伤口愈合
氟西汀
炎症
生物电子学
医学
大鼠模型
药理学
血清素
化学
外科
免疫学
内科学
生物化学
生物传感器
受体
作者
Houpu Li,Narges Asefifeyzabadi,Kaelan Schorger,Prabhat Baniya,Hsin‐ya Yang,Maryam Tebyani,Alexie Barbee,Wan Shen Hee,Anthony Gallegos,Kan Zhu,Cynthia Recendez,Fan Lu,George Luka,Sujung Kim,Karthik Devarajan,Tiffany Nguyen,Sydnie Figuerres,Célia Maria Landi Franco,Elham Aslankoohi,Héctor Carrión
标识
DOI:10.1002/admt.202500040
摘要
Abstract Wound healing is a significant opportunity in biomedical science, requiring precise therapeutic delivery and real‐time monitoring. Bioelectronic devices address this need and require further validation in large animal models that reflect human healing dynamics. This work introduces a wireless, remotely controlled bioelectronic platform with an iontophoretic pump to deliver fluoxetine, a selective serotonin reuptake inhibitor that modulates inflammation and promotes wound repair. Treatment over 3 days in a porcine model increased re‐epithelialization by 37% and reduced inflammation, as shown by a 33% decrease in the ratio of pro‐inflammatory M1 macrophages to pro‐reparative M2 macrophages compared to controls. The platform accelerated early wound healing and stimulated neuronal growth at the wound site.
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