首页> 外文期刊>Acta biomaterialia >Towards constructing extracellular matrix-mimetic hydrogels: an elastic hydrogel constructed from tandem modular proteins containing tenascin FnIII domains.
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Towards constructing extracellular matrix-mimetic hydrogels: an elastic hydrogel constructed from tandem modular proteins containing tenascin FnIII domains.

机译:朝向构建细胞外基质模拟水凝胶:由含有Tenascin FNIIII域的串联模块化蛋白构成的弹性水凝胶。

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Protein-based hydrogels have been developed for various biomedical applications where they provide artificial extracellular microenvironments that mimic the physical and biochemical characteristics of natural extracellular matrices (ECMs). In natural ECMs, a large number of proteins are tandem modular proteins consisting of many individually folded functional domains that confer structural and biological functionalities. Such tandem modular proteins are promising building blocks for constructing ECM-mimetic biomaterials. However, their use for such purposes has not been explored extensively. Tenascin-C (TNC) is an ECM tandem modular protein and plays an important role in mechanotransduction by regulating important cell-matrix interactions. The third FnIII domain of TNC (TNfn3) contains an RGD sequence and is known to bind integrins. Here we use the TNfn3 domain and resilin sequence-based tandem modular protein FRF4RF4R (F represents the TNfn3 domain and R represents the resilin sequence, respectively) as a building block to construct protein-based ECM-mimetic hydrogels. The tandem modular protein-based building block FRF4RF4R closely mimics the architecture of the naturally occurring tandem modular ECM protein TNC and incorporates intact RGD-containing FnIII domains. Our results demonstrate that tandem modular proteins containing TNfn3 can be readily photochemically crosslinked into elastic hydrogels, whose Young's modulus can be tuned by the concentration of the tandem modular protein solution. In vitro studies demonstrate that none of the photochemical crosslinking reaction components are cytotoxic at the level tested, and the hydrogel supports the spread of human lung fibroblast cells. Our results demonstrate that FRF4RF4R-based hydrogel is a novel ECM-mimetic hydrogel.
机译:已经为各种生物医学应用开发了基于蛋白质的水凝胶,其中它们提供人工细胞外微环境,其模仿天然细胞外基质(ECM)的物理和生化特征。在天然ECM中,大量蛋白质是串联的模块化蛋白质,其包括许多赋予结构和生物学功能的许多单独折叠的功能域。这种串联模块化蛋白是承受构建ECM模拟生物材料的建筑块。但是,他们对这种目的的用途尚未广泛探讨。 Tenascin-C(TNC)是一种ECM串联模块化蛋白,通过调节重要的细胞基质相互作用来在机械调节中起重要作用。 TNC(TNFN3)的第三个FNIII结构域含有RGD序列,已知已知结合整联蛋白。在这里,我们使用TNFN3结构域和基于RESILIN序列的串联模块化蛋白FRF4RF4R(F表示TNFN3结构域,R分别代表RERILIN序列)作为构建基于蛋白质的ECM模拟水凝胶的结构块。串联模块化蛋白质的构建块FRF4RF4R紧密地模仿天然存在的串联模块化ECM蛋白TNC的架构,并包含完整的RGD的FNIII结构域。我们的结果表明,含有TNFN3的串联模块化蛋白质可以容易地将其光学交联成弹性水凝胶,其杨氏模量可以通过串联模块化蛋白质溶液的浓度进行调节。体外研究表明,在测试水平的水平下,没有一种光化学交联反应组分是细胞毒性,水凝胶支持人肺成纤维细胞的扩散。我们的结果表明,FRF4RF4R基水凝胶是一种新型ECM模拟水凝胶。

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