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Fluorescence Microscopy Methods for Determining the Viability of Bacteria in Association with Mammalian Cells
Published on: September 5, 2013
Long-term survival of Streptococcus pyogenes in rich media is pH-dependent
Dragutin J Savic1, William M McShan1
1Department of Pharmaceutical Sciences, The University of Oklahoma College of Pharmacy, PO Box 26901, Oklahoma City, OK 73190, USA.
Abstract:
The mechanisms that allow Streptococcus pyogenes to survive and persist in the human host, often in spite of antibiotic therapy, remain poorly characterized. Therefore, the determination of culture conditions for long-term studies is crucial to advancement in this field. Stationary cultures of S. pyogenes strain NZ131 and its spontaneous small-colony variant OK171 were found to survive in rich medium for less than 2 weeks, and this inability to survive resulted from the acidification of the medium to below pH 5.5, which the cells did not tolerate for longer than 6-7 days. The growth of NZ131 resulted in acidification of the culture to below pH 5.5 by the onset of stationary phase, and the loss of viability occurred in a linear fashion. These results were also found to be true for M49 strain CS101 and for M1 strain SF370. The S. pyogenes strains could be protected from killing by the addition of a buffer that stabilized the pH of the medium at pH 6.5, ensuring bacterial survival to at least 70 days. By contrast, increasing the glucose added to the medium accelerated the loss of culture viability in strain NZ131 but not OK171, suggesting that the small-colony variant is altered in glucose uptake or metabolism. Similarly, acidification of the medium prior to inoculation or at the middle of exponential phase resulted in growth inhibition of all strains. These results suggest that control of the pH is crucial for establishing long-term cultures of S. pyogenes.
Insights
Controlling pH is crucial for Streptococcus pyogenes long-term cultures. Acidification below pH 5.5 limits survival, but buffering to pH 6.5 ensures viability for over 70 days.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Host-Pathogen Interactions
Background:
- Streptococcus pyogenes survival mechanisms in humans are not fully understood.
- Long-term culture conditions are needed to study S. pyogenes persistence and antibiotic resistance.
Purpose of the Study:
- To determine optimal culture conditions for long-term Streptococcus pyogenes survival.
- To investigate the impact of pH and glucose on S. pyogenes viability.
Main Methods:
- Culturing S. pyogenes strains (NZ131, OK171, CS101, SF370) in rich medium.
- Monitoring pH changes and bacterial viability over time.
- Testing the effect of buffering and altered glucose concentrations on survival.
Main Results:
- S. pyogenes cultures acidified to below pH 5.5 lost viability within 6-7 days.
- Buffering the medium at pH 6.5 extended survival to over 70 days.
- Increased glucose accelerated viability loss in strain NZ131 but not the small-colony variant OK171.
Conclusions:
- pH control is essential for establishing and maintaining long-term Streptococcus pyogenes cultures.
- The small-colony variant OK171 may have altered glucose metabolism.
- Understanding these factors can aid in studying S. pyogenes pathogenesis and developing treatments.
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