IEEE Trans Nanobioscience. 2019 Jul;18(3):448-455. doi: 10.1109/TNB.2019.2911044. Epub 2019 Apr 12.
Hydrogels designed by biomimetism and bioinspiration have been considered as a promising biomaterial for biomedical applications due to their biocompatible characteristics. Though biomimetic or bioinspired hydrogels have been widely studied by biochemical analysis, so far the detailed organizations and properties of native natural hydrogels are still not fully understood. The advent of atomic force microscopy (AFM) provides a potent tool for probing the biological samples in their living states with nanometer spatial resolution, which offers new possibilities for addressing the biological and material issues at the nanoscale. In this paper, AFM was utilized to characterize the structures and adhesive properties of the natural hydrogels produced by the carnivorous plant sundew. AFM morphological images of the mucilage secreted by three types of sundew show the composite nanostructures of the mucilage (e.g., nanoparticles, nanofibers, and porous polymeric networks), which are correlated with the mucilage's adhesive features revealed by AFM force measurements and peak force tapping mechanical imaging. The research demonstrates the prominent capabilities of AFM in characterizing the nanoscopic structures and properties of natural hydrogels with unprecedented spatial resolution, which is useful for understanding the underlying mechanisms guiding the behaviors of natural hydrogels and will potentially benefit the studies of biomimetic and bioinspired biomaterials.
仿生设计的水凝胶由于其生物相容性而被认为是一种很有前途的生物医学应用材料。尽管仿生水凝胶已经通过生化分析得到了广泛的研究,但到目前为止,天然水凝胶的详细结构和性质仍未被完全理解。原子力显微镜(AFM)的出现为在纳米空间分辨率下探测生物样品的活态提供了有力的工具,这为解决纳米尺度上的生物和材料问题提供了新的可能性。在本文中,我们利用原子力显微镜(AFM)来表征食虫植物茅膏菜产生的天然水凝胶的结构和粘附特性。三种茅膏菜分泌的黏液的 AFM 形貌图像显示了黏液的复合纳米结构(例如,纳米颗粒、纳米纤维和多孔聚合物网络),这与 AFM 力测量和峰值力轻敲机械成像揭示的黏液的粘附特征相关。该研究展示了 AFM 在以空前的空间分辨率表征天然水凝胶的纳米级结构和性能方面的卓越能力,这有助于理解指导天然水凝胶行为的潜在机制,并将有益于仿生和生物启发的生物材料的研究。