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Rare Earth Nanoprobes for Functional Biomolecular Imaging and Theranostics

机译:稀土纳米探针用于功能性生物分子成像和治疗学

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摘要

Contrast agents designed to visualize the molecular mechanisms underlying cancer pathogenesis and progression have deepened our understanding of disease complexity and accelerated the development of enhanced drug strategies targeted to specific biochemical pathways. For the next generation probes and imaging systems to be viable, they must exhibit enhanced sensitivity and robust quantitation of morphologic and contrast features, while offering the ability to resolve the disease-specific molecular signatures that may be critical to reconstitute a more comprehensive portrait of pathobiology. This feature article provides an overview on the design and advancements of emerging biomedical optical probes in general and evaluates the promise of rare earth nanoprobes, in particular, for molecular imaging and theranostics. Combined with new breakthroughs in nanoscale probe configurations, and improved dopant compositions, and multimodal infrared optical imaging, rare-earth nanoprobes can be used to address a wide variety of biomedical challenges, including deep tissue imaging, real-time drug delivery tracking and multispectral molecular profiling.
机译:旨在可视化癌症发病机理和进展的分子机制的对比剂,加深了我们对疾病复杂性的了解,并加速了针对特定生化途径的增强药物策略的发展。为了使下一代探针和成像系统可行,它们必须表现出增强的敏感性以及对形态学和对比特征的可靠定量,同时具有解决特定疾病分子特征的能力,这对于重建更全面的病理生物学肖像可能至关重要。这篇专题文章概述了新兴的生物医学光学探针的设计和发展概况,并评估了稀土纳米探针的前景,特别是在分子成像和诊断学领域。结合纳米级探针配置的新突破,改进的掺杂剂组成和多峰红外光学成像,稀土纳米探针可用于应对各种生物医学挑战,包括深层组织成像,实时药物递送跟踪和多光谱分子分析。

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