ArticleACS omega2026
Lymphatic Targeting of Flubendazole via Long-Chain Fatty Acid Nanoemulsion: Pharmacokinetic Evidence of Chylomicron-Mediated Uptake in Rats.
Article in ACS omega, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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10 authors.
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Abstract
Flubendazole (FLZ), a benzimidazole anthelmintic with emerging anticancer potential, exhibits poor aqueous solubility, limited oral bioavailability, and negligible spontaneous lymphatic transport. Building on previous work in which a Maisine CC-based FLZ nanoemulsion (FLZ-NE) was developed and shown to prevent the formation of malignant wounds in a murine model, this study provides a mechanistic pharmacokinetic evaluation of its intestinal lymphatic uptake. We investigated FLZ disposition in rats after oral administration of FLZ-NE, with or without cycloheximide pretreatment (FLZ-NE/b) to inhibit chylomicron secretion. Plasma FLZ concentrations were quantified by a validated HPLC-UV method, and concentration-time data were analyzed by two-way ANOVA and noncompartmental analysis. FLZ-NE produced higher systemic exposure (C_max = 2.42 ± 0.34 μg/mL; T_max = 4 h; AUC_0 - t = 15.92 ± 3.78 μg.h/mL) than FLZ-NE/b (C_max = 0.58 ± 0.13 μg/mL; T_max = 2 h; AUC_0 - t = 4.42 ± 1.55 μg.h/mL), corresponding to a 76% reduction in C_max and a 72% reduction in AUC_0 - t under chylomicron blockade. These data indicate that FLZ-NE relies predominantly on intestinal lymphatic transport, in line with the notion that long-chain fatty acid-based, nanoscale formulations can favor chylomicron-mediated uptake. By demonstrating in vivo that this nanoemulsion drives FLZ absorption through a lymphatic component, our findings extend the earlier efficacy-focused malignant wound study with mechanistic pharmacokinetic evidence of lymphatic targeting and support nanoemulsion-based delivery as a rational strategy to improve oral absorption and expand the therapeutic potential of FLZ for lymphatic or metastatic diseases.
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Registered trials
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