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具有 pH 响应大孔的智能微球用于靶向口服药物递送。

Smart Microparticles with a pH-responsive Macropore for Targeted Oral Drug Delivery.

机构信息

Department of Chemical and Materials Engineering, University of Alberta, and Ingenuity Lab, Edmonton, AB T6G 1H9, Canada.

出版信息

Sci Rep. 2017 Jun 8;7(1):3059. doi: 10.1038/s41598-017-03259-x.

Abstract

The development of a smart microencapsulation system programmed to actively respond to environmental pH change has long been recognized a key technology in pharmaceutical and food sciences. To this end, we developed hollow microparticles (MPs) with self-controlled macropores that respond to environmental pH change, using an Oil-in-Water emulsion technique, for oral drug delivery. We observed that freeze-drying of MPs induced closure of macropores. The closing/opening behavior of macropores was confirmed by exposing MPs encapsulating different ingredients (sulforhodamine b, fluorescent nanoparticles, and lactase) to simulated gastrointestinal (GI) fluids. MPs maintained their intact, closed pore structure in gastric pH, and subsequent exposure to intestinal pH resulted in pore opening and ingredients release. Further, MPs displayed higher protection (>15 times) than commercial lactase formulation, indicating the protective ability of the system against harsh GI conditions. This study showed development of a hybrid MP system combining the advantages of solid particles and hollow capsules, exhibiting easy solvent-free loading mechanism and smart protection/release of encapsulates through controllable macropores. Ultimately, our MPs system strives to usher a new research area in smart drug delivery systems and advance the current oral drug delivery technology by solving major challenges in targeted delivery of pH-sensitive therapeutics.

摘要

长期以来,开发能够主动响应环境 pH 值变化的智能微封装系统一直被认为是药物和食品科学领域的一项关键技术。为此,我们使用油包水乳液技术开发了具有自控制大孔的中空微球(MPs),用于口服药物输送。我们观察到 MPs 的冷冻干燥会诱导大孔的关闭。通过将包封不同成分(磺基罗丹明 B、荧光纳米粒子和乳糖酶)的 MPs 暴露于模拟胃肠道(GI)流体,证实了大孔的关闭/打开行为。 MPs 在胃 pH 值下保持完整的封闭孔结构,随后暴露于肠 pH 值会导致孔打开和成分释放。此外,MPs 表现出比商业乳糖酶制剂更高的保护作用(>15 倍),表明该系统对恶劣的 GI 条件具有保护能力。本研究展示了一种混合 MPs 系统的开发,该系统结合了固体颗粒和中空胶囊的优点,通过可控的大孔表现出易于无溶剂加载的机制和封装物的智能保护/释放。最终,我们的 MPs 系统旨在开创智能药物输送系统的新研究领域,并通过解决 pH 敏感治疗剂靶向输送的主要挑战来推动当前的口服药物输送技术的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd4b/5465058/1924b42e7bfd/41598_2017_3259_Fig1_HTML.jpg

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