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奇亚籽效应启发的微泡作为悬浮和黏附的口服递药系统。

Cheerios Effect Inspired Microbubbles as Suspended and Adhered Oral Delivery Systems.

机构信息

Department of Rheumatology and Immunology Institute of Translational Medicine The Affiliated Drum Tower Hospital of Nanjing University Medical School Nanjing 210002 China.

State Key Laboratory of Bioelectronics School of Biological Science and Medical Engineering Southeast University Nanjing 210096 China.

出版信息

Adv Sci (Weinh). 2021 Feb 24;8(7):2004184. doi: 10.1002/advs.202004184. eCollection 2021 Apr.

Abstract

Oral drug administration has an important role in medical treatment. Attempts to develop drug microcarriers with desired features for extended duration and improved absorption is highly sought. Herein, inspired by the physical phenomenon of the Cheerios effect, a novel microfluidic electrospray microbubble carrier is presented that can suspend and actively adhere to the stomach for durable oral delivery. Compared with conventional fabrication methods, the present strategy shows stability and controllability of the product. Benefiting from their uniform hollow structure, the resultant microbubbles present the same behavior of the Cheerios and can float in the gastric juice, adhere and remain to the stomach wall, which thus enhance the duration and absorption of the loaded drugs. Based on these, it is demonstrated as a proof of concept that the dexamethasone-loaded hollow microbubbles can be applied to oral administration and remain suspended and adhered to the stomach of murine for more than 1 d, showing good therapeutic effect in treating lupus erythematosus. Thus, it is believed that the microbubbles floating system will find important values in long-term oral administration.

摘要

口服给药在医学治疗中具有重要作用。人们高度期望开发出具有延长作用时间和改善吸收效果的理想药物微载体。受 Cheerios 效应这一物理现象的启发,本文提出了一种新型的微流控电喷雾微泡载体,它可以在胃部停留很长时间并主动黏附,从而实现持久的口服给药。与传统的制造方法相比,本策略显示出了产品的稳定性和可控性。由于其均匀的中空结构,所得微泡表现出与 Cheerios 相同的行为,可以在胃液中漂浮,黏附并停留在胃壁上,从而增强了负载药物的作用时间和吸收效果。基于这些,我们证明了负载地塞米松的中空微泡可用于口服给药,并在小鼠胃中保持悬浮和黏附超过 1 天,在治疗红斑狼疮方面表现出良好的治疗效果。因此,人们相信漂浮微泡系统将在长期口服给药中具有重要的应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5004/8025035/aba3596974d8/ADVS-8-2004184-g006.jpg

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