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In vivo Biodistribution and Urinary Excretion of Mesoporous Silica Nanoparticles: Effects of Particle Size and PEGylation

Small · 2010 · Vol. 7(2) · pp. 271–280
Qianjun HeZhiwen ZhangFang GaoYaping LiJianlin Shi

Abstract

The in vivo biodistribution and urinary excretion of spherical mesoporous silica nanoparticles (MSNs) are evaluated by tail-vein injection in ICR mice, and the effects of the particle size and PEGylation are investigated. The results indicate that both MSNs and PEGylated MSNs of different particle sizes (80-360 nm) distribute mainly in the liver and spleen, a minority of them in the lungs, and a few in the kidney and heart. The PEGylated MSNs of smaller particle size escape more easily from capture by liver, spleen, and lung tissues, possess longer blood-circulation lifetime, and are more slowly biodegraded and correspondingly have a lower excreted amount of degradation products in the urine. Neither MSNs nor PEGylated MSNs cause tissue toxicity after 1 month in vivo.

Nanoparticle-Based Drug DeliveryCatalytic Processes in Materials ScienceMesoporous Materials and CatalysisBiodistributionPEGylationIn vivoSpleenMesoporous silicaParticle sizeMaterials scienceNanoparticleKidneyExcretion

MeSH terms

AnimalsMice, Inbred ICRParticle SizePolyethylene GlycolsSilicon DioxidePorosityMiceNanoparticles
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