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Published on: February 28, 2018
Chronic wound microbiome colonization on mouse model following cryogenic preservation
Craig D Tipton1,2, Nicholas E Sanford3, Jake A Everett4
1Department of Biological Sciences, Texas Tech University, Lubbock, Texas, United States of America.
Cryogenic preservation of wound slough effectively transferred polymicrobial communities to mice. While cryopreservation didn't harm bacterial viability, host context, not preservation, influenced microbial community structure in chronic wound models.
Area of Science:
- Microbiology
- Wound Healing Research
- Infectious Diseases
Background:
- Chronic wound infections are complex, polymicrobial, and dynamic.
- Existing wound models need to reflect this complexity for accurate study.
- Cryogenic preservation offers potential for preserving and transferring polymicrobial wound communities.
Purpose of the Study:
- To investigate the efficacy of cryogenic preservation for transferring polymicrobial wound communities.
- To quantify the effects of cryopreservation and wound microbiome transplantation on microbial composition.
- To assess the viability of using preserved wound slough in animal models.
Main Methods:
- Slough from human chronic wounds and a mouse model were preserved via refrigeration or cryogenic freezing (with/without glycerol).
- Preserved slough was used to inoculate individual mice, creating polymicrobial infections.
- Wound microbiota were analyzed using culture isolation and 16S rRNA gene profiling (quantitative PCR).
Main Results:
- Cryogenic preservation did not significantly reduce bacterial viability.
- Reestablished microbial communities were associated with the patient of origin and host context.
- Transplanted human microbiomes showed reduced diversity and compositional changes in mice, independent of preservation method.
Conclusions:
- Cryopreservation is a viable method for preserving polymicrobial wound communities for transplantation.
- Host context significantly influences microbial community structure post-transplantation, more than preservation strategy.
- Changes in community structure are expected due to the shift in infection environment, not preservation method.
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