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2D luminescence imaging of pH in vivo

机译:体内pH值的2D发光成像

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摘要

Luminescence imaging of biological parameters is an emerging field in biomedical sciences. Tools to study 2D pH distribution are needed to gain new insights into complex disease processes, such as wound healing and tumor metabolism. In recent years, luminescence-based methods for pH measurement have been developed. However, for in vivo applications, especially for studies on humans, biocompatibility and reliability under varying conditions have to be ensured. Here, we present a referenced luminescent sensor for 2D high-resolution imaging of pH i'n vivo. The ratiometric sensing scheme is based on time-domain luminescence imaging of FITC and ruthenium(ll)tris-(4,7-diphenyl-1,10-phenanthroline). To create! a biocompatible 2D sensor, these dyes were bound to or incorporated into microparticles (aminocellulose and polyacrylonitrile), and particles were immobilized in poly-urethane hydrogel on transparent foils. We show sensor precision and validity by conducting in vitro and in vivo experiments, and we show the versatility in imaging pH during physiological and chronic cutaneous wound healing in humans. Implementation of this technique may open vistas in wound healing, tumor biology, and other biomedical fields.
机译:生物参数的发光成像是生物医学领域的新兴领域。需要用于研究2D pH分布的工具,以获得对复杂疾病过程(例如伤口愈合和肿瘤代谢)的新见解。近年来,已经开发了基于发光的pH测量方法。然而,对于体内应用,特别是对人体的研究,必须确保在各种条件下的生物相容性和可靠性。在这里,我们介绍了一种用于体内pH值的2D高分辨率成像的参考发光传感器。比例传感方案基于FITC和钌(II)tris-(4,7-diphenyl-1,10-phenothroline)的时域发光成像。去创造!作为一种生物相容的2D传感器,这些染料会结合或掺入微粒(氨基纤维素和聚丙烯腈)中,并将微粒固定在透明箔片上的聚氨酯水凝胶中。我们通过进行体外和体内实验来显示传感器的精度和有效性,并且在人类的生理和慢性皮肤伤口愈合过程中显示成像pH的多功能性。这项技术的实施可能会在伤口愈合,肿瘤生物学和其他生物医学领域打开远景。

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