Effect of mesoporous silica under Neisseria meningitidis transformation process: environmental effects under meningococci transformation
- PMID: 21787408
- PMCID: PMC3152511
- DOI: 10.1186/1477-3155-9-28
Effect of mesoporous silica under Neisseria meningitidis transformation process: environmental effects under meningococci transformation
Abstract
Background: This study aimed the use of mesoporous silica under the naturally transformable Neisseria meningitidis, an important pathogen implicated in the genetic horizontal transfer of DNA causing a escape of the principal vaccination measures worldwide by the capsular switching process. This study verified the effects of mesoporous silica under N. meningitidis transformation specifically under the capsular replacement.
Methods: we used three different mesoporous silica particles to verify their action in N. meningitis transformation frequency.
Results: we verified the increase in the capsular gene replacement of this bacterium with the three mesoporous silica nanoparticles.
Conclusion: the mesouporous silica particles were capable of increasing the capsule replacement frequency in N. meningitidis.
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References
-
- Zhou D, Stephens DS, Gibson BW, Engstrom JJ, McAllister CF, Lee FK, Apicella MA. Lipooligosaccharide biosynthesis in pathogenic Neisseria. Cloning, identification, and characterization of the phosphoglucomutase gene. J Biol Chem. 1994;269:11162–11169. - PubMed
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