Balanced and unbalanced solutions modulate the release of Matrix Metalloproteinase-9 (MMP-9) from neutrophils in response to inflammatory stimuli: an in vitro study

Inflamm Res. 2014 May;63(5):325-8. doi: 10.1007/s00011-014-0709-5. Epub 2014 Jan 24.

Abstract

Objectives and design: We investigated the effect of balanced (BS) and unbalanced (UBS) solutions in the absence or presence of hydroxyethyl starch (HES) on neutrophil functionality, evaluating the release of matrix metalloproteinase (MMP)-9, myeloperoxidase (MPO), and MMP-8.

Materials and methods: Neutrophils were isolated by gradient centrifugation and dextran sedimentation and incubated in BS or UBS without or with HES, in the absence or presence of Interleukin-8 (IL-8) or Lipopolysaccharide (LPS). MMP-9, MPO, and MMP-8 were assayed by commercially available ELISA kits.

Results: There was not any influence of volume replacement solutions on the release of the enzymes from resting neutrophils. After IL-8 stimulation, the release of MMP-9 was higher in BS than in UBS or RPMI-1640, whereas HES enhanced its release regardless of the composition. After LPS stimulation, the release of MMP-9 was higher in both UBS and BS than RPMI-1640, but HES brought its release back to physiological conditions. No difference was found in the release of MPO and MMP-8 after stimulation with IL-8 or LPS.

Conclusion: Volume replacement solutions might have an impact on the release of MMP-9 depending on the inflammatory milieu, suggesting that the use of balanced or unbalanced solutions is not a neutral choice.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Humans
  • Hydroxyethyl Starch Derivatives / pharmacology
  • Inflammation / immunology*
  • Interleukin-8 / pharmacology
  • Lipopolysaccharides / pharmacology
  • Matrix Metalloproteinase 9 / metabolism*
  • Neutrophils / drug effects
  • Neutrophils / enzymology*
  • Neutrophils / metabolism
  • Solutions

Substances

  • Hydroxyethyl Starch Derivatives
  • Interleukin-8
  • Lipopolysaccharides
  • Solutions
  • MMP9 protein, human
  • Matrix Metalloproteinase 9