Suppr超能文献

电子束辐照供体角膜用于按需角膜透镜植入治疗角膜疾病和屈光不正。

Electron beam-irradiated donor cornea for on-demand lenticule implantation to treat corneal diseases and refractive error.

机构信息

Tissue Engineering and Cell Therapy Group, Singapore Eye Research Institute, Singapore; University of Cambridge School of Clinical Medicine, Cambridge, United Kingdom.

Tissue Engineering and Cell Therapy Group, Singapore Eye Research Institute, Singapore.

出版信息

Acta Biomater. 2023 Oct 1;169:334-347. doi: 10.1016/j.actbio.2023.07.053. Epub 2023 Aug 1.

Abstract

The cornea is the major contributor to the refractive power of the eye, and corneal diseases are a leading cause of reversible blindness. The main treatment for advanced corneal disease is keratoplasty: allograft transplantation of the cornea. Examples include lenticule implantation to treat corneal disorders (e.g. keratoconus) or correct refractive errors. These procedures are limited by the shelf-life of the corneal tissue, which must be discarded within 2-4 weeks. Electron-beam irradiation is an emerging sterilisation technique, which extends this shelf life to 2 years. Here, we produced lenticules from fresh and electron-beam (E-beam) irradiated corneas to establish a new source of tissue for lenticule implantation. In vitro, in vivo, and ex vivo experiments were conducted to compare fresh and E-beam-irradiated lenticules. Results were similar in terms of cutting accuracy, ultrastructure, optical transparency, ease of extraction and transplantation, resilience to mechanical handling, biocompatibility, and post-transplant wound healing process. Two main differences were noted. First, ∼59% reduction of glycosaminoglycans resulted in greater compression of E-beam-irradiated lenticules post-transplant, likely due to reduced corneal hydration-this appeared to affect keratometry after implantation. Cutting a thicker lenticule would be required to ameliorate the difference in refraction. Second, E-beam-sterilised lenticules exhibited lower Young's modulus which may indicate greater care with handling, although no damage or perforation was caused in our procedures. In summary, E-beam-irradiated corneas are a viable source of tissue for stromal lenticules, and may facilitate on-demand lenticule implantation to treat a wide range of corneal diseases. Our study suggested that its applications in human patients are warranted. STATEMENT OF SIGNIFICANCE: Corneal blindness affects over six million patients worldwide. For patients requiring corneal transplantation, current cadaver-based procedures are limited by the short shelf-life of donor tissue. Electron-beam (E-beam) sterilisation extends this shelf-life from weeks to years but there are few published studies of its use. We demonstrated that E-beam-irradiated corneas are a viable source of lenticules for implantation. We conducted in vitro, in vivo, and ex vivo comparisons of E-beam and fresh corneal lenticules. The only differences exhibited by E-beam-treated lenticules were reduced expression of glycosaminoglycans, resulting in greater tissue compression and lower refraction suggesting that a thicker cut is required to achieve the same optical and refractive outcome; and lower Young's modulus indicating extra care with handling.

摘要

角膜是眼睛屈光力的主要贡献者,角膜疾病是可治疗性失明的主要原因。治疗晚期角膜疾病的主要方法是角膜移植:同种异体角膜移植。例如,通过植入透镜来治疗角膜疾病(如圆锥角膜)或矫正屈光不正。这些手术受到角膜组织保质期的限制,必须在 2-4 周内丢弃。电子束辐照是一种新兴的灭菌技术,可将保质期延长至 2 年。在这里,我们从新鲜和电子束(E 束)辐照的角膜中生产透镜,为透镜植入术建立新的组织来源。进行了体外、体内和离体实验,以比较新鲜和 E 束辐照的透镜。在切割精度、超微结构、光学透明度、提取和移植的容易程度、对机械处理的弹性、生物相容性以及移植后伤口愈合过程方面,结果相似。有两个主要区别。首先,约 59%的糖胺聚糖减少导致 E 束辐照后的透镜在移植后压缩更大,这可能是由于角膜水合作用减少所致-这似乎会影响植入后的角膜曲率计读数。需要切割更厚的透镜才能改善折射差异。其次,E 束灭菌的透镜的杨氏模量较低,这可能表明在处理时需要更加小心,尽管在我们的程序中没有造成损坏或穿孔。总之,E 束辐照的角膜是基质透镜的可行组织来源,并且可能有助于按需进行透镜植入以治疗广泛的角膜疾病。我们的研究表明,其在人类患者中的应用是合理的。意义声明:全球有超过 600 万患者患有角膜盲。对于需要角膜移植的患者,目前基于尸体的程序受到供体组织保质期短的限制。电子束(E 束)灭菌将保质期从数周延长至数年,但有关其使用的研究很少。我们证明了 E 束辐照的角膜是植入用透镜的可行来源。我们进行了 E 束和新鲜角膜透镜的体外、体内和离体比较。E 束处理的透镜仅显示出减少的糖胺聚糖表达,从而导致更大的组织压缩和更低的折射,这表明需要更厚的切口才能达到相同的光学和折射效果;以及更低的杨氏模量,这表明处理时需要额外小心。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验