Barroso Inês A, Man Kenny, Robinson Thomas E, Cox Sophie C, Ghag Anita K
School of Chemical Engineering, University of Birmingham, Birmingham B15 2TT, UK.
Bioengineering (Basel). 2022 Jan 28;9(2):53. doi: 10.3390/bioengineering9020053.
The current treatments for the management of corneal and scleral perforations include sutures and adhesives. While sutures are invasive, induce astigmatism and carry a risk of infection, cyanoacrylate glues are toxic, proinflammatory and form an opaque and rough surface that precludes vision. Consequently, the clinical need for a fast curing and strong tissue adhesive with minimised cytotoxicity and host inflammation remains unmet. In this paper, we engineer a gelatine methacryloyl (GelMA) adhesive that can be crosslinked in situ within 2 min using UV or visible light and a riboflavin (RF)/sodium persulfate (SPS) system. Optical coherence tomography (OCT) images demonstrated that the flowable GelMA adhesive could completely fill corneal wounds and restore the ocular curvature by forming a smooth contour on the ocular surface. Further, ex vivo studies in porcine eyes showed that GelMA bioadhesives exhibited burst pressures that were comparable to cyanoacrylates (49 ± 9 kPa), with the hydrogels exhibiting a transmittance (90%), water content (85%) and storage modulus (5 kPa) similar to the human cornea. Finally, using human dermal fibroblasts, we showed that our GelMA adhesive was non-toxic and could effectively support cell adhesion and proliferation. Taken together, the adhesive's performance, injectability and ease of administration, together with gelatin's availability and cost-effectiveness, make it a potential stromal filler or sealant for corneal and conjunctival applications.
目前用于治疗角膜和巩膜穿孔的方法包括缝合和使用粘合剂。虽然缝合具有侵入性,会导致散光并存在感染风险,但氰基丙烯酸酯胶水具有毒性、促炎性,且会形成不透明且粗糙的表面,从而影响视力。因此,临床上对一种快速固化、强力且细胞毒性和宿主炎症最小化的组织粘合剂的需求仍未得到满足。在本文中,我们设计了一种甲基丙烯酰化明胶(GelMA)粘合剂,它可以在2分钟内使用紫外线或可见光以及核黄素(RF)/过硫酸钠(SPS)系统在原位交联。光学相干断层扫描(OCT)图像显示,可流动的GelMA粘合剂可以完全填充角膜伤口,并通过在眼表形成光滑轮廓来恢复眼曲率。此外,在猪眼中进行的体外研究表明,GelMA生物粘合剂的爆破压力与氰基丙烯酸酯相当(49±9 kPa),水凝胶的透光率(90%)、含水量(85%)和储能模量(5 kPa)与人类角膜相似。最后,使用人真皮成纤维细胞,我们表明我们的GelMA粘合剂无毒,并且可以有效地支持细胞粘附和增殖。综上所述,该粘合剂的性能、可注射性和易于给药,以及明胶的可得性和成本效益,使其成为角膜和结膜应用中潜在的基质填充剂或密封剂。