国际眼科纵览 ›› 2025, Vol. 49 ›› Issue (3): 189-197.doi: 10. 3760/cma.j.cn115500-20241115-25305

• 综述 • 上一篇    下一篇

角膜胶原交联术治疗圆锥角膜的研究进展

王晓璇1  孙芳芳2  刘晓鹏1  罗俊香3  雷玉琳2   

  1. 1 滨州医学院,山东滨州 256699;2 济南明水眼科医院,济南 250200;3 中国医学科学院整形外科医院,北京 100041 
  • 收稿日期:2024-11-15 出版日期:2025-06-22 发布日期:2025-06-12
  • 通讯作者: 雷玉琳,Email:leiyulin642@126.com

Research progress of corneal collagen crosslinking in the treatment of keratoconus 

Wang Xiaoxuan1, Sun Fangfang 2, Liu Xiaopeng1, Luo Junxiang3, Lei Yulin2   

  1. 1 Binzhou Medical University, Binzhou Shandong 256699, China; Jinan Mesee Eye Hospital, Jinan 250200, China; 3Chinese Academy of Medical Sciences Plastic Surgery Hospital, Beijing 100041, China

  • Received:2024-11-15 Online:2025-06-22 Published:2025-06-12
  • Contact: Lei Yulin, Email: leiyulin642@126.com

摘要: 圆锥角膜是一种常见、先天性、进展性、非炎症性的角膜变性疾病。角膜胶原交联可以增加角膜的硬度、控制圆锥角膜的进展。通过离子导入和增强剂可以提高核黄素的渗透性;通过使用脉冲光、氧气供养装置和石墨氮化碳量子点氧自给平台可增加氧气的供应以达到更好的交联效果;使用羟丙基甲基纤维素为载体的核黄素配方防止术中角膜变薄;使用孟加拉玫瑰红-绿光以及化学交联剂以降低生物毒性;只对角膜薄弱位置进行治疗的定制紫外线胶原交联手术可以保持圆锥角膜的稳定性;定制核黄素胶原交联手术解决了角膜上皮对大分子或亲水药物分子进入角膜的限制,又避免了去上皮角膜胶原交联术可能造成的并发症。


关键词: 圆锥角膜, 角膜胶原交联, 氧, 核黄素

Abstract: Keratoconus(KC) is a common congenital, progressive, non-inflammatory degenerative corneal disorder. Corneal collagen cross-linking can increase corneal stiffness and control disease progression. Enhanced riboflavin penetration is achieved through iontophoresis and penetration enhancers; improved oxygen supply for better cross-linking efficacy is facilitated by pulsed light, oxygen delivery devices, and graphitic carbon nitride quantum dot-based oxygen self-supply platforms; riboflavin formulations using hydroxypropyl methylcellulose as a carrier prevent intraoperative corneal thinning; Rose Bengal-green light illumination combined with chemical cross-linking agents reduces biotoxicity; customized ultraviolet collagen cross-linking targeting specific weakened corneal areas maintains keratoconus stability; and epithelial-sparing riboflavin cross-linking protocols overcome the corneal epithelium barrier against large/hydrophilic drug molecules while avoiding complications associated with epithelial debridement.


Key words: Keratoconus, Corneal collagen cross-linking, Oxygen, Riboflavin