Insights into the Structure of Ultrasmall Fluorescent Core-Shell Silica Nanoparticles.

Jang, Dong June; Skye, Rachael S; Gardinier, Thomas C; Lee, Rachel; Kozbek, Ali Y; Turker, Melik Z; Ma, Kai; Tait, William R T et al. · ACS Nano · 2026

basic_science · Level V

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Abstract

Ultrasmall fluorescent core-shell nanoparticles (NPs) with a silica core and poly(ethylene glycol) ligand shell are the earliest example of hybrid NPs that have received U.S. investigational new drug FDA approval. They are among only a few inorganic NPs translated to safety, diagnostic, and therapeutic human clinical trials. Despite these achievements, little is known about the exact structure of their 3-4 nm sized silica cores. We report the surprising discovery of a well-defined pentagonal bipyramidal core structure preferentially formed in the aqueous synthesis built from seven primary silica NPs. A combination of reverse-phase high-performance liquid chromatography, cryogenic transmission electron microscopy, and coarse-grained simulations provides fundamental insights into this magic-size cluster formation and its unusual stability. Results rationalize the successful NP synthesis scale-up from 1 mL to 50 L, provide clues to the recent discovery of their self-therapeutic properties in oncology via ferroptosis, an iron-dependent cell death mechanism, and promise improved control of particle size distribution via chromatographic separations.

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