首页> 美国卫生研究院文献>Tissue Engineering. Part A >Self-Assembly of Aligned Tissue-Engineered Annulus Fibrosus and Intervertebral Disc Composite Via Collagen Gel Contraction
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Self-Assembly of Aligned Tissue-Engineered Annulus Fibrosus and Intervertebral Disc Composite Via Collagen Gel Contraction

机译:对齐的组织工程化纤维环和椎间盘复合物通过胶原蛋白凝胶收缩的自组装。

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摘要

Many cartilaginous tissues such as intervertebral disc (IVD) display a heterogeneous collagen microstructure that results in mechanical anisotropy. These structures are responsible for mechanical function of the tissue and regulate cellular interactions and metabolic responses of cells embedded within these tissues. Using collagen gels seeded with ovine annulus fibrosus cells, constructs of varying structure and heterogeneity were created to mimic the circumferential alignment of the IVD. Alignment was induced within gels by contracting annular gels around an inner boundary using both a polyethylene center and alginate center to create a composite engineered IVD. Collagen alignment and heterogeneity were measured using second harmonic generation microscopy. Decreasing initial collagen density from 2.5 mg/mL to 1 mg/mL produced greater contraction of constructs, resulting in gels that were 55% and 6.2% of the original area after culture, respectively. As a result, more alignment occurred in annular-shaped 1 mg/mL gels compared with 2.5 mg/mL gels (p < 0.05). This alignment was also produced in a composite-engineered IVD with alginate nucleus pulposus. The resulting collagen alignment could promote further aligned collagen development necessary for the creation of a mechanically functional tissue-engineered IVD.
机译:许多软骨组织(例如椎间盘(IVD))显示出异质的胶原微结构,从而导致机械各向异性。这些结构负责组织的机械功能,并调节细胞相互作用和嵌入这些组织内的细胞的代谢反应。使用植入了羊眼纤维环细胞的胶原蛋白凝胶,可以构建具有不同结构和异质性的构建体,以模拟IVD的周向排列。通过使用聚乙烯中心和藻酸盐中心同时收缩围绕内部边界的环形凝胶,在凝胶内诱导排列,从而形成复合工程化的IVD。使用二次谐波显微镜检测胶原蛋白的排列和异质性。将最初的胶原蛋白密度从2.5μg/ mL降低到1μg/ mL会产生更大的构建体收缩,导致凝胶分别占培养后原始面积的55%和6.2%。结果,与2.5μg/ mL的凝胶相比,环形1μg/ mL的凝胶发生了更多的对准(p <0.05)。在具有藻酸盐髓核的复合工程IVD中也产生了这种比对。产生的胶原蛋白排列可以促进进一步排列的胶原蛋白的发育,这对于创建机械功能的组织工程化的IVD来说是必需的。

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