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Chemicals-Inspired Biomaterials: Developing Biomaterials Inspired by Material Science Based on POSS

机译:化学品激发生物材料:开发基于POSS的材料科学启发的生物材料

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The concept of "chemicals-inspired biomaterials" and several examples are demonstrated in this review. The idea and background for the design of chemicals-inspired biomaterials which are constructed based on the chemistry and characteristics in material science are explained. As an example, we show several chemicals-inspired materials utilizing polyhedral oligomeric silsesquioxane (POSS) as a building block to apply the material functions of the POSS chemicals for fabricating a series of biomaterials having superior properties. Initially, the filler effects of POSS are explained. Because of the robust silica cube, POSS derivatives can show significant effect as a filler reinforcing the thermal and mechanical properties of conventional plastics simply by mixing. Based on these results, we designed rigid chelators for the complexation with gadolinium ions as an MRI contrast agent. It is demonstrated that the enhancement of the rigidity is a valid strategy for the improvement of the sensitivity. Next, we assembled the functional molecules into the POSS-core dendrimer. We observed from the dendrimer complexes that photon upconversion can be accomplished via an optical process which should be suppressed in electroluminescence devices. The last topic concerns the selective encapsulation by the POSS-core dendrimer for biomolecules. From the study of PUSS-based ionic liquids, it was found that the strength of the hydrogen bonds with the ion pair moiety was significantly increased by tethering to POSS. Based on this enhancement, we accomplished selective encapsulation with the PUSS-core dendrimer. The results and the prominent properties of the chemicals-inspired biomaterials are shown in this review.
机译:“化学品启发生物材料”的概念和几个例子在本综述中得到了证明。解释了基于材料科学化学和特征构建的化学品启发生物材料设计的理念和背景。作为一个例子,我们展示了一种利用多面体低聚Silsesquioxane(POSS)作为构建块的多种化学品启发材料,以应用足够的材料的材料功能,用于制造具有优异性质的一系列生物材料。最初,解释有可能的填充效应。由于稳健的二氧化硅立方体,POSS衍生物可以通过混合而作为填充剂的填充剂显着地增强了常规塑料的热和机械性能。基于这些结果,我们设计了刚性螯合剂,用于与钆离子作为MRI造影剂的络合。结果表明,刚性的增强是改善敏感性的有效策略。接下来,我们将功能分子组装成有可能核心的树枝状大分子。我们从树枝状聚合物中观察到光子上链可以通过在电致发光器件中抑制的光学过程来完成光子上变化。最后一个主题涉及用于生物分子的POSS-CORE DENDIMER的选择性封装。从基于PUSS的离子液体的研究来看,发现通过培养到POSS,显着增加了与离子对部分的氢键的强度显着增加。基于这种增强,我们与Puss-Core Dendrimer完成了选择性封装。在本综述中显示了化学品启发生物材料的结果和突出特性。

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