Attenuated Salmonella enterica offers a vaccine delivery route that has the benefits of enhanced immunogenicity and oral delivery. The majority of immunization studies have been conducted to deliver recombinant proteins, expressed from a gene that is either chromosomally integrated or carried on a low- or medium-copy number plasmid. There are, however, an increasing number of reports demonstrating the delivery of DNA vaccines, but the high-copy number plasmids that are preferentially used for this application are unstable in Salmonella. Here, we use the Operator-Repressor Titration (ORT) plasmid maintenance system in Salmonella enterica serovar Typhimurium to deliver a high-copy number plasmid expressing the Mycobacterium tuberculosis gene mpt64 to mice. MPT64 expression was detected in phagocytes using immunofluorescence microscopy following Salmonella-mediated delivery of the DNA vaccine. The indicative CD8+ responses measured by antigen-specific IFN-γ were higher from the live bacterial vector than from injected plasmid DNA, and a reduction in the pulmonary bacterial load was seen following an aerogenic challenge. This illustrates the potential of live attenuated Salmonella as oral tuberculosis vaccine vectors.

Huang, J., Sali, M., Leckenby, M., Radford, D., Huynh, H., Delogu, G., Cranenburgh, R., Cutting, S., Oral delivery of a DNA vaccine against tuberculosis using operator-repressor titration in a Salmonella enterica vector, <<VACCINE>>, 2010; 28 (47): 7523-7528. [doi:10.1016/j.vaccine.2010.09.001] [http://hdl.handle.net/10807/4954]

Oral delivery of a DNA vaccine against tuberculosis using operator-repressor titration in a Salmonella enterica vector

Sali, Michela;Delogu, Giovanni;
2010

Abstract

Attenuated Salmonella enterica offers a vaccine delivery route that has the benefits of enhanced immunogenicity and oral delivery. The majority of immunization studies have been conducted to deliver recombinant proteins, expressed from a gene that is either chromosomally integrated or carried on a low- or medium-copy number plasmid. There are, however, an increasing number of reports demonstrating the delivery of DNA vaccines, but the high-copy number plasmids that are preferentially used for this application are unstable in Salmonella. Here, we use the Operator-Repressor Titration (ORT) plasmid maintenance system in Salmonella enterica serovar Typhimurium to deliver a high-copy number plasmid expressing the Mycobacterium tuberculosis gene mpt64 to mice. MPT64 expression was detected in phagocytes using immunofluorescence microscopy following Salmonella-mediated delivery of the DNA vaccine. The indicative CD8+ responses measured by antigen-specific IFN-γ were higher from the live bacterial vector than from injected plasmid DNA, and a reduction in the pulmonary bacterial load was seen following an aerogenic challenge. This illustrates the potential of live attenuated Salmonella as oral tuberculosis vaccine vectors.
2010
Inglese
Huang, J., Sali, M., Leckenby, M., Radford, D., Huynh, H., Delogu, G., Cranenburgh, R., Cutting, S., Oral delivery of a DNA vaccine against tuberculosis using operator-repressor titration in a Salmonella enterica vector, <<VACCINE>>, 2010; 28 (47): 7523-7528. [doi:10.1016/j.vaccine.2010.09.001] [http://hdl.handle.net/10807/4954]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10807/4954
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