Agrawal Parinita, Tiwari Anil, Chowdhury Suvro Kanti, Vohra Mehak, Gour Abha, Waghmare Neha, Bhutani Utkarsh, Kamalnath S, Sangwan Bharti, Rajput Jyoti, Raj Ritu, Rajendran Nisha P, Kamath Ajith V, Haddadin Ramez, Chandru Arun, Sangwan Virender S, Bhowmick Tuhin
Pandorum Technologies Pvt., Ltd, Bangalore, India.
Dr. Shroff's Charity Eye Hospital, New Delhi, India.
iScience. 2024 Mar 28;27(5):109641. doi: 10.1016/j.isci.2024.109641. eCollection 2024 May 17.
Cornea-related injuries are the most common cause of blindness worldwide. Transplantation remains the primary approach for addressing corneal blindness, though the demand for donor corneas outmatches the supply by millions. Tissue adhesives employed to seal corneal wounds have shown inefficient healing and incomplete vision restoration. We have developed a biodegradable hydrogel - Kuragel, with the ability to promote corneal regeneration. Functionalized gelatin and hyaluronic acid form photo-crosslinkable hydrogel with transparency and compressive modulus similar to healthy human cornea. Kuragel composition was tuned to achieve sufficient adhesive strength for sutureless integration to host tissue, with minimal swelling post-administration. Studies in the New Zealand rabbit mechanical injury model affecting corneal epithelium and stroma demonstrate that Kuragel efficiently promotes re-epithelialization within 1 month of administration, while stroma and sub-basal nerve plexus regenerate within 3 months. We propose Kuragel as a regenerative treatment for patients suffering from corneal defects including thinning, by restoration of transparency and thickness.
角膜相关损伤是全球失明的最常见原因。尽管对供体角膜的需求比供应量多出数百万,但移植仍然是解决角膜盲的主要方法。用于封闭角膜伤口的组织粘合剂显示出愈合效率低下和视力恢复不完全的问题。我们开发了一种可生物降解的水凝胶——Kuragel,它具有促进角膜再生的能力。功能化明胶和透明质酸形成具有与健康人角膜相似的透明度和压缩模量的光交联水凝胶。调整Kuragel的成分以实现足够的粘合强度,以便与宿主组织进行无缝整合,给药后肿胀最小。在新西兰兔机械损伤模型中对影响角膜上皮和基质的研究表明,Kuragel在给药后1个月内有效促进上皮再形成,而基质和基底神经丛在3个月内再生。我们建议将Kuragel作为一种再生治疗方法,用于治疗包括角膜变薄在内的角膜缺陷患者,通过恢复透明度和厚度来实现。