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PMID: 18325110 Published · epublish English Journal Article

Survey of bacterial diversity in chronic wounds using pyrosequencing, DGGE, and full ribosome shotgun sequencing.

BMC microbiology ·Vol. 8 ·2008-03-06 ·Pages 43

Dowd SE, Sun Y, Secor PR, Rhoads DD, Wolcott BM, James GA, Wolcott RD

Abstract

Chronic wound pathogenic biofilms are host-pathogen environments that colonize and exist as a cohabitation of many bacterial species. These bacterial populations cooperate to promote their own survival and the chronic nature of the infection. Few studies have performed extensive surveys of the bacterial populations that occur within different types of chronic wound biofilms. The use of 3 separate16S-based molecular amplifications followed by pyrosequencing, shotgun Sanger sequencing, and denaturing gradient gel electrophoresis were utilized to survey the major populations of bacteria that occur in the pathogenic biofilms of three types of chronic wound types: diabetic foot ulcers (D), venous leg ulcers (V), and pressure ulcers (P). There are specific major populations of bacteria that were evident in the biofilms of all chronic wound types, including Staphylococcus, Pseudomonas, Peptoniphilus, Enterobacter, Stenotrophomonas, Finegoldia, and Serratia spp. Each of the wound types reveals marked differences in bacterial populations, such as pressure ulcers in which 62% of the populations were identified as obligate anaerobes. There were also populations of bacteria that were identified but not recognized as wound pathogens, such as Abiotrophia para-adiacens and Rhodopseudomonas spp. Results of molecular analyses were also compared to those obtained using traditional culture-based diagnostics. Only in one wound type did culture methods correctly identify the primary bacterial population indicating the need for improved diagnostic methods. If clinicians can gain a better understanding of the wound's microbiota, it will give them a greater understanding of the wound's ecology and will allow them to better manage healing of the wound improving the prognosis of patients. This research highlights the necessity to begin evaluating, studying, and treating chronic wound pathogenic biofilms as multi-species entities in order to improve the outcomes of patients. This survey will also foster the pioneering and development of new molecular diagnostic tools, which can be used to identify the community compositions of chronic wound pathogenic biofilms and other medical biofilm infections.

MeSH Terms
Bacteria, Anaerobic/isolation & purification Bacterial Infections/microbiology Bacteriological Techniques Biofilms Chronic Disease DNA, Bacterial/chemistry Diabetic Foot/microbiology Gram-Negative Bacteria/genetics,isolation & purification Gram-Positive Bacteria/genetics,isolation & purification Humans Pressure Ulcer/microbiology Varicose Ulcer/microbiology
Chemicals
DNA, Bacterial
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Dowd Scot E
United States Department of Agriculture ARS Livestock Issues Research Unit, Lubbock, TX, USA. sdowd@lbk.ars.usda.gov
Sun Yan
Secor Patrick R
Rhoads Daniel D
Wolcott Benjamin M
James Garth A
Wolcott Randall D
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Article Info
Journal
BMC microbiology
Abbr.
BMC Microbiol
ISSN
1471-2180
Published
2008-03-06
Epub
2008-00-06
Pages
43
Language
English
Region
England
NLM ID
100966981
PMCID
PMC2289825
Subset
IM
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