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Efficacy, safety, and biodegradation of a degradable scleral buckle of Chitosan-Gelatin polymer in rabbits

机译:壳聚糖-明胶聚合物可降解巩膜带扣在兔中的功效,安全性和生物降解

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PURPOSE: To evaluate the efficacy, safety, and biodegradation of chitosan-gelatin scleral buckles in rabbit eyes. METHODS: Segmental scleral buckling was performed on the left eye of each rabbit. There were 40 rabbits in chitosan-gelatin group and 20 rabbits in silicone sponge group. B-scan ocular ultrasonography was used to evaluate buckling effect. Retinal function after implantation was evaluated by electroretinograms. Tissue reaction and biocompatibility was examined by histology. Scanning electron microscope was used to analyze structural changes after episcleral implantation. Degradation of chitosan-gelatin was assessed by mass loss. RESULTS: Indentation of both implants decreased over time. However, the indentation created by chitosan-gelatin implant was lower than the silicone sponge one. Extrusion of implant was found in 20% eyes of silicone sponge group. Electroretinography revealed no detectable difference in retinal function between the two groups. Partially degraded chitosan-gelatin, newly formed capillaries, loose connective tissue, and some cell infiltration were found in chitosan-gelatin; however, only a slight cell infiltration was found in silicone sponge. Over a 9-month observation period, degradation rate of the chitosan-gelatin was about 36%. CONCLUSION: Chitosan-gelatin polymer was used effectively and safely as an implant for scleral buckling in a rabbit and showed good biodegradation.
机译:目的:评估壳聚糖-明胶巩膜带扣在兔眼中的疗效,安全性和生物降解性。方法:对每只兔的左眼进行节段性巩膜屈曲。壳聚糖-明胶组40只,硅胶海绵组20只。 B扫描眼超声用于评估屈曲效果。通过视网膜电图评价植入后的视网膜功能。通过组织学检查组织反应和生物相容性。扫描电子显微镜用于分析巩膜植入后的结构变化。通过质量损失评估壳聚糖-明胶的降解。结果:两种植入物的压痕随着时间的推移而减少。然而,由壳聚糖-明胶植入物产生的压痕低于有机硅海绵。在硅海绵组的20%的眼睛中发现植入物挤出。视网膜电图检查显示两组之间的视网膜功能没有可检测到的差异。壳聚糖-明胶部分降解的壳聚糖-明胶,新形成的毛细管,疏松的结缔组织和一些细胞浸润;但是,在硅海绵中仅发现了少量的细胞浸润。在9个月的观察期内,壳聚糖-明胶的降解率约为36%。结论:壳聚糖-明胶聚合物可有效,安全地用作家兔巩膜屈曲的植入物,并具有良好的生物降解性。

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