Pentamidine-loaded gelatin decreases adhesion formation of flexor tendon

肌腱 戊脒 明胶 医学 活力测定 体内 药理学 化学 外科 细胞 内科学 生物 生物化学 生物技术 肺炎
作者
Guidong Shi,Koichi Nakagawa,Rou Wan,Yicun Wang,Ramona L. Reisdorf,Abigayle Wilson,Tony Chieh‐Ting Huang,Peter C. Amadio,Alexander Meves,Chunfeng Zhao,Steven L. Moran
出处
期刊:Journal of orthopaedic translation [Elsevier]
卷期号:45: 75-87 被引量:2
标识
DOI:10.1016/j.jot.2023.10.007
摘要

Prevention of adhesion formation following flexor tendon repair is essential for restoration of normal finger function. Although many medications have been studied in the experimental setting to prevent adhesions, clinical application is limited due to the complexity of application and delivery in clinical translation. In this study, optimal dosages of gelatin and pentamidine were validated by gelatin concentration test. Following cell viability, cell migration, live and dead cell, and cell adhesion assay of the Turkey tenocytes, a model of Turkey tendon repair was established to evaluate the effectiveness of the Pentamidine-Gelatin sheet. Pentamidine carried with gelatin, a Food and drug administration (FDA) approved material for drug delivery, showed good dynamic release, biocompatibility, and degradation. The optimal dose of pentamidine (25ug) was determined in the in vivo study using tenocyte viability, migration, and cell adhesion assays. Further biochemical analyses demonstrated that this positive effect may be due to pentamidine downregulating the Wnt signaling pathway without affecting collagen expression. We tested a FDA-approved antibiotic, pentamidine, for reducing adhesion formation after flexor tendon repair in both in vitro and in vivo using a novel turkey animal model. Compared with the non-pentamidine treatment group, pentamidine treated turkeys had significantly reduced adhesions and improved digit function after six weeks of tendon healing. This study for the first time showed that a common clinical drug, pentamidine, has a potential for clinical application to reduce tendon adhesions and improve tendon gliding function without interfering with tendon healing.

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