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In-situ polymerization of PMMA inside decellularized dermis using UV photopolymerization

机译:紫外光聚合法在脱细胞真皮内原位聚合PMMA

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摘要

Polymerization is a technique used to functionalize soft tissues and to produce interface tissues. Here, we developed a method for functionalizing soft tissue with diverse polymers, using in-situ polymerization of monomers that were absorbed into the tissue. Specifically, methyl methacrylate (MMA) and a photoinitiator (Irgacure? 184) were applied to the decellularized dermis, which was polymerized in-situ using irradiating ultraviolet light. MMA polymerization in-situ was possible because the monomers filled the cavities of the decellularized dermis. It took approximately 40 min to complete polymerization, but we found that the rate and depth of polymerization could be adjusted by using mixtures of Irgacure? 184 and Irgacure? 819. The addition of Irgacure? 819 increased polymerization, indicating that polymerization of MMA had occurred inside the dermis. Additionally, we showed that a complex of dermis and poly(methyl methacrylate) (PMMA) increase mechanical strength, which indicates that the PMMA is anchored to collagen fibers. This makes the complex very stable, giving it the functionality of both soft and hard tissue.
机译:聚合是用于使软组织功能化并产生界面组织的技术。在这里,我们开发了一种利用吸收到组织中的单体进行原位聚合的方法,利用多种聚合物对软组织进行功能化的方法。具体地,将甲基丙烯酸甲酯(MMA)和光引发剂(Irgacure TM 184)施加到脱细胞的真皮上,所述真皮通过使用紫外光在原位聚合。 MMA原位聚合是可能的,因为单体填充了脱细胞真皮的空腔。完成聚合大约需要40分钟,但我们发现可以通过使用Irgacure?的混合物来调节聚合速率和深度。 184和Irgacure? 819. Irgacure的添加? 819增加了聚合,表明MMA的聚合发生在真皮内部。此外,我们显示真皮和聚甲基丙烯酸甲酯(PMMA)的复合物可提高机械强度,这表明PMMA固定在胶原纤维上。这使得复合物非常稳定,使其具有软组织和硬组织的功能。

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