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Significance of Crosslinking Approaches in the Development of Next Generation Hydrogels for Corneal Tissue Engineering

机译:角膜组织工程下一代水凝胶交联途径交联方法的意义

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摘要

Medical conditions such as trachoma, keratoconus and Fuchs endothelial dystrophy can damage the cornea, leading to visual deterioration and blindness and necessitating a cornea transplant. Due to the shortage of donor corneas, hydrogels have been investigated as potential corneal replacements. A key factor that influences the physical and biochemical properties of these hydrogels is how they are crosslinked. In this paper, an overview is provided of different crosslinking techniques and crosslinking chemical additives that have been applied to hydrogels for the purposes of corneal tissue engineering, drug delivery or corneal repair. Factors that influence the success of a crosslinker are considered that include material composition, dosage, fabrication method, immunogenicity and toxicity. Different crosslinking techniques that have been used to develop injectable hydrogels for corneal regeneration are summarized. The limitations and future prospects of crosslinking strategies for use in corneal tissue engineering are discussed. It is demonstrated that the choice of crosslinking technique has a significant influence on the biocompatibility, mechanical properties and chemical structure of hydrogels that may be suitable for corneal tissue engineering and regenerative applications.
机译:诸如沙眼,角蛋白和福克内皮营养不良的医疗病症可能会损伤角膜,导致视觉恶化和失明,并且需要进行角膜移植。由于供体角膜的短缺,水凝胶已被调查为潜在的角膜替代品。影响这些水凝胶的物理和生化特性的关键因素是它们如何交联。在本文中,提供了不同的交联技术和交联化学添加剂,其已经应用于水凝胶,用于角膜组织工程,药物递送或角膜修复。影响交联剂成功的因素被认为是包括材料组合物,剂量,制造方法,免疫原性和毒性。总结了用于开发用于角膜再生的可注射水凝胶的不同交联技术。讨论了角膜组织工程交联策略的局限性和未来前景。结果表明,交联技术的选择对水凝胶的生物相容性,机械性能和化学结构具有显着影响,该水凝胶可能适用于角膜组织工程和再生应用。

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