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Incorporating dexamethasone release in hydrogel coated microdialysis probes

机译:将地塞米松释放物掺入水凝胶包被的微透析探针中

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Microdialysis probes were used to study the influence of membrane modifications on glucose recovery. The microdialysis membranes were modified by adding a hydrogel coating. The coated probes were evaluated in vitro and in vivo for glucose permeability. It was found that percent glucose recovery was reduced by 25% in vitro using hydrogel coated probes compared to control probes. However, the glucose recoveries of the coated probes in vivo were more similar to that of control probe, with an average difference of 6%. From these results, it was concluded that the tissue resistance to glucose transport was much greater than the resistances of the hydrogel and biofouling. The hydrogel formulation was then changed to deliver a tissue modifying drug to reduce the tissue resistance. Dexamethasone was incorporated into the hydrogels to reduce inflammation. These hydrogels are capable of releasing drug up to 14 days. The dexamethasone hydrogels will be coated onto microdialysis probes in future in vivo studies to determine the effect of reduced inflammatory response on glucose recovery.
机译:MicrodiaLysis探针用于研究膜修饰对葡萄糖恢复的影响。通过加入水凝胶涂层来改变微透析膜。涂覆的探针在体外和体内评估葡萄糖渗透性。结果发现,与对照探针相比,使用水凝胶涂覆的探针在体外减少25%葡萄糖恢复。然而,体内涂覆探针的葡萄糖回收与对照探针的血糖回收更类似于对照探针,平均差为6%。从这些结果中,得出结论是,对葡萄糖转运的组织抗性远大于水凝胶和生物污染的抗性。然后改变水凝胶制剂以递送组织改性药物以降低组织抗性。将地塞米松掺入水凝胶中以减少炎症。这些水凝胶能够将药物释放至14天。将来的地塞米松水凝胶将在体内研究中涂覆到微透析探针上,以确定炎症反应降低对葡萄糖恢复的影响。

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