Tuning cell behavior with nanoparticle shape

Author:

Scarpa Edoardo,De Pace Cesare,Joseph Adrian Steve,de Souza Senio Campos,Poma Alessandro,Liatsi-Douvitsa Eva,Contini ClaudiaORCID,De Matteis Valeria,Martí Josep Samitier,Battaglia Giuseppe,Rizzello LorisORCID

Abstract

We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the replication activity and metabolic state of both cancer and non-cancer cell types. First, we isolated discrete geometrical structures (spheres and tubes) from a heterogeneous sample using density-gradient centrifugation. Then, we characterized the cellular internalization and the kinetics of uptake of both types of polymersomes in different cell types (either cancer or non-cancer cells). We also investigated the cellular metabolic response as a function of the shape of the structures internalized and discovered that tubular vesicles induce a significant decrease in the replication activity of cancer cells compared to spherical vesicles. We related this effect to the significant up-regulation of the tumor suppressor genes p21 and p53 with a concomitant activation of caspase 3/7. Finally, we demonstrated that combining the intrinsic shape-dependent effects of tubes with the delivery of doxorubicin significantly increases the cytotoxicity of the system. Our results illustrate how the geometrical conformation of nanoparticles could impact cell behavior and how this could be tuned to create novel drug delivery systems tailored to specific biomedical application.

Funder

H2020 Marie Skłodowska-Curie Actions

European Research Council

Engineering and Physical Sciences Research Council

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

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