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Photoactivated methods for enabling cartilage-to-cartilage tissue fixation

机译:光活化方法可实现软骨到软骨组织的固定

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The present study investigates whether photoactivated attachment of cartilage can provide a viable method for more effective repair of damaged articular surfaces by providing an alternative to sutures, barbs, or fibrin glues for initial fixation. Unlike artificial materials, biological constructs do not possess the initial strength for press-fitting and are instead sutured or pinned in place, typically inducing even more tissue trauma. A possible alternative involves the application of a photosensitive material, which is then photoactivated with a laser source to attach the implant and host tissues together in either a photothermal or photochemical process. The photothermal version of this method shows potential, but has been almost entirely applied to vascularized tissues. Cartilage, however, exhibits several characteristics that produce appreciable differences between applying and refining these techniques when compared to previous efforts involving vascularized tissues. Preliminary investigations involving photochemical photosensitizers based on singlet oxygen and electron transfer mechanisms are discussed, and characterization of the photodynamic effects on bulk collagen gels as a simplified model system using FTIR is performed. Previous efforts using photothermal welding applied to cartilaginous tissues are reviewed.
机译:本研究调查了光活化的软骨附着是否可以提供一种可行的方法,通过为缝合线,倒钩或纤维蛋白胶提供替代方案进行初始固定,从而更有效地修复受损的关节表面。与人工材料不同,生物构造物不具有压配的初始强度,而是被缝合或固定在适当的位置,通常会引起更多的组织损伤。一种可能的选择涉及施加光敏材料,然后用激光源对其进行光活化,以光热或光化学过程将植入物和宿主组织附着在一起。这种方法的光热形式显示了潜力,但几乎已完全应用于血管化组织。然而,与先前涉及血管化组织的努力相比,软骨表现出一些特征,这些特征在应用和改进这些技术之间产生了明显的差异。讨论了涉及基于单线态氧和电子转移机理的光化学光敏剂的初步研究,并通过使用FTIR简化了对大量胶原蛋白凝胶的光动力效应的表征。回顾了以前使用光热焊接应用于软骨组织的努力。

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