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◆ Colloids and surfaces. B, Biointerfaces2026-08-07

Microfluidic nano-in-microcapsules for ph-responsive colonic delivery of 5-ASA: A moving-boundary kinetic approach.

Weiguang Su, Jianbin Liang, Dawei Wang, Siegfried Yeboah, Jiemeng Ding, Tian Lan, Ruirui Zhang, Qing Xu, Li Wang

原始摘要(英文原文)· Original abstract
The performance of targeted oral delivery systems for hydrophobic drugs like 5-aminosalicylic acid is limited by variable release kinetics and premature release in the upper gastrointestinal tract. To address this challenge, monodisperse 5-aminosalicylic acid nanocrystal-in-hydroxypropyl methylcellulose acetate succinate (5-ASA NCs@HPMCAS) composite microcapsules were prepared via microfluidic interfacial assembly and antisolvent precipitation. Droplet-templated solidification yielded microcapsules with an average diameter of 28.33 μm, a coefficient of variation < 3%, a drug loading of 20.4 wt% and an encapsulation efficiency of 83.3%. Driven by the pH-dependent transition of the HPMCAS shell, the microcapsules remained structurally intact under simulated gastric and proximal intestinal conditions (pH < 6.0) but underwent rapid interfacial erosion around pH 6.1. The model payload was released within approximately 3 min at pH 7.2 under quiescent in vitro conditions, while 5-ASA release reached 88.5% at pH 6.5 over 4 h. Ex vivo GI imaging of DiR-labeled microcapsules provided preliminary evidence of upper-GI retention and lower-GI localization after oral administration. Residual ethyl acetate was approximately 217 ppm, while dimethyl sulfoxide was below the assay's quantification range. A 24-hour Caco-2 assay showed cell viability above 90%, supporting preliminary in vitro cytocompatibility under the tested conditions. The uniform particle size also enabled comparison between single-particle moving-boundary kinetics and macroscopic release behavior, providing a physicochemical basis for pH-responsive oral delivery.
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Microfluidic nano-in-microcapsules for ph-responsive colonic delivery of 5-ASA: A moving-boundary kinetic approach. — 科研速览 Science Skim