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首页> 外文期刊>Tissue engineering, Part A >The Role of Cell Seeding, Bioscaffolds, and the In Vivo Microenvironment in the Guided Generation of Osteochondral Composite Tissue
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The Role of Cell Seeding, Bioscaffolds, and the In Vivo Microenvironment in the Guided Generation of Osteochondral Composite Tissue

机译:细胞播种,生物支架和体内微环境在骨软骨复合组织的指导生成中的作用。

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摘要

Tissue engineering based on cell seeding, bioscaffolds, and growth factors has been widely applied for the reconstruction of tissue defects. Recent progress has fueled in vivo tissue engineering techniques in becoming hot topics in regenerative medicine and reconstructive surgery. To improve the efficacy of tissue engineering, we here investigated the roles of cell seeding, bioscaffolds, growth factors, and in vivo microenvironment (IM) in tissue regeneration. Bone marrow-derived stem cells, allogeneic demineralized bone matrix as bioscaffold, and growth factor bone morphogenetic protein 2/transforming growth factor, and the IM of rib periosteum and perichondrium were used in different combinations for the generation of osteochondral composite tissue. Self-regenerated neocomposite tissue based on the IM alone exhibited excellent anatomical configuration, vascularization, biomechanical stability, and function similar to native controls. Our findings indicate that the IM is a crucial factor in biofunctional tissue generation. Further refinement and development of this technique may enable transfer to clinical application with broad spectrum of application.
机译:基于细胞接种,生物支架和生长因子的组织工程已广泛应用于组织缺陷的重建。最近的进展推动了体内组织工程技术成为再生医学和重建手术的热门话题。为了提高组织工程的功效,我们在这里研究了细胞接种,生物支架,生长因子和体内微环境(IM)在组织再生中的作用。骨髓来源的干细胞,同种异体脱矿骨基质作为生物支架,生长因子骨形态发生蛋白2 /转化生长因子以及肋骨骨膜和软骨膜的IM以不同的组合用于生成骨软骨复合组织。仅基于IM的自再生新复合材料组织显示出出色的解剖结构,血管生成,生物力学稳定性,并且功能类似于天然对照。我们的发现表明IM是生物功能组织生成的关键因素。该技术的进一步改进和发展可以使具有广泛应用范围的临床应用成为可能。

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