Immunomodulatory minicells and methods of use
The present disclosure is related to immunomodulatory bacterial minicells and methods of using the minicells.
1. A bacterial minicell, comprising perfringolysin O and invasin, wherein the invasin is displayed on the surface of the bacterial minicell.
2. The bacterial minicell of claim 1 , wherein the invasin is from Yersinia pseudotuberculosis .
3. The bacterial minicell of claim 1 , further comprising an exogenous polypeptide that is not a protein toxin.
4. The bacterial minicell of claim 1 , further comprising a protein toxin.
5. The bacterial minicell of claim 4 , wherein the protein toxin is a catalytic fragment of diphtheria toxin, gelonin, Pseudomonas exotoxin A, or ricin A.
6. The bacterial minicell of claim 1 , wherein the minicell is a Th1 immunomodulatory minicell.
7. The bacterial minicell of claim 1 , wherein the bacterial minicell is produced from a minicell-producing parental bacterial cell with an inactivated lpxM gene.
8. The bacterial minicell of claim 7 , wherein the minicell is produced from a minicell-producing strain of Salmonella spp., Listeria spp., Mycobacterium spp., Shigella spp., Yersinia spp., or Escherichia coli .
9. The bacterial minicell of claim 8 , further comprising one or more Thl cytokines, one or more pore forming cytolysin proteins, one or more phospholipases, or one or more immunomodulatory nucleic acids.
10. The bacterial minicell of claim 9 , wherein at least one of the one or more Th1 cytokines is IL-2, GMCSF, IL-12p40, IL-12p70, IL-18, TNF-α, or IFN-γ.
11. A method of treating bladder cancer, comprising administering to a patient in need thereof a bacterial minicell, wherein the bacterial minicell comprises perfringolysin O and invasin, wherein the invasin is displayed on the surface of the bacterial minicell.
12. The method of claim 11 , wherein the bladder cancer is non-muscle invasive bladder cancer.