bioRxiv · 10.1101/2020.02.13.947606
Cell-specific cargo delivery using synthetic bacterial spores
Abstract
SSHELs are synthetic bacterial spore-like particles wherein the spores cell surface is partially reconstituted around 1 {micro}m-diameter silica beads coated with a lipid bilayer. Via a unique cysteine engineered in one of the surface proteins, the surface of SSHELs may be covalently decorated with molecules of interest. Here, we modified SSHELs with an affibody directed against HER2, a cell surface protein overexpressed in some breast and ovarian cancer cells, and loaded them with the chemotherapeutic agent doxorubicin. Drug-loaded SSHELs reduced tumor growth with lower toxicity in a mouse tumor xenograft model compared to free drug by specifically binding to HER2-positive cancer cells. We show that SSHELs bound to target cells are taken up and trafficked to acidic compartments, whereupon the cargo is released in a pH-dependent manner. Finally, we demonstrate that SHELLs can clear small tumor lesions in a complex tumor microenvironment in a zebrafish model of brain metastasis. We propose that SSHELs represent a versatile strategy for targeted drug delivery.
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Kong, M., Updegrove, T. B., Constantino, M. A., Gallardo, D., Wu, I.-L., Fitzgerald, D., Tanner, K., Ramamurthi, K. S.. 2020-02-13. Cell-specific cargo delivery using synthetic bacterial spores. https://doi.org/10.1101/2020.02.13.947606
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