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Engineering the type III secretion system in non-replicating bacterial minicells for antigen delivery.


ABSTRACT: Type III protein secretion systems are being considered for vaccine development as virtually any protein antigen can be engineered for delivery by these nanomachines into the class I antigen presentation pathway to stimulate antigen-specific CD8(+) T cells. A limitation in the use of this system is that it requires live virulence-attenuated bacteria, which may preclude its use in certain populations such as children and the immunocompromised. Here we report the engineering of the Salmonella Typhimurium type III secretion system in achromosomal, non-replicating nanoparticles derived from bacterial minicells. The engineered system is shown to be functional and capable of delivering heterologous antigens to the class I antigen presentation pathway stimulating immune responses both in vitro and in vivo. This antigen delivery platform offers a novel approach for vaccine development and cellular immunotherapy.

SUBMITTER: Carleton HA 

PROVIDER: S-EPMC3693737 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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Engineering the type III secretion system in non-replicating bacterial minicells for antigen delivery.

Carleton Heather A HA   Lara-Tejero María M   Liu Xiaoyun X   Galán Jorge E JE  

Nature communications 20130101


Type III protein secretion systems are being considered for vaccine development as virtually any protein antigen can be engineered for delivery by these nanomachines into the class I antigen presentation pathway to stimulate antigen-specific CD8(+) T cells. A limitation in the use of this system is that it requires live virulence-attenuated bacteria, which may preclude its use in certain populations such as children and the immunocompromised. Here we report the engineering of the Salmonella Typh  ...[more]

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