In situ rheology of Staphylococcus epidermidis bacterial biofilms
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作者:
Pavlovsky, Leonid
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Univ Michigan, Dept Chem Engn, Ann Arbor, MI 48109 USAUniv Michigan, Dept Emergency Med, Ann Arbor, MI 48109 USA
Pavlovsky, Leonid
[2
]
Younger, John G.
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Univ Michigan, Dept Emergency Med, Ann Arbor, MI 48109 USA
Univ Michigan, Biointerfaces Inst, Ann Arbor, MI 48109 USA
Univ Michigan, Michigan Ctr Integrat Res Crit Care, Ann Arbor, MI 48109 USAUniv Michigan, Dept Emergency Med, Ann Arbor, MI 48109 USA
Younger, John G.
[1
,3
,4
]
Solomon, Michael J.
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Univ Michigan, Dept Chem Engn, Ann Arbor, MI 48109 USA
Univ Michigan, Biointerfaces Inst, Ann Arbor, MI 48109 USAUniv Michigan, Dept Emergency Med, Ann Arbor, MI 48109 USA
Solomon, Michael J.
[2
,3
]
机构:
[1] Univ Michigan, Dept Emergency Med, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Dept Chem Engn, Ann Arbor, MI 48109 USA
[3] Univ Michigan, Biointerfaces Inst, Ann Arbor, MI 48109 USA
[4] Univ Michigan, Michigan Ctr Integrat Res Crit Care, Ann Arbor, MI 48109 USA
We developed a method to grow Staphylococcus epidermidis bacterial biofilms and characterize their rheological properties in situ in a continuously fed bioreactor incorporated into a parallel plate rheometer. The temperature and shear rates of growth modeled bloodstream conditions, a common site of S. epidermidis infection. We measured the linear elastic (G') and viscous moduli (G '') of the material using small-amplitude oscillatory rheology and the yield stress using non-linear creep rheology. We found that the elastic and viscous moduli of the S. epidermidis biofilm were 11 +/- 3 Pa and 1.9 +/- 0.5 Pa at a frequency of 1 Hz (6.283 rad per s) and that the yield stress was approximately 20 Pa. We modeled the linear creep response of the biofilm using a Jeffreys model and found that S. epidermidis has a characteristic relaxation time of approximately 750 seconds and a linear creep viscosity of 3000 Pa s. The effects on the linear viscoelastic moduli of environmental stressors, such as NaCl concentration and extremes of temperature, were also studied. We found a non-monotonic relationship between moduli and NaCl concentrations, with the stiffest material properties found at human physiological concentrations (135 mM). Temperature dependent rheology showed hysteresis in the moduli when heated and cooled between 5 degrees C and 60 degrees C. Through these experiments, we demonstrated that biofilms are rheologically complex materials that can be characterized by a combination of low modulus (similar to 10 Pa), long relaxation time (similar to 10(3) seconds), and a finite yield stress (20 Pa). This suggests that biofilms should be viewed as soft viscoelastic solids whose properties are determined in part by local environmental conditions. The in situ growth method introduced here can be adapted to a wide range of biofilm systems and applied over a broad spectrum of rheological and environmental conditions because the technique minimizes the risk of irreversible, non-linear deformation of the microbial specimen before analysis.
机构:
Univ Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USAUniv Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USA
Kaplan, JB
Ragunath, C
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Univ Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USAUniv Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USA
Ragunath, C
Velliyagounder, K
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Univ Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USAUniv Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USA
Velliyagounder, K
Fine, DH
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Univ Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USAUniv Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USA
Fine, DH
Ramasubbu, N
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Univ Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USAUniv Med & Dent New Jersey, New Jersey Dent Sch, Dept Oral Biol, Newark, NJ 07103 USA
机构:
Univ Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, Germany
Prince Songkla Univ, Fac Sci, Nat Prod Res Ctr, Hat Yai, Songkhla, Thailand
Prince Songkla Univ, Fac Sci, Dept Microbiol, Hat Yai, Songkhla, ThailandUniv Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, Germany
Saising, Jongkon
Dube, Linda
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Univ Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, GermanyUniv Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, Germany
Dube, Linda
Ziebandt, Anne-Kathrin
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Univ Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, GermanyUniv Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, Germany
Ziebandt, Anne-Kathrin
Voravuthikunchai, Supayang Piyawan
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Prince Songkla Univ, Fac Sci, Nat Prod Res Ctr, Hat Yai, Songkhla, Thailand
Prince Songkla Univ, Fac Sci, Dept Microbiol, Hat Yai, Songkhla, ThailandUniv Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, Germany
Voravuthikunchai, Supayang Piyawan
Nega, Mulugeta
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Univ Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, GermanyUniv Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, Germany
Nega, Mulugeta
Goetz, Friedrich
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Univ Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, GermanyUniv Tubingen, Inst Microbiol & Infect Med Tubingen, Tubingen, Germany
机构:
NW Feinberg Sch Med, Chicago, IL USANW Feinberg Sch Med, Chicago, IL USA
Gurjala, Anandev N.
Leung, Kai P.
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US Army Dent & Trauma Res Detachment, Microbiol & Immunol Branch, Walter Reed Army Inst Res, Great Lakes Naval Training Stn, Great Lakes, IL USANW Feinberg Sch Med, Chicago, IL USA
Leung, Kai P.
Galiano, Robert D.
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NW Feinberg Sch Med, Chicago, IL USANW Feinberg Sch Med, Chicago, IL USA
Galiano, Robert D.
Mustoe, Thomas A.
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NW Feinberg Sch Med, Chicago, IL USANW Feinberg Sch Med, Chicago, IL USA