Enhancing Inflammation Targeting Using Tunable Leukocyte-Based Biomimetic Nanoparticles.

Zinger, Assaf; Sushnitha, Manuela; Naoi, Tomoyuki; Baudo, Gherardo; De Rosa, Enrica; Chang, Jenny; Tasciotti, Ennio; Taraballi, Francesca · ACS Nano · 2021

basic_science · Level V

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Abstract

Biomimetic nanoparticles aim to effectively emulate the behavior of either cells or exosomes. Leukocyte-based biomimetic nanoparticles, for instance, incorporate cell membrane proteins to transfer the natural tropism of leukocytes to the final delivery platform. However, tuning the protein integration can affect the <i>in vivo</i> behavior of these nanoparticles and alter their efficacy. Here we show that, while increasing the protein:lipid ratio to a maximum of 1:20 (w/w) maintained the nanoparticle's structural properties, increasing protein content resulted in improved targeting of inflamed endothelium in two different animal models. Our combined use of a microfluidic, bottom-up approach and tuning of a key synthesis parameter enabled the synthesis of reproducible, enhanced biomimetic nanoparticles that have the potential to improve the treatment of inflammatory-based conditions through targeted nanodelivery.

Medical subject headings