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Fluorescence Imaging as a Tool in Preclinical Evaluation of Polymer-Based Nano-DDS Systems Intended for Cancer Treatment

机译:荧光成像作为临床前评估用于癌症治疗的基于聚合物的纳米DDS系统的工具

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摘要

Targeted drug delivery using nano-sized carrier systems with targeting functions to malignant and inflammatory tissue and tailored controlled drug release inside targeted tissues or cells has been and is still intensively studied. A detailed understanding of the correlation between the pharmacokinetic properties and structure of the nano-sized carrier is crucial for the successful transition of targeted drug delivery nanomedicines into clinical practice. In preclinical research in particular, fluorescence imaging has become one of the most commonly used powerful imaging tools. Increasing numbers of suitable fluorescent dyes that are excitable in the visible to near-infrared (NIR) wavelengths of the spectrum and the non-invasive nature of the method have significantly expanded the applicability of fluorescence imaging. This chapter summarizes non-invasive fluorescence-based imaging methods and discusses their potential advantages and limitations in the field of drug delivery, especially in anticancer therapy. This chapter focuses on fluorescent imaging from the cellular level up to the highly sophisticated three-dimensional imaging modality at a systemic level. Moreover, we describe the possibility for simultaneous treatment and imaging using fluorescence theranostics and the combination of different imaging techniques, e.g., fluorescence imaging with computed tomography.
机译:使用并且具有针对恶性和炎性组织的靶向功能的纳米尺寸载体系统以及在靶组织或细胞内的定制控制药物释放的靶向药物递送已经并且仍在深入研究中。对纳米级载体的药代动力学特性和结构之间的相关关系的详细理解对于成功地将靶向药物递送纳米药物过渡到临床实践至关重要。特别是在临床前研究中,荧光成像已成为最常用的强大成像工具之一。在光谱的可见光到近红外(NIR)波长中可激发的合适荧光染料的数量不断增加,并且该方法的非侵入性极大地扩展了荧光成像的适用性。本章总结了基于非侵入性荧光的成像方法,并讨论了它们在药物输送领域(尤其是在抗癌治疗领域)的潜在优势和局限性。本章侧重于从细胞水平到系统水平的高度复杂的三维成像模式的荧光成像。此外,我们描述了使用荧光治疗术同时处理和成像以及将不同成像技术(例如荧光成像与计算机断层摄影)相结合的可能性。

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