Department of Molecular and Cellular Anatomy, University of Regensburg, Regensburg, Germany.
Biomaterials. 2010 Apr;31(11):2945-54. doi: 10.1016/j.biomaterials.2009.12.048. Epub 2010 Jan 22.
Numerous factors influence cell functions and tissue development in culture. A modular culture system has been developed to allow the control of many of these important environmental parameters. Optimal adhesion of cells is obtained by selecting an individual biomaterial. Selected specimens are mounted in a tissue carrier in order to protect it against damage during handling and after seeding cells, the carriers can be used in a series of compatible perfusion culture containers. This technique allows the simple bathing of growing tissue under continuous medium transport and the exposure of epithelia to a gradient with different fluids at the luminal and basal sides. A further container is made of transparent material to observe microscopically the developing tissue. In addition, a special model features a flexible silicone lid to apply force to mimic the mechanical load required for developing connective and muscular tissue. Perfusion culture of stem/progenitor cells at the interface of an artificial interstitium made by a polyester fleece results in the spatial development of tubules. During long term culture over weeks the growing tissue is continuously exposed to fresh nutrition and respiratory gas. The medium is transported in a constant flow or in pulses, preventing unstirred layers of fluid. A variety of applications of this modular system, described in this paper, demonstrates that the biological profile of cells and tissues can be strongly improved when perfusion culture with a permanent provision of fresh medium is applied.
众多因素会影响细胞在培养中的功能和组织发育。我们开发了一种模块化培养系统,可用于控制许多重要的环境参数。通过选择合适的生物材料,可以获得细胞的最佳黏附效果。选择好的样本被安装在组织载体中,以在处理过程中和接种细胞后防止其受损,载体可用于一系列兼容的灌注培养容器中。这种技术允许在持续的介质输送下简单地对生长组织进行沐浴,并使上皮暴露于腔侧和基底侧具有不同液体的浓度梯度中。另一个容器由透明材料制成,可用于显微镜下观察正在发育的组织。此外,特殊模型的特点是采用柔性硅树脂盖来施加力,以模拟用于发育结缔组织和肌肉组织所需的机械负荷。在由聚酯纤维制成的人工间质界面处对干细胞/祖细胞进行灌注培养会导致小管的空间发育。在数周的长期培养过程中,生长组织会持续暴露于新鲜的营养物质和呼吸气体中。介质以恒定的流速或脉冲输送,防止流体出现未搅动层。本文描述了该模块化系统的多种应用,证明了当应用持续提供新鲜介质的灌注培养时,可以大大改善细胞和组织的生物学特性。