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Scalable Isolation and Purification of Extracellular Vesicles from Escherichia coli and Other Bacteria
Published on: October 13, 2021
Isolation of Outer Membrane Vesicles from Helicobacter pylori
1Trinity Translational Medicine Institute, Trinity Centre for Health Sciences, St James's Hospital, Dublin 8, Ireland. hjwindle@tcd.ie.
Abstract:
Outer membrane vesicles (OMV) shed by pathogenic bacteria have multifunctional roles in disease initiation and progression. Further, their efficacy as novel vaccines has underscored their importance as potential therapeutics. Consequently, to advance allied research related to their immunogenicity and pathogenicity it is important to separate these vesicular structures from parental cells and demonstrate them to be free from cellular debris and other non-vesicle-related constituents such as protein aggregates. To do so represents a key step in initiating OMV-related studies and the techniques and strategies adopted by the H. pylori community to achieve this will be the focus of this chapter.The key methods used typically to obtain a heterogeneous mixture of OMV (size range: ~20-300 nm in diameter) include growth of bacteria in broth culture followed by differential centrifugation, filtration, and concentration to separate OMV from the intact organisms. Additional measures may be adopted to further size-fractionate the population of OMV including gel filtration or density gradient ultra-centrifugation in order to facilitate differentiation between the activities of small versus large OMV, as recent studies have demonstrated differential modes of entry into host cells as well as size-dependent differences in the OMV proteome (Turner et al., Front Immunol 9:1466, 2018). The OMV from H. pylori harbor many of the virulence factors associated with gastric disease including the CagA oncoprotein, the cytotoxin VacA, and the HtrA protease (Olofsson et al., mBio 5:e00979-14, 2014; Mullaney et al., Proteomics Clin Appl 3:785-96, 2009) and their close association with areas of cell-cell contact and efficient endocytosis supports a role for these complexes in gastric disease (Turkina et al., FEMS Microbiol Lett 362:fnv076, 2015).
Insights
Outer membrane vesicles (OMVs) are crucial in bacterial disease and vaccine development. This chapter details methods for isolating pure OMVs from Helicobacter pylori, essential for studying their role in gastric disease.
Area of Science:
- Microbiology
- Bacteriology
- Immunology
Background:
- Outer membrane vesicles (OMVs) are released by pathogenic bacteria and play significant roles in disease progression and potential therapeutic applications.
- Accurate isolation of OMVs, free from cellular debris and aggregates, is critical for understanding their immunogenicity and pathogenicity.
- Helicobacter pylori OMVs contain key virulence factors implicated in gastric disease.
Purpose of the Study:
- To focus on the techniques and strategies employed by the H. pylori research community for isolating and purifying outer membrane vesicles.
- To highlight the importance of pure OMV preparations for advancing research into their roles in disease and as vaccine candidates.
Main Methods:
- Bacterial culture in broth followed by differential centrifugation, filtration, and concentration to separate OMVs from parental cells.
- Size-fractionation techniques such as gel filtration and density gradient ultracentrifugation to differentiate between small and large OMVs.
- Characterization of H. pylori OMVs for the presence of virulence factors like CagA, VacA, and HtrA.
Main Results:
- Established methods effectively separate heterogeneous mixtures of OMVs (20-300 nm) from H. pylori.
- Size-fractionation reveals differential host cell entry and proteomic profiles between small and large OMVs.
- H. pylori OMVs are confirmed to carry major virulence factors contributing to gastric pathogenesis.
Conclusions:
- The isolation and purification of OMVs are foundational steps for investigating their biological functions.
- Understanding OMV composition and size-dependent properties is key to elucidating their role in H. pylori-associated gastric diseases.
- Standardized isolation techniques are vital for reproducible research on OMVs in both pathogenicity and therapeutic contexts.
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