<i>Alcaligenes faecalis</i> corrects aberrant matrix metalloproteinase expression to promote reepithelialization of diabetic wounds.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38924411.
- Also identified by DOI 10.1126/sciadv.adj2020 and PMC identifier 11204295.
- Licence recorded as CC BY-NC.
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Abstract
Chronic wounds are a common and costly complication of diabetes, where multifactorial defects contribute to dysregulated skin repair, inflammation, tissue damage, and infection. We previously showed that aspects of the diabetic foot ulcer microbiota were correlated with poor healing outcomes, but many microbial species recovered remain uninvestigated with respect to wound healing. Here, we focused on <i>Alcaligenes faecalis</i>, a Gram-negative bacterium that is frequently recovered from chronic wounds but rarely causes infection. Treatment of diabetic wounds with <i>A. faecalis</i> accelerated healing during early stages. We investigated the underlying mechanisms and found that <i>A. faecalis</i> treatment promotes reepithelialization of diabetic keratinocytes, a process that is necessary for healing but deficient in chronic wounds. Overexpression of matrix metalloproteinases in diabetes contributes to failed epithelialization, and we found that <i>A. faecalis</i> treatment balances this overexpression to allow proper healing. This work uncovers a mechanism of bacterial-driven wound repair and provides a foundation for the development of microbiota-based wound interventions.
Medical subject headings
- Alcaligenes faecalis
- Wound Healing
- Keratinocytes
- Matrix Metalloproteinases