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针对预组装的 Boston 角膜假体的电子束灭菌。

Toward electron-beam sterilization of a pre-assembled Boston keratoprosthesis.

机构信息

Disruptive Technology Laboratory, Massachusetts Eye and Ear and Schepens Eye Research Institute, Department of Ophthalmology, Harvard Medical School, Boston, MA, USA.

Centaur Technologies, Vernon, CT, USA.

出版信息

Ocul Surf. 2021 Apr;20:176-184. doi: 10.1016/j.jtos.2021.02.009. Epub 2021 Mar 3.

Abstract

PURPOSE

To evaluate the effects of electron-beam (E-beam) irradiation on the human cornea and the potential for E-beam sterilization of Boston keratoprosthesis (BK) devices when pre-assembled with a donor cornea prior to sterilization.

METHODS

Human donor corneas and corneas pre-assembled in BK devices were immersed in recombinant human serum albumin (rHSA) media and E-beam irradiated at 25 kGy. Mechanical (tensile strength and modulus, and compression modulus), chemical, optical, structural, and degradation properties of the corneal tissue after irradiation and after 6 months of preservation were evaluated.

RESULTS

The mechanical evaluation showed that E-beam irradiation enhanced the tensile and compression moduli of human donor corneas, with no impact on their tensile strength. By chemical and mechanical analysis, E-beam irradiation caused a minor degree of crosslinking between collagen fibrils. No ultrastructural changes due to E-beam irradiation were observed. E-beam irradiation slightly increased the stability of the cornea against collagenase-induced degradation and had no impact on glucose diffusion. The optical evaluation showed transparency of the cornea was maintained. E-beam irradiated corneal tissues and BK-cornea pre-assembled devices were stable for 6 months after room-temperature preservation.

CONCLUSIONS

E-beam irradiation generated no detrimental effects on the corneal tissues or BK-cornea pre-assembled devices and improved native properties of the corneal tissue, enabling prolonged preservation at room temperature. The pre-assembly of BK in a donor cornea, followed by E-beam irradiation, offers the potential for an off-the-shelf, ready to implant keratoprosthesis device.

摘要

目的

评估电子束(E-beam)辐照对人眼角膜的影响,以及在将供体角膜预先组装到波士顿角膜假体(BK)装置中进行灭菌之前,E-beam 灭菌对 BK 装置的潜在影响。

方法

将人供体角膜和预先组装在 BK 装置中的角膜浸入重组人血清白蛋白(rHSA)介质中,并在 25kGy 下进行 E-beam 辐照。评估辐照后和 6 个月保存后的角膜组织的机械性能(拉伸强度和模量以及压缩模量)、化学性能、光学性能、结构性能和降解性能。

结果

机械评估表明,E-beam 辐照增强了人供体角膜的拉伸和压缩模量,而对其拉伸强度没有影响。通过化学和机械分析,E-beam 辐照导致胶原纤维之间发生轻微的交联。未观察到由于 E-beam 辐照引起的超微结构变化。E-beam 辐照略微增加了角膜对胶原酶诱导降解的稳定性,并且对葡萄糖扩散没有影响。光学评估表明角膜的透明度得以维持。E-beam 辐照的角膜组织和预先组装的 BK 角膜装置在室温保存 6 个月后保持稳定。

结论

E-beam 辐照对角膜组织或预先组装的 BK 角膜装置没有产生不利影响,反而改善了角膜组织的固有特性,使角膜在室温下的保存时间得以延长。在供体角膜中预先组装 BK,然后进行 E-beam 辐照,为现成的、可立即植入的角膜假体提供了可能性。

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