Seto Aaron, Gatt Charles J, Dunn Michael G
Orthopaedic Research Laboratories, Department of Orthopaedic Surgery, UMDNJ-Robert Wood Johnson Medical School, 51 French Street, Orthopaedic Surgery Room 424, PO Box 19, New Brunswick, NJ, 08903, USA.
Clin Orthop Relat Res. 2009 Nov;467(11):2994-3001. doi: 10.1007/s11999-009-0934-3. Epub 2009 Jun 19.
Allograft safety is a great concern owing to the risk of disease transmission from nonsterile tissues. Radiation sterilization is not used routinely because of deleterious effects on the mechanical integrity and stability of allograft collagen. We previously reported several individual cross-linking or free radical scavenging treatments provided some radioprotective effects for tendons. We therefore asked whether a combination of treatments would provide an improved protective effect after radiation exposure regarding mechanical properties and enzyme resistance. To address this question we treated 90 rabbit Achilles tendons with a combination of cross-linking (1-ethyl-3-[3-dimethyl aminopropyl] carbodiimide [EDC]) and one of three scavenging regimens (mannitol, ascorbate, or riboflavin). Tendons then were exposed to one of three radiation conditions (gamma or electron beam irradiation at 50 kGy or unsterilized). Combination-treated tendons (10 per group) had increases in mechanical properties and higher resistance to collagenase digestion compared with EDC-only and untreated tendons. Irradiated tendons treated with EDC-mannitol, -ascorbate, and -riboflavin combinations had comparable strength to native tendon and had averages of 26%, 39%, and 37% greater, respectively, than those treated with EDC-only. Optimization of a cross-linking protocol and free radical scavenging cocktail is ongoing with the goal of ensuring sterile allografts through irradiation while maintaining their structure and mechanical properties.
由于非无菌组织存在疾病传播风险,同种异体移植物的安全性备受关注。由于辐射灭菌会对同种异体移植物胶原蛋白的机械完整性和稳定性产生有害影响,因此未常规使用。我们之前报道过几种单独的交联或自由基清除处理对肌腱有一定的辐射防护作用。因此,我们想知道联合处理在辐射暴露后对机械性能和酶抗性是否能提供更好的保护效果。为解决这个问题,我们用交联剂(1-乙基-3-[3-二甲基氨基丙基]碳二亚胺[EDC])与三种清除方案(甘露醇、抗坏血酸盐或核黄素)之一的组合处理了90条兔跟腱。然后将肌腱暴露于三种辐射条件之一(50 kGy的γ射线或电子束照射或未灭菌)。与仅用EDC处理和未处理的肌腱相比,联合处理的肌腱(每组10条)的机械性能有所提高,对胶原酶消化的抗性更高。用EDC-甘露醇、-抗坏血酸盐和-核黄素组合处理的辐照肌腱与天然肌腱具有相当的强度,分别比仅用EDC处理的肌腱平均高26%、39%和37%。目前正在对交联方案和自由基清除混合物进行优化,目标是通过辐射确保同种异体移植物无菌,同时保持其结构和机械性能。