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Updated: Jul 27, 2026

Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
Detection and partial characterization of extracellular inducers of persistence in Staphylococcus epidermidis and
Elyse C Curry1, Ryan G Hart1,2, Danni Y Habtu1,3
1The Department of Microbiology/Immunology, A. T. Still University of Health Sciences, Kirksville College of Osteopathic Medicine, 800 West Jefferson Street, Kirksville, USA.
Abstract:
Introduction. This study describes the identification and partial characterization of persistence-inducing factors (PIFs) from staphylococci.Hypothesis/Gap Statement. Increases in persisters during mid-log phase growth indicate that quorum-sensing factors might be produced by staphylococci.Aim. To identify and partially characterize PIFs from Staphylococcus epidermidis RP62A and Staphylococcus aureus SH1000.Methodology. Others have demonstrated a significant increase in persister numbers during mid-log phase. Inducers of this mid-log increase have yet to be identified in staphylococci. Optical density at 600 nm (OD600) was used instead of time to determine when persister numbers increased during logarithmic growth. Concentrated culture filtrates (CCFs) from S. epidermidis and S. aureus were obtained at various OD600s and following incubation at 16 h. The CCFs were used to develop a PIF assay. The PIF assay was used to partially characterize PIF from S. epidermidis and S. aureus for sizing of PIF activity, temperature and protease sensitivity and inter-species communications.Results. The optimal OD600s for S. epidermidis and S. aureus PIF assays were 2.0 and 0.5, respectively. The highest PIF activity for both species was from CCF following incubation overnight (16 h). S. epidermidis' PIF activity was decreased by storage at 4 oC but not at 20 oC (16 h), 37 oC (1 h) or 100 oC (15 min). S. aureus' PIF activity was decreased following storage at 4 oC (2 weeks) and after boiling at 100 oC for 5 min but not after incubation at 37 oC (1 h). PIF activity from both species went through a 3000 molecular weight cutoff ultrafilter. Proteinase K treatment of S. aureus PIF decreased activity but did not decrease the PIF activity of S. epidermidis. PIF from S. epidermidis did not increase persisters when used to treat S. aureus cells and nor did PIF from S. aureus increase persisters when used to treat S. epidermidis cells.Conclusions. Attempts to discover PIFs for staphylococci were unsuccessful due to the time-based means used to identify mid-log. Both staphylococcal species produce extracellular, low-molecular-weight inducers of persistence when assayed using an OD600 -based PIF assay.
Insights
Staphylococci produce extracellular persistence-inducing factors (PIFs) that are low-molecular-weight molecules. These factors increase bacterial persister cell numbers, aiding in antibiotic resistance.
Area of Science:
- Microbiology
- Bacterial persistence
- Quorum sensing
Background:
- Bacterial persister cells are a subpopulation tolerant to antibiotics.
- Increases in persister numbers during mid-log phase suggest the involvement of signaling molecules.
- Quorum-sensing factors are potential inducers of persister formation in staphylococci.
Purpose of the Study:
- To identify and partially characterize persistence-inducing factors (PIFs) in *Staphylococcus epidermidis* and *Staphylococcus aureus*.
- To investigate the role of quorum sensing in staphylococcal persister cell formation.
- To develop a novel assay for PIF detection based on optical density.
Main Methods:
- Developed a persistence-inducing factor (PIF) assay using optical density (OD600) to determine optimal growth phase for PIF production.
- Collected concentrated culture filtrates (CCFs) from *S. epidermidis* and *S. aureus* at various OD600s and after overnight incubation.
- Characterized PIF activity based on temperature sensitivity, protease sensitivity (Proteinase K), ultrafiltration (3000 MWCO), and inter-species activity.
Main Results:
- Optimal PIF production for *S. epidermidis* and *S. aureus* was observed at OD600 of 2.0 and 0.5, respectively, with highest activity after 16h incubation.
- PIF activity was heat-labile, with varying sensitivity to temperature and boiling, and passed through a 3000 MWCO ultrafilter, indicating low molecular weight.
- Proteinase K treatment reduced *S. aureus* PIF activity but not *S. epidermidis* PIF activity; no inter-species PIF activity was observed.
Conclusions:
- Both *S. epidermidis* and *S. aureus* produce extracellular, low-molecular-weight persistence-inducing factors.
- The developed OD600-based PIF assay is effective for identifying these factors, overcoming limitations of time-based methods.
- The identified PIFs are species-specific and suggest a role in regulating bacterial persistence.
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