Zhou Yu, Centeno Silvia P, Zhang Kuan, Zheng Lifei, Göstl Robert, Herrmann Andreas
DWI - Leibniz Institute for Interactive Materials, Forckenbeckstr. 50, 52056, Aachen, Germany.
Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, Groningen, 9747 AG, The Netherlands.
Adv Mater. 2023 Apr;35(16):e2210052. doi: 10.1002/adma.202210052. Epub 2023 Mar 11.
Glues are being used to bond, seal, and repair in industry and biomedicine. The improvement of gluing performance is hence important for the development of new glues with better and balanced property spaces, which in turn necessitates a mechanistic understanding of their mechanical failure. Optical force probes (OFPs) allow the observation of mechanical material damage in polymers from the macro- down to the microscale, yet have never been employed in glues. Here, the development of a series of ratiometric OFPs based on fluorescent-protein-dye and protein-protein conjugates and their incorporation into genetically engineered bio-glues is reported. The OFPs are designed to efficiently modulate Förster resonance energy transfer upon force application thereby reporting on force-induced molecular alterations independent of concentration and fluorescence intensity both spectrally and through their fluorescence lifetime. By fluorescence spectroscopy in solution and in the solid state and by fluorescence lifetime imaging microscopy, stress concentrations are visualized and adhesive and cohesive failure in the fracture zone is differentiated.
胶水在工业和生物医学领域被用于粘结、密封和修复。因此,提高胶合性能对于开发具有更好且平衡性能空间的新型胶水很重要,而这反过来又需要对其机械失效有一个机理上的理解。光学力探针(OFP)能够观察聚合物中从宏观到微观尺度的机械材料损伤,但从未应用于胶水。在此,报道了一系列基于荧光蛋白染料和蛋白质 - 蛋白质共轭物的比率型OFP的开发及其在基因工程生物胶中的应用。这些OFP被设计为在施加力时有效地调节福斯特共振能量转移,从而通过光谱以及荧光寿命报告与浓度和荧光强度无关的力诱导分子变化。通过溶液和固态中的荧光光谱以及荧光寿命成像显微镜,应力集中得以可视化,并且断裂区域中的粘附和内聚失效得以区分。