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Ratiometric Fluorescent Microgels for Sensing Extracellular Microenvironment pH during Biomaterial Degradation

机译:用于在生物材料降解期间感测细胞外微环境pH的比率荧光微凝胶

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Bone regeneration has attracted extensive attention in the field of regenerative medicine. The influence of biomaterial on the extracellular environment is important for regulating the biological functions of cells for tissue regeneration. Among the various influencing factors, we had previously demonstrated that the extracellular pH value in the local microenvironment during biomaterial degradation affected the balance of bone formation and resorption. However, there is a lack of techniques for conveniently detecting the pH of the extracellular environment. In light of the development of fluorescent pH-sensing probes, herein, we fabricated a novel ratiometric fluorescent microgel (F-MG) for real-time and spatiotemporal monitoring of microenvironment pH. F-MGs were prepared from polyurethane with a size of around 75 μm by loading with pH-sensitive bovine serum albumin nanoparticles (BNPs) and pH-insensitive Nile red as a reference. The pH probes exhibited reversible fluorescence response to pH change and worked in a linear range of 6–10. F-MGs were biocompatible and could be used for long-term pH detection. It could be used to map interfacial pH on biomaterials during their degradation through pseudocolored images formed by the fluorescence intensity ratio between the green fluorescence of BNPs and the red fluorescence of Nile red. This study provided a useful tool for studying the influence of biomaterial microenvironment on biological functions of surrounding cells.
机译:骨再生在再生医学领域引起了广泛的关注。生物材料对细胞外环境的影响对于调节细胞的生物学功能对于组织再生来说是重要的。在各种影响因素中,我们先前表明,生物材料降解期间局部微环境中的细胞外pH值影响了骨形成和吸收的平衡。然而,缺乏方便地检测细胞外环境的pH的技术。鉴于荧光pH传感探针的发育,在此,我们制造了一种新的比例荧光微凝胶(F-Mg),用于实时和对微环境pH的时空监测。通过用pH敏感的牛血清白蛋白纳米粒子(BNP)和pH - 不敏感的尼罗红作为参考,从聚氨酯用大小约为75μm的聚氨酯制备。 pH探针表现出可逆荧光反应对pH变化,并在6-10的线性范围内工作。 F-Mgs是生物相容性的,可用于长期pH检测。它可用于通过通过BNP的绿色荧光与尼罗红色的红色荧光之间的荧光强度比的荧光强度比的荧光强度比的衰落图像来映射生物材料的界面pH。本研究提供了一种有用的工具,用于研究生物材料微环境对周围细胞生物学功能的影响。

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