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A self‐deploying drug release device using polymeric films

机译:使用聚合物薄膜自展开药物释放装置

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Abstract Herein, we report a sheet‐type device capable of self‐deployment and sustained release of protein type drugs. The device consisted of a thin photopolymerized polyethylene glycol dimethacrylate (PEGDM) sheet and collagen microparticles (COLs), which were embedded in the sheet as drug carriers and for increased drug permeation. When the density of the COLs in the sheet was increased to be sufficiently interconnected, the drug permeability was increased. In addition, since protein type drugs electrostatically interacted with the COLs, a prolonged sustained release was possible. The PEGDM/COLs device was flexible enough to be rolled up, and the device maintained its structure due to van der Waals attractive forces between the sheet surfaces. When the device was immersed in water, the attractive forces acting between the sheet surfaces were relieved by water. Subsequently, the device unfolded by bending‐stress relaxation. Moreover, the rolled‐up device could be injected through a conventional syringe needle into water to recover its original shape. The developed sheet‐type device provides the possibility of minimally invasive transplantation into diseased tissues and organs, and could provide better therapeutic outcomes and reduce possible side effects. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 780–786, 2018.
机译:摘要在此,我们报告了一种能够自我部署和持续释放蛋白质类型药物的纸张型装置。该装置由薄的光聚合聚乙二醇二甲基丙烯酸酯(PEGDM)片和胶原微粒(COL)组成,其嵌入片材中作为药物载体并增加药物渗透性。当片材中的COL的密度增加以充分互连时,药物渗透性增加。另外,由于静电与COL静电相互作用的蛋白质类型,因此可能是可能的。 PEGDM / COLS器件足够灵活,以卷起,并且由于van der WaaS在片材表面之间有吸引力,该装置保持其结构。当将器件浸入水中时,用水释放在片材表面之间的吸引力。随后,通过弯曲应力松弛展开的装置。此外,可以通过常规注射器针注入水中以回收其原始形状的卷起装置。所开发的片材型装置提供了最微创移植到患病组织和器官的可能性,并且可以提供更好的治疗结果并减少可能的副作用。还2017年Wiley期刊,Inc。J生物密制Res B部分:Appl Biomater,106B:780-786,2018。

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