Hoshi Sujin, Okamoto Fumiki, Arai Mikki, Hirose Tatsuo, Sugiura Yoshimi, Kaji Yuichi, Oshika Tetsuro
Department of Ophthalmology Faculty of Medicine, University of Tsukuba, Ibaraki, Japan.
Arai Eye Clinic, Fukuoka, Japan 3The Schepens Eye Research Institute, Harvard Medical School, Boston, Massachusetts, United States.
Invest Ophthalmol Vis Sci. 2015 Jul;56(8):4705-11. doi: 10.1167/iovs.14-15349.
Absorbable polyethylene glycol-based synthetic sealant (PEG sealant) polymerizes under xenon illumination and forms a clear, flexible, and firmly adherent hydrogel. The intraocular biocompatibility of PEG sealant and efficacy for closing retinal breaks were evaluated.
In an in vitro study, retinal detachment with a tear was created in porcine eyecups after vitreous gel removal. Polyethylene glycol-based synthetic sealant was applied to cover the tear and polymerized with a 40-second application of xenon light. Retinal adhesion strength was tested by forcefully squirting balanced salt solution (BSS) onto the retinal tear. Polyethylene glycol-based synthetic sealant was soaked in the BSS, incubated at 37°C, and the pH measured periodically over 72 hours. In an in vivo study, PEG sealant was injected into the vitreous cavity of the left eyes of rabbits. Ophthalmologic examinations were performed and bilateral ERGs were recorded simultaneously before and 28 days after injection. The eyes were enucleated for histological evaluation.
Adhesion of PEG sealant to the retina was good in BSS. A forceful squirt of BSS onto the retinal tear covered with PEG sealant did not detach the retina; the retinal tear without PEG sealant detached immediately. The pH of the BSS containing PEG sealant was between 7.2 and 8.2. No inflammatory reaction was observed in the eyes throughout 28 days of follow-up. The ERGs recorded before and after injection showed typical patterns. Histological examinations did not reveal any abnormality or inflammation.
Polyethylene glycol-based synthetic sealant appeared to effectively seal retinal breaks and was not toxic to the eye.
可吸收的聚乙二醇基合成密封剂(PEG密封剂)在氙气照射下聚合,形成透明、柔韧且粘附牢固的水凝胶。评估了PEG密封剂的眼内生物相容性以及封闭视网膜裂孔的效果。
在一项体外研究中,去除猪眼球玻璃体凝胶后制造带有裂孔的视网膜脱离。应用聚乙二醇基合成密封剂覆盖裂孔,并用氙气灯照射40秒使其聚合。通过向视网膜裂孔强力喷射平衡盐溶液(BSS)来测试视网膜粘附强度。将聚乙二醇基合成密封剂浸泡在BSS中,在37°C下孵育,并在72小时内定期测量pH值。在一项体内研究中,将PEG密封剂注入兔左眼的玻璃体腔。在注射前和注射后28天同时进行眼科检查并记录双侧视网膜电图(ERG)。摘除眼球进行组织学评估。
在BSS中,PEG密封剂与视网膜的粘附良好。向覆盖有PEG密封剂的视网膜裂孔强力喷射BSS不会使视网膜脱离;未使用PEG密封剂的视网膜裂孔立即脱离。含有PEG密封剂的BSS的pH值在7.2至8.2之间。在整个28天的随访中,眼中未观察到炎症反应。注射前后记录的ERG显示出典型模式。组织学检查未发现任何异常或炎症。
聚乙二醇基合成密封剂似乎能有效封闭视网膜裂孔,且对眼睛无毒。