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首页> 外文期刊>Advanced Functional Materials >Cyclodextrin Modulated Type Ⅰ Collagen Self-Assembly to Engineer Biomimetic Cornea Implants
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Cyclodextrin Modulated Type Ⅰ Collagen Self-Assembly to Engineer Biomimetic Cornea Implants

机译:环糊精调节的Ⅰ型胶原蛋白自组装对仿生角膜植入物的工程改造

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Collagen-rich tissues in the cornea exhibit unique and highly organized extracellular matrix ultrastructures, which contribute to its high load-bearing capacity and light transmittance. Corneal collagen fibrils are controlled during development by small leucine-rich proteoglycans (SLRPs) that regulate the fibril diameter and spacing in order to achieve the unique optical transparency. Cyclodextrins (CDs) of varying size and chemical functionality for their ability to regulate collagen assembly during vitrification process are screened in order to create biosynthetic materials that mimic the native cornea structure. Addition of beta CD to collagen vitrigels produces materials with aligned fibers and lamellae similar to native cornea, resulting in mechanically robust and transparent materials. Biochemistry analysis revealed that CD interacts with hydrophobic amino acids in collagen to influence assembly and fibril organization. To translate the self-assembled collagen materials for cornea reconstruction, custom molds for gelation and vitrification are engineered to create beta CD/Col implants with curvature matching that of the cornea. Acellular beta CD/Col materials are implanted in a rabbit partial keratoplasty model with interrupted sutures. The implants demonstrate tissue integration and support re-epithelialization. Therefore, the addition of CD molecules regulates collagen self-assembly and provides a simple process to engineer corneal mimetic substitutes with advanced structural and functional properties.
机译:角膜中富含胶原蛋白的组织表现出独特且高度组织化的细胞外基质超微结构,这有助于其高承载能力和透光率。角膜胶原蛋白原纤维在发育过程中受到富含亮氨酸的小蛋白聚糖(SLRP)的控制,该蛋白聚糖可调节原纤维的直径和间距,以实现独特的光学透明性。为了在玻璃化过程中调节胶原蛋白组装的能力,筛选了大小和化学功能不同的环糊精(CD),以产生模仿天然角膜结构的生物合成材料。在胶原玻璃质凝胶中添加β-CD可以产生具有与天然角膜相似的排列在一起的纤维和薄片的材料,从而产生机械坚固且透明的材料。生化分析表明,CD与胶原蛋白中的疏水氨基酸相互作用,影响组装和原纤维组织。为了平移自组装的胶原蛋白以进行角膜重建,工程化了用于凝胶化和玻璃化的定制模具,以创建曲率与角膜曲率相匹配的βCD / Col植入物。将无细胞βCD / Col材料植入缝线中断的兔子部分角膜移植模型中。植入物表现出组织整合并支持重新上皮形成。因此,CD分子的添加调节胶原蛋白的自组装,并提供了一种简单的方法来设计具有先进结构和功能特性的模拟角膜替代品。

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