Faculty of Biology, University of Freiburg, Schänzlestrasse 1, 79104 Freiburg, Germany.
Acta Biomater. 2013 Sep;9(9):8272-8. doi: 10.1016/j.actbio.2013.05.008. Epub 2013 May 16.
Biohybrid materials combining synthetic polymers with biological components are highly suited for tissue engineering in order to emulate the behavior of natural materials such as the extracellular matrix (ECM). In order to allow for an optimal cell-material interplay, the physical and biological parameters of the artificial matrix need to be dynamically remodeled during cultivation. Current tissue engineering concepts are mainly based on passive remodeling mechanisms including the degradation of the hydrogel and the release of incorporated biomolecules and therefore do not enable external adjustment of cultivation conditions. We present a novel hydrogel material that is able to serve as a cell growth matrix, whose degradation and presentation of cell-interacting biomolecules can be externally controlled by the addition of a pharmacological substance. The hydrogel is based on branched polyethylene glycol that is covalently decorated with the aminocoumarin-antibiotic switchable gyrase B protein conferring stimulus-responsive degradation. ECM properties were conferred to the hydrogels with cell attachment motifs and a general approach for the incorporation and inducible release of therapeutic biomolecules. This smart biohybrid material has the potential to serve as a next-generation tissue engineering device which allows for dynamic external adjustment of the physical and biological parameters, resulting in optimally controlled tissue formation.
生物杂交材料将合成聚合物与生物成分结合在一起,非常适合用于组织工程,以模拟细胞外基质 (ECM) 等天然材料的行为。为了实现细胞与材料的最佳相互作用,在培养过程中需要动态重塑人工基质的物理和生物学参数。目前的组织工程概念主要基于被动重塑机制,包括水凝胶的降解和掺入的生物分子的释放,因此无法对外界培养条件进行调整。我们提出了一种新型水凝胶材料,可作为细胞生长基质,其降解和呈现细胞相互作用的生物分子可以通过添加药理学物质来进行外部控制。该水凝胶基于支化聚乙二醇,通过共价键修饰氨基香豆素抗生素可切换拓扑异构酶 B 蛋白,赋予其刺激响应性降解。通过细胞附着基序和治疗性生物分子的掺入和诱导释放的一般方法,将细胞外基质特性赋予水凝胶。这种智能生物杂交材料具有成为下一代组织工程设备的潜力,它可以动态地对外界调整物理和生物学参数,从而实现最佳的组织形成控制。