Smith Tai M, Suzuki Shuko, Cronin Brendan G, Haghighatpanah Mohammadreza, Petcu Eugen B, Philippa Christopher J, Chirila Traian V
Queensland Eye Institute, South Brisbane, Queensland, Australia.
Griffith University School of Medicine, Menzies Health Institute, Gold Coast Campus, Queensland, Australia.
Ophthalmic Plast Reconstr Surg. 2018 Sep/Oct;34(5):477-482. doi: 10.1097/IOP.0000000000001063.
An experimental study to demonstrate in animal eyelids that the controlled exposure of excised tarsal plate to ultraviolet-A radiation can induce a rigidification effect due to photochemical crosslinking of the constitutive collagen.
Excised strips of sheep tarsus were irradiated with ultraviolet-A rays (wavelength 365 nm) at low and high irradiances, in the presence of riboflavin as a photosensitizer, using radiation sources available for corneal collagen crosslinking procedure. The tensile strength and Young's modulus (stiffness) of irradiated and control samples were measured in a mechanical tester and analyzed statistically. Histologic examination of the specimens was carried out to evaluate the effect of radiation on the meibomian glands and collagen organization.
Mechanical evaluation showed that irradiation induced both stiffening and strengthening of the tarsal plate specimens, and this effect was enhanced at the higher levels of irradiance. The changes in mechanical properties can be attributed to a process of photochemically induced crosslinking of tarsal collagen. Histology revealed no changes in the meibomian glands or in the fibrous collagen system of the tarsus.
These findings indicate that irradiation of tarsal collagen leading to tissue stiffening could be a safe procedure for treating lax eyelid conditions in human patients.
进行一项实验研究,以在动物眼睑中证明,将切除的睑板可控地暴露于紫外线A辐射下,可因组成性胶原蛋白的光化学交联而诱导僵化效应。
使用角膜胶原交联手术可用的辐射源,在作为光敏剂的核黄素存在的情况下,以低辐照度和高辐照度用紫外线A射线(波长365 nm)照射切除的羊睑板条。在机械测试仪中测量照射样本和对照样本的拉伸强度和杨氏模量(刚度),并进行统计学分析。对标本进行组织学检查,以评估辐射对睑板腺和胶原组织的影响。
力学评估表明,照射可诱导睑板标本变硬和变强,且在较高辐照度水平下这种效应增强。力学性能的变化可归因于睑板胶原蛋白的光化学诱导交联过程。组织学显示睑板腺或睑板的纤维胶原系统无变化。
这些发现表明,导致组织变硬的睑板胶原照射可能是治疗人类患者眼睑松弛状况的一种安全方法。