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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Construction of self-assembled nanostructure-based tetraphenylethylene dipeptides: supramolecular nanobelts as biomimetic hydrogels for cell adhesion and proliferation
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Construction of self-assembled nanostructure-based tetraphenylethylene dipeptides: supramolecular nanobelts as biomimetic hydrogels for cell adhesion and proliferation

机译:基于自组装的纳米结构的四苯基乙烯二肽的构建:超分子纳米核作为细胞粘附和增殖的仿生水凝胶

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摘要

Supramolecular fluorescent materials with aggregation-induced emission (AIE) characteristics have promising applications as fluorescent probes for bio and chemosensors. In this study, a versatile low molecular weight tetraphenylethylene dipeptide hydrogelator (TPE-YY) with efficient AIE characteristics was developed, which was able to form hydrogels in a broad pH range from 3.7 to 10.2. The self-assembly of this hydrogel is completely pH-dependent, with significant structural transitions from high to low pH. At a relatively high pH value (10.2), a weak transparent hydrogel with an entangled network of nanofibers was obtained, while upon neutralization (pH 7.2) with dilute HCl, a stable semi-transparent gel with twisted nanobelts was formed. When the pH of the hydrogel was reduced to below 5.7, a turbid viscous gel and precipitation appeared with the thickening of the nanobelts. Surprisingly, the hydrogel resulting from the glucono-delta-lactone triggered gel showed only nanofibers independent of pH. The nature of the hydrogels and the nanostructures at different pH values were thoroughly examined and discussedviaoscillatory rheology, electron microscopy and various spectroscopic techniques {(HNMR)-H-1,D-2-NMR, Fourier transform infrared (FTIR) and Circular dichroism (CD)}. Interestingly, the self-assembled hydrogel exhibited excellent biocompatibility over 95% using hydrogel leachables on two different cell lines, 3A6 (human MSCs) and L929 (mouse fibroblast cells). Moreover, the self-assembled nanobelts formed at neutral pH showed excellent cell adhesion and proliferation of 3A6 cells, whereas the nanofibers showed poor cell adhesion and proliferation. Overall, we demonstrate the importance of chemical design for the formation of self-assembled nanobelts and supramolecular hydrogels at physiological pH with selective cell adhesion and proliferation, presenting a promising applications in tissue engineering and regenerative medicine.
机译:具有聚集诱导的发射(AIE)特性的超分子荧光材料具有希望作为生物和化学传感器的荧光探针的应用。在该研究中,开发了一种具有有效AIE特性的通用低分子量四苯基二肽水胶(TPE-YY),其能够在宽的pH范围为3.7至10.2中形成水凝胶。该水凝胶的自组装是完全pH依赖性的,具有高于低pH值的显着结构转变。在相对较高的pH值(10.2)中,获得具有缠结纳米纤维网络的弱透明水凝胶,同时在中和(pH7.2)与稀HCl时,形成具有捻纳米胶的稳定的半透明凝胶。当水凝胶的pH降低至5.7以下时,纳米座的增厚出现浑浊的粘性凝胶和沉淀。令人惊讶的是,由葡聚糖醇 - δ-内酯引发的凝胶产生的水凝胶仅显示与pH无关的纳米纤维。水凝胶的性质和不同pH值下的纳米结构进行彻底检查,并讨论了viaSclatory流变学,电子显微镜和各种光谱技术{(HNMR)-H-1,D-2-NMR,傅立叶变换红外(FTIR)和圆形二色性(光盘)}。有趣的是,自组装水凝胶在两种不同的细胞系,3a6(人MSC)和L929(小鼠成纤维细胞)上使用水凝胶鹿剂在95%上表现出优异的生物相容性。此外,在中性pH下形成的自组装纳米核显示出优异的细胞粘附和3A6细胞的增殖,而纳米纤维显示出差的细胞粘附和增殖。总体而言,我们证明了化学设计在生理pH下形成了自组装纳米螺纹和超分子水凝胶的重要性,具有选择性细胞粘附和增殖,在组织工程和再生医学中提出了有希望的应用。

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