In Vivo Tracking of the Degradation of Mesoporous Silica through <sup>89</sup>Zr Radio‐Labeled Core–Shell Nanoparticles

Elisa Bindini(CIC biomaGUNE), María de los Ángeles Ramírez(Consejo Nacional de Investigaciones Científicas y Técnicas), Xabier Ríos(CIC biomaGUNE), Unai Cossío(CIC biomaGUNE), Cristina Simó(CIC biomaGUNE), Vanessa Gómez‐Vallejo(CIC biomaGUNE), Galo J. A. A. Soler‐Illia(Consejo Nacional de Investigaciones Científicas y Técnicas), Jordi Llop(CIC biomaGUNE), Sergio Moya(CIC biomaGUNE)
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June 18, 2021
Cited by 46Open Access
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Abstract

Abstract While mesoporous silica nanoparticles (MSNs) are extensively studied as high‐potential drug delivery platforms, the successful clinical translation of these nanocarriers strongly depends on their biodistribution, biodegradation, and elimination patterns in vivo. Here, a novel method is reported to follow the in vivo degradation of MSNs by tracking a radioactive label embedded in the silica structure. Core–shell silica nanoparticles (NPs) with a dense core and a mesoporous shell are labeled with low quantities of the positron emitter 89 Zr, either in the dense core or in the mesoporous shell. In vivo positron emission tomography imaging and ex vivo organ measurements reveal a remarkable difference in the 89 Zr biodistribution between the shell‐labeled and the core‐labeled NPs. Release of the radiotracer from shell‐labeled NPs is used as a probe of the extent of silica dissolution, and a prompt release of the radioisotope is observed, with partial excretion already in the first 2 h post injection, and a slower accumulation in bones over time. On the other hand, when 89 Zr is embedded in the nanoparticle core, the biodistribution remains largely unchanged during the first 6 h. These findings indicate that MSNs have fast, hour‐scale, degradation kinetics in vivo.


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