eligible for enrolment. DNA sequencing and real-time quantitative PCR was used to determine the microbial load and diversity of tissue punch biopsies obtained pre- and post-treatment. Scanning electron microscopy and/or fluorescence in situ hybridization confirmed the presence or absence of biofilm. Zymography was used to determine levels of wound proteases.

Results: Seventeen participants were recruited over a 6 month period. Scanning electron microscopy and or fluorescence in situ hybridization confirmed the presence of biofilm in all samples. Eleven participants exhibited log 10 reductions in microbial load after treatment (range 1-2 log 10 ) in comparison with six patients who experienced <1 log 10 reduction ( P  =   0.04). Samples were tested for levels of wound proteases pre- and post-treatment. Reductions in the microbial load correlated to reductions in wound proteases pre- and post-treatment ( P  =   0.03).

Conclusions: To the best of our knowledge, this study represents the first in vivo evidence, employing a range of molecular and microscopy techniques, of the ability of cadexomer iodine to reduce the microbial load of chronic non-healing DFUs complicated by biofilm. Further analyses correlating log reductions to optimal duration of therapy and improvements in clinical parameters of wound healing in a larger cohort are required.

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References
1.
Trebesius K, Leitritz L, Adler K, Schubert S, Autenrieth I, Heesemann J . Culture independent and rapid identification of bacterial pathogens in necrotising fasciitis and streptococcal toxic shock syndrome by fluorescence in situ hybridisation. Med Microbiol Immunol. 2000; 188(4):169-75. DOI: 10.1007/s004300000035. View

2.
Bjarnsholt T, Kirketerp-Moller K, Jensen P, Madsen K, Phipps R, Krogfelt K . Why chronic wounds will not heal: a novel hypothesis. Wound Repair Regen. 2008; 16(1):2-10. DOI: 10.1111/j.1524-475X.2007.00283.x. View

3.
Gardner S, Hillis S, Heilmann K, Segre J, Grice E . The neuropathic diabetic foot ulcer microbiome is associated with clinical factors. Diabetes. 2012; 62(3):923-30. PMC: 3581190. DOI: 10.2337/db12-0771. View

4.
Hibbing M, Fuqua C, Parsek M, Peterson S . Bacterial competition: surviving and thriving in the microbial jungle. Nat Rev Microbiol. 2009; 8(1):15-25. PMC: 2879262. DOI: 10.1038/nrmicro2259. View

5.
Fitzgerald D, Renick P, Forrest E, Tetens S, Earnest D, McMillan J . Cadexomer iodine provides superior efficacy against bacterial wound biofilms in vitro and in vivo. Wound Repair Regen. 2016; 25(1):13-24. DOI: 10.1111/wrr.12497. View