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首页> 外文期刊>Tissue engineering, Part A >Three-dimensional engineered bone from bone marrow stromal cells and their autogenous extracellular matrix.
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Three-dimensional engineered bone from bone marrow stromal cells and their autogenous extracellular matrix.

机译:来自骨髓基质细胞及其自体细胞外基质的三维工程骨。

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摘要

Most bone tissue-engineering research uses porous three-dimensional (3D) scaffolds for cell seeding. In this work, scaffold-less 3D bone-like tissues were engineered from rat bone marrow stromal cells (BMSCs) and their autogenous extracellular matrix (ECM). The BMSCs were cultured on a 2D substrate in medium that induced osteogenic differentiation. After reaching confluence and producing a sufficient amount of their own ECM, the cells contracted their tissue monolayer around two constraint points, forming scaffold-less cylindrical engineered bone-like constructs (EBCs). The EBCs exhibited alizarin red staining for mineralization and alkaline phosphatase activity and contained type I collagen. The EBCs developed a periosteum characterized by fibroblasts and unmineralized collagen on the periphery of the construct. Tensile tests revealed that the EBCs in culture had a tangent modulus of 7.5 +/- 0.5 MPa at 7 days post-3D construct formation and 29 +/- 9 MPa at 6 weeks after construct formation. Implantation of the EBCs into rats 7 days after construct formation resulted in further bone development and vascularization. Tissue explants collected at 4 weeks contained all three cell types found in native bone: osteoblasts, osteocytes, and osteoclasts. The resulting engineered tissues are the first 3D bone tissues developed without the use of exogenous scaffolding.
机译:大多数骨组织工程研究使用多孔三维(3D)支架进行细胞播种。在这项工作中,无支架的3D骨样组织是从大鼠骨髓基质细胞(BMSC)及其自体细胞外基质(ECM)改造而来的。将BMSC在诱导成骨分化的培养基中的2D底物上培养。达到汇合并产生足够数量的自身ECM后,细胞在两个约束点附近收缩其组织单层,形成无支架的圆柱形工程骨样结构(EBC)。 EBC表现出矿化和碱性磷酸酶活性的茜素红染色,并且包含I型胶原。 EBC在构造物的外围形成了一个以成纤维细胞和未矿化的胶原为特征的骨膜。拉伸测试显示,培养的EBC在3D构建体形成后7天的切线模量为7.5 +/- 0.5 MPa,在构建体形成6周后的切线模量为29 +/- 9 MPa。在构建体形成后7天将EBC植入大鼠体内,导致进一步的骨骼发育和血管形成。在第4周收集的组织外植体包含天然骨中发现的所有三种细胞类型:成骨细胞,成骨细胞和破骨细胞。所得的工程组织是在不使用外来支架的情况下开发的首批3D骨组织。

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