Extracellular vesicles from Lactobacillus druckerii inhibit hypertrophic scar fibrosis

J Nanobiotechnology. 2023 Mar 28;21(1):113. doi: 10.1186/s12951-023-01861-y.

Abstract

Background: Hypertrophic scars (HS) affect millions of people each year and require better treatment strategies. Bacterial extracellular vesicles (EVs) are advantaged by low cost and high yield which was commonly used in the treatment of diseases. Here, we investigated the therapeutic efficacy of EVs obtained from Lactobacillus druckerii in hypertrophic scar. In vitro, the effects of Lactobacillus druckerii-derived EVs (LDEVs) on Collagen I/III and α-SMA in fibroblasts obtained from HS. In vivo, a scleroderma mouse model was used to investigate the effects of LDEVs on fibrosis. The impact of LDEVs on excisional wound healing was explored. The different proteins between PBS and LDEVs treated fibroblasts derived from hypertrophic scar were studied by untargeted proteomic analysis.

Results: In vitro, LDEVs treatment significantly inhibited the expression of Collagen I/III and α-SMA and cell proliferation of fibroblasts derived from HS. In vivo, LDEVs withdrawn the hypertrophic scar formation in scleroderma mouse model and decreased the expression of α-SMA. LDEVs promoted the proliferation of skin cells, new blood vessel formation and wound healing in excisional wound healing mice model. Moreover, proteomics has shown that LDEVs inhibit hypertrophic scar fibrosis through multiple pathways.

Conclusions: Our results indicated that Lactobacillus druckerii-derived EVs has the potential application in the treatment of hypertrophic scars and any other fibrosis diseases.

Keywords: Extracellular vesicles; Fibrosis; Hypertrophic scar; Lactobacillus druckerii; Probiotic.

MeSH terms

  • Animals
  • Cicatrix, Hypertrophic* / drug therapy
  • Cicatrix, Hypertrophic* / metabolism
  • Cicatrix, Hypertrophic* / pathology
  • Collagen Type I / metabolism
  • Extracellular Vesicles* / metabolism
  • Fibroblasts
  • Lactobacillus / metabolism
  • Mice
  • Proteomics

Substances

  • Collagen Type I