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Radioprotection of Tendon Tissue via Crosslinking and Free Radical Scavenging

机译:通过交联和自由基清除对肌腱组织的辐射防护

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摘要

Ionizing radiation could supplement tissue bank screening to further reduce the probability of diseases transmitted by allografts if denaturation effects can be minimized. It is important, however, such sterilization procedures be nondetrimental to tissues. We compared crosslinking and free radical scavenging potential methods to accomplish this task in tendon tissue. In addition, two forms of ionizing irradiation, gamma and electron beam (e-beam), were also compared. Crosslinkers included 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide (EDC) and glucose, which were used to add exogenous crosslinks to collagen. Free radical scavengers included mannitol, ascorbate, and riboflavin. Radioprotective effects were assessed through tensile testing and collagenase resistance testing after irradiation at 25 kGy and 50 kGy. Gamma and e-beam irradiation produced similar degenerative effects. Crosslinkers had the highest strength at 50 kGy, EDC treated tendons had 54% and 49% higher strength than untreated, for gamma and e-beam irradiation respectively. Free radical scavengers showed protective effects up to 25 kGy, especially for ascorbate and riboflavin. Crosslinked samples had higher resistance to collagenase and over a wider dose range than scavenger-treated. Of the options studied, the data suggest EDC precrosslinking or glucose treatment provides the best maintenance of native tendon properties after exposure to ionizing irradiation.
机译:如果变性作用可以最小化,电离辐射可以补充组织库筛选,以进一步降低同种异体移植物传播疾病的可能性。然而,重要的是,这样的灭菌过程对组织无害。我们比较了交联和自由基清除潜在方法来完成此任务在肌腱组织中。此外,还比较了两种形式的电离辐射,即伽马射线和电子束(电子束)。交联剂包括1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)和葡萄糖,它们用于向胶原蛋白添加外源性交联。自由基清除剂包括甘露醇,抗坏血酸和核黄素。在25 kGy和50 kGy照射后通过拉伸试验和胶原酶抗性试验评估辐射防护作用。伽马射线和电子束辐照产生类似的退化作用。交联剂在50 kGy时具有最高强度,经EDC处理的肌腱分别对γ和电子束照射的强度比未处理的肌腱强度高54%和49%。自由基清除剂显示出高达25 kGy的保护作用,尤其是对于抗坏血酸和核黄素。与清除剂处理的样品相比,交联的样品对胶原酶的抵抗力更高,且剂量范围更广。在研究的选项中,数据表明,EDC预交联或葡萄糖处理在暴露于电离辐射后能最佳地保持天然肌腱的特性。

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