# Antibacterial Effect and Possible Mechanism of Salicylic Acid Microcapsules against Escherichia coli and Staphylococcus aureus

**Authors:** Xiaoqiu Song, Rui Li, Qian Zhang, Shoukui He, Yifei Wang

PMC · DOI: 10.3390/ijerph191912761 · International Journal of Environmental Research and Public Health · 2022-10-06

## TL;DR

Salicylic acid microcapsules effectively kill E. coli and S. aureus by damaging their cell walls and membranes.

## Contribution

The study demonstrates the antibacterial efficacy and mechanism of salicylic acid microcapsules against two major bacteria.

## Key findings

- SAMs showed a minimum inhibitory and bactericidal concentration of 4 mg/mL against E. coli and S. aureus.
- SAMs rapidly reduced bacterial populations by over 99.9% within 10 minutes at 1 × MIC.
- SAMs disrupted bacterial cell walls and membranes, causing leakage of intracellular substances.

## Abstract

Microcapsules serve as a feasible formulation to load phenolic substances such as salicylic acid, a natural and safe antimicrobial agent. However, the antibacterial efficacy of salicylic acid microcapsules (SAMs) remains to be elucidated. Here, salicylic acid/β-cyclodextrin inclusion microcapsules were subjected to systematic antibacterial assays and preliminary antibacterial mechanism tests using Escherichia coli and Staphylococcus aureus as target organisms. It was found that the core-shell rhomboid-shaped SAMs had a smooth surface. SAMs exhibited a minimum inhibitory concentration (MIC) and a minimum bactericidal concentration (MBC) of 4 mg/mL against both bacteria. In the growth inhibition assay, 1/4 × MIC, 1/2 × MIC, and 1 × MIC of SAMs effectively retarded bacterial growth, and this effect was more prominent with the rise in the level of SAMs. Practically, SAMs possessed a rapid bactericidal effect at the 1 × MIC level with a reduction of more than 99.9% bacterial population within 10 min. A pronounced sterilization activity against E. coli and S. aureus was also observed when SAMs were embedded into hand sanitizers as antimicrobial agents. Moreover, exposure of both bacteria to SAMs resulted in the leakage of intracellular alkaline phosphatases and macromolecular substances (nucleic acids and proteins), which indicated the disruption of bacterial cell walls and cell membranes. In conclusion, SAMs were able to inactivate E. coli and S. aureus both in vitro and in situ, highlighting the promising utilization of this formulation for antimicrobial purposes in the area of food safety and public health.

## Linked entities

- **Chemicals:** salicylic acid (PubChem CID 338), β-cyclodextrin (PubChem CID 444041)
- **Species:** Escherichia coli (taxon 562), Staphylococcus aureus (taxon 1280)

## Full-text entities

- **Diseases:** infectious disease (MESH:D003141), SAMs (MESH:D011015), bacterial death (MESH:D003643), Vibrio cholera (MESH:D002771)
- **Chemicals:** dodecyl gallate (MESH:C008259), cocamide DEA (MESH:C038019), chitosan (MESH:D048271), lipopolysaccharide (MESH:D008070), sodium alginate (MESH:D000464), carbon (MESH:D002244), glycerin (MESH:D005990), essential oil (MESH:D009822), sugar (MESH:D000073893), Salicylic Acid (MESH:D020156), methyl-beta-cyclodextrin (MESH:C108732), Ethanol (MESH:D000431), reactive oxygen species (MESH:D017382), epigallocatechin gallate (MESH:C045651), oxygen (MESH:D010100), 1,3-butylene glycol (MESH:C028491), Coomassie brilliant blue (MESH:C004692), peptides (MESH:D010455), disodium EDTA (MESH:D004492), zinc (MESH:D015032), copper (MESH:D003300), starch (MESH:D013213), Coomassie Blue (MESH:C048139), CN108210346B (-), beta-CD (MESH:C031215), hydrogen (MESH:D006859), water (MESH:D014867), lecithin (MESH:D054709), cocamidopropyl betaine (MESH:C077055), saline (MESH:D012965), PBS (MESH:D007854),  (MESH:D064548),  (MESH:D000900),  (MESH:D047392)
- **Species:** Staphylococcus aureus (species) [taxon 1280], Fusarium oxysporum (species) [taxon 5507], Escherichia coli (E. coli, species) [taxon 562], Bacillus subtilis (species) [taxon 1423], Rhizopus stolonifer (species) [taxon 4846], Botrytis cinerea (gray fruit mold, species) [taxon 40559], Penicillium expansum (species) [taxon 27334], Octopus (genus) [taxon 6643], Bacteria Latreille et al. 1825 (Bacteria stick insect, genus) [taxon 629395]
- **Mutations:** C for 18-24, F20 S, C) for 24

## Full text

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## Figures

10 figures with captions in the complete paper: https://tomesphere.com/paper/PMC9566803/full.md

## References

47 references — full list in the complete paper: https://tomesphere.com/paper/PMC9566803/full.md

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Source: https://tomesphere.com/paper/PMC9566803