Fedorovich Natalja E, Alblas Jacqueline, de Wijn Joost R, Hennink Wim E, Verbout Ab J, Dhert Wouter J A
Department of Orthopedics, University Medical Center Utrecht, Utrecht, The Netherlands.
Tissue Eng. 2007 Aug;13(8):1905-25. doi: 10.1089/ten.2006.0175.
Organ printing, a novel approach in tissue engineering, applies layered computer-driven deposition of cells and gels to create complex 3-dimensional cell-laden structures. It shows great promise in regenerative medicine, because it may help to solve the problem of limited donor grafts for tissue and organ repair. The technique enables anatomical cell arrangement using incorporation of cells and growth factors at predefined locations in the printed hydrogel scaffolds. This way, 3-dimensional biological structures, such as blood vessels, are already constructed. Organ printing is developing fast, and there are exciting new possibilities in this area. Hydrogels are highly hydrated polymer networks used as scaffolding materials in organ printing. These hydrogel matrices are natural or synthetic polymers that provide a supportive environment for cells to attach to and proliferate and differentiate in. Successful cell embedding requires hydrogels that are complemented with biomimetic and extracellular matrix components, to provide biological cues to elicit specific cellular responses and direct new tissue formation. This review surveys the use of hydrogels in organ printing and provides an evaluation of the recent advances in the development of hydrogels that are promising for use in skeletal regenerative medicine. Special emphasis is put on survival, proliferation and differentiation of skeletal connective tissue cells inside various hydrogel matrices.
器官打印是组织工程中的一种新方法,它通过计算机驱动的分层方式沉积细胞和凝胶,以创建复杂的三维细胞负载结构。它在再生医学中显示出巨大的潜力,因为它可能有助于解决用于组织和器官修复的供体移植物有限的问题。该技术通过在打印的水凝胶支架中的预定义位置掺入细胞和生长因子,实现细胞的解剖学排列。通过这种方式,已经构建出了三维生物结构,如血管。器官打印发展迅速,该领域有令人兴奋的新可能性。水凝胶是高度水合的聚合物网络,在器官打印中用作支架材料。这些水凝胶基质是天然或合成聚合物,为细胞提供附着、增殖和分化的支持环境。成功的细胞包埋需要与仿生和细胞外基质成分互补的水凝胶,以提供生物信号来引发特定的细胞反应并指导新组织的形成。本文综述了水凝胶在器官打印中的应用,并对有望用于骨骼再生医学的水凝胶开发的最新进展进行了评估。特别强调了各种水凝胶基质中骨骼结缔组织细胞的存活、增殖和分化。