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PEG-stabilized carbodiimide crosslinked collagen-chitosan hydrogels for corneal tissue engineering.

机译:PEG稳定的碳二亚胺交联的胶原壳聚糖水凝胶用于角膜组织工程。

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摘要

Implantable biomaterials that mimic the extracellular matrix (ECM) in key physical and physiological functions require components and microarchitectures that are carefully designed to maintain the correct balance between biofunctional and physical properties. Our goal was to develop hybrid polymer networks (HPN) that combine the bioactive features of natural materials and physical characteristics of synthetic ones to achieve synergy between the desirable mechanical properties of some components with the biological compatibility and physiological relevance of others. In this study, we developed collagen-chitosan composite hydrogels as corneal implants stabilized by either a simple carbodiimide cross-linker or a hybrid cross-linking system comprised of a long-range bi-functional cross-linker (e.g. poly(ethylene glycol) dibutyraldehyde (PEG-DBA)), and short-range amide-type cross-linkers (e.g. 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide (EDC), and N-hydroxysuccinimide (NHS)). Optimum hybrid hydrogel demonstrated significantly enhanced mechanical strength and elasticity by 100 and 20%, respectively, compared to its non-hybrid counterpart. It demonstrated excellent optical properties, optimum mechanical properties and suturability, and good permeability to glucose and albumin. It had excellent biocompatibility and when implanted into pig corneas for 12 months, allowed seamless host-graft integration with successful regeneration of host corneal epithelium, stroma, and nerves.
机译:在关键的生理和生理功能中模仿细胞外基质(ECM)的可植入生物材料需要精心设计的组件和微体系结构,以在生物功能和物理特性之间保持正确的平衡。我们的目标是开发混合聚合物网络(HPN),该网络将天然材料的生物活性特征与合成材料的物理特征相结合,以实现某些组件的理想机械性能与其他组件的生物相容性和生理相关性之间的协同作用。在这项研究中,我们开发了胶原-壳聚糖复合水凝胶作为角膜植入物,可通过简单的碳二亚胺交联剂或由长程双功能交联剂(例如聚乙二醇二丁醛)组成的混合交联系统来稳定(PEG-DBA)和短程酰胺类交联剂(例如1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)和N-羟基琥珀酰亚胺(NHS))。最佳混合水凝胶与非混合水凝胶相比,其机械强度和弹性分别显着提高了100%和20%。它具有出色的光学性能,最佳的机械性能和可缝合性,并且对葡萄糖和白蛋白具有良好的渗透性。它具有出色的生物相容性,当植入猪角膜中12个月时,可以实现无缝的宿主移植物整合,并成功再生宿主角膜上皮,基质和神经。

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