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Silica Hybrid for Corneal Replacement: Optical, Biomechanical, and Ex Vivo Biocompatibility Studies

机译:角膜置换用硅胶混合材料:光学,生物力学和体内生物相容性研究

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Purpose.: To investigate compositions of silicaa??collagen hybrid materials as potential artificial corneal substitutes, how these components affect the optical and biomechanical properties of the hybrids, and their biocompatibility in an organ culture model. Methods.: Hybrid materials were created from different proportions of collagen and silica precursors and manufactured to specific dimensions. The microstructure of the materials was determined by electron microscopy and mechanical strength was measured by using suture pullout tests. The refractive index and transmittance were measured by using an Abbe refractometer and a spectrophotometer. Materials were implanted into rabbit corneas to determine their epithelialization in organ culture. Results.: Scanning electron microscopy demonstrated that the hybrid material consisted of silica-encapsulating collagen fibrils. The refractive index ranged from 1.332 to 1.403 depending upon the composition and manufacturing characteristics. The rupture strength of a 3:1 (silica:collagen ratio by weight) rehydrated xerogel was 0.161 ?± 0.073 N/mm (n = 12), while the hydrogels and 9:1 xerogel were too fragile for suturing. Re-epithelialization of 5- to 6-mm-wide rabbit corneal epithelial defects was complete in 5.5 ?± 2.4 days (n = 6), with evidence of epithelial stratification. Conclusions.: Silicaa??collagen hybrid materials can be manufactured to specific dimensions to serve as a possible artificial corneal substitute. In preliminary studies, the materials had favorable optical, biomechanical, and biocompatibility properties necessary for replacing the corneal stroma.
机译:目的:研究作为潜在的人工角膜替代物的二氧化硅-胶原蛋白杂化材料的成分,这些成分如何影响杂化物的光学和生物力学特性,以及它们在器官培养模型中的生物相容性。方法:混合材料是由不同比例的胶原蛋白和二氧化硅前体制成的,并按特定尺寸制造。通过电子显微镜确定材料的微观结构,并通过使用缝线拉拔测试测量机械强度。通过使用阿贝折射仪和分光光度计测量折射率和透射率。将材料植入兔角膜中,以确定它们在器官培养中的上皮形成。结果:扫描电子显微镜显示杂化材料由二氧化硅包裹的胶原原纤维组成。取决于组成和制造特性,折射率在1.332至1.403的范围内。 3:1(二氧化硅:胶原蛋白重量比)再水化的干凝胶的断裂强度为0.161±0.073 N / mm(n = 12),而水凝胶和9:1的干凝胶太脆弱而无法缝合。 5至6毫米宽的兔角膜上皮缺损的再上皮化在5.5±±2.4天(n = 6)内完成,并有上皮分层的证据。结论:可以将二氧化硅-胶原混合材料制造成特定尺寸,以用作可能的人工角膜替代物。在初步研究中,该材料具有替代角膜基质所必需的良好的光学,生物力学和生物相容性。

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