Biodegradable Inorganic Upconversion Nanocrystals for <i>In Vivo</i> Applications.

Peng, Pengfei; Wu, Na; Ye, Lixiang; Jiang, Feilong; Feng, Wei; Li, Fuyou; Liu, Yongsheng; Hong, Maochun · ACS Nano · 2020

basic_science · Level V

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Abstract

Lanthanide-doped inorganic upconversion nanocrystals (UCNCs) are promising as fluorescent diagnostic and therapeutic agents for <i>in vivo</i> applications ranging from biological imaging to disease theranostics. However, all currently available lanthanide-doped inorganic UCNCs are not biodegradable and thus cannot be harmlessly eliminated from the body of living organism during a reasonable period of time, making their clinical translations nearly impossible. Here, we report a class of red-emitting biodegradable UCNCs based on Yb<sup>3+</sup>/Er<sup>3+</sup>-doped inorganic potassium heptafluozirconate (K<sub>3</sub>ZrF<sub>7</sub>:Yb/Er) that features a dynamically "soft" crystal lattice containing water-soluble [ZrF<sub>7</sub>]<sup>3-</sup> cluster and a K<sup>+</sup> cation. The red-emitting K<sub>3</sub>ZrF<sub>7</sub>:Yb/Er UCNCs exhibit a pH-dependent biodegradation capability upon exposure to water both <i>in vitro</i> and <i>in vivo</i>, and the rapid biodegradation rate, monitored using the intrinsic red upconversion luminescence, can be tuned particularly in a mild acidic tumor microenvironment (pH ∼5-6). More importantly, the final biodegradation products of K<sub>3</sub>ZrF<sub>7</sub>:Yb/Er UCNCs can be excreted from the body of mice in a short period of time with no evidence of toxicity, in stark contrast to the nondegradable β-NaYF<sub>4</sub>:Yb/Er UCNCs that primarily accumulate in the main organs of mice. These findings described here unambiguously would benefit the future biomedical applications and clinical translations of lanthanide-doped inorganic UCNCs.