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Anacetrapib

Shrinking anacetrapib nanoparticles below 100 nm boosts bioavailability in dogs beyond what dissolution rate alone explains (J Pharm Sci 2019)

Original title: Effect of Amorphous Nanoparticle Size on Bioavailability of Anacetrapib in Dogs

J Pharm Sci · · 4

Kesisoglou F, Wang M, Galipeau K, Harmon P, Okoh G, Xu W

Amorphous solid dispersions boost bioavailability partly by generating amorphous nanoparticles during dissolution, but published data on how the size of these in-situ nanoparticles affects bioavailability were limited. Using anacetrapib, a highly lipophilic Biopharmaceutics Classification System IV compound formulated as an amorphous solid dispersion that generates nanoparticles on dissolution, this study found that particles of approximately 100 nm or smaller produced higher average drug exposure in dogs than particles of approximately 200 nm or larger. This bioavailability gain could not be fully explained by improved dissolution rate alone, though it was less pronounced than the boost achieved by co-administering the drug with a high-fat meal, indicating nanoparticle size itself independently influences oral absorption of anacetrapib.

Read the paper (DOI)PubMed

Original abstract

Amorphous solid dispersions (ASDs) are used as bioavailability-enhancing formulations on the premise of the increased solubility of the amorphous form over its crystalline counterpart. Recent studies have shown that ASDs can, during dissolution, generate amorphous nanoparticles that were initially postulated to serve as a source of rapidly dissolving compound during absorption. Researchers have proposed that nanoparticles, including crystalline nanoparticles, may provide additional benefits to absorption such as drifting in the mucous layer. However, there are limited published data on the impact of nanoparticle size on bioavailability in vivo and, to our knowledge, there have been no published examples looking at the impact of differential size of in situ-generated nanoparticles from an ASD. Anacetrapib, a highly lipophilic, Biopharmaceutics Classification System IV compound, formulated as an ASD that generates nanoparticles on dissolution, was used in the studies described in this article. A differential response in bioavailability was observed with ∼100 nm or smaller particles, resulting in higher average exposure compared to ∼200 nm or larger particles. This increase in bioavailability could not be fully accounted for by the improvement in dissolution rate and was not as pronounced as that achieved by improving solubilization by coadministration with a high-fat meal.

anacetrapibpharmacology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.