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Endomicroscopy and Biocompatible Fluorescent Nanocomplexes for Clinical Translation of High-resolution Optical Molecular Imaging

机译:用于高分辨率光学分子成像的临床翻译的硬质药物检查和生物相容性荧光纳米复合物

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This paper reports on our recent development of two-types of all-fiber-optic scanning endomicroscopy technologies for high-resolution optical imaging of internal organs. The first one is an OCT balloon catheter technology that permits systematic imaging of fine architectural morphologies of internal luminal organs over a large area. The second is a two-photon fluorescence endomicroscopy technology that enables assessment of tissue biochemical/metabolic information with a superb spatial resolution. Both endomicroscopes have a small diameter (1.2-2.4 mm) and can be readily integrated with a standard clinical gastroscope, providing complementary information about tissue structure and function and helping improve diagnostic yield. We will discuss the basic design principles, major engineering challenges, solutions, and some preliminary results. In addition, we will also present our approach in developing near infrared (NIR) fluorescent nanocomplexes (ICG-micelles), which can be functionalized for active molecular targeting to improve molecular specificity and imaging contrast. These nanocomplexes, made of FDA approved building blocks, are biocompatible and very promising for clinical translation. Ultimately the NIR nanocomplexes can be used in conjunction with endomicroscopy technologies for performing high-resolution optical molecular imaging in vivo and in real time.
机译:本文报告了我们最近的两种全纤维扫描元素技术的开发,用于内脏的高分辨率光学成像。第一个是OCT气球导管技术,允许在大面积上系统的内腔器官的细型腔内形态的成像。第二种是双光子荧光子宫内镜技术,使得能够评估具有卓越的空间分辨率的组织生物化学/代谢信息。两种内胚层的直径小(1.2-2.4mm),可以随着标准临床胃镜容易地集成,提供有关组织结构和功能的互补信息,并有助于提高诊断产量。我们将讨论基本的设计原则,重大工程挑战,解决方案和一些初步结果。此外,我们还将在开发近红外(NIR)荧光纳米复合物(ICG-胶束)方面提出我们的方法,其可用于活性分子靶向以改善分子特异性和成像对比度。由FDA批准的构建块制成的这些纳米复合物是生物相容性的,并且非常有前途的临床翻译。最终,NIR纳米键复合可以与用于在体内和实时进行高分辨率光学分子成像的子宫内镜检查技术结合使用。

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