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A review of imaging methods for measuring drug release at nanometre scale: A case for drug delivery systems

机译:用于测量纳米级药物释放的成像方法的综述:药物输送系统的案例

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摘要

Current drug delivery research is focused on improving the efficacy of drug delivery systems, with emphasis on precise targeting, accurate dose delivery, strategies for overcoming the tissue barrier and monitoring the effects of drugs on their targets. To realize these goals, it is essential to determine the spatio-temporal bio-distribution of particles in the whole animal. Enabling such a measurement at the nanometer scale helps in the design of efficient systems. Areas covered: This article discusses the need for molecular imaging in drug delivery development and also reviews promising imaging methods. Moreover, the physics behind each method is explained and evaluated to derive advantages and limitations. The review enables the readers to select, use and modify the existing methods to implement imaging protocols for studying drug release from particular drug delivery. Expert opinion: Currently, the difference in pharmacodynamics obtained via various imaging modalities cannot be verified and hinders clinical use. To establish imaging as a scientific tool, its translation into clinical use is vital. Presently, there is no single imaging method suitable for drug-release studies. However, hybrid imaging has the potential to provide the desired imaging system.
机译:当前的药物输送研究集中于提高药物输送系统的功效,重点在于精确的靶向,准确的剂量输送,克服组织屏障和监测药物对其靶标作用的策略。为了实现这些目标,确定整个动物中颗粒的时空生物分布至关重要。启用纳米级的测量有助于设计有效的系统。涵盖的领域:本文讨论了在药物递送开发中对分子成像的需求,并回顾了有前途的成像方法。此外,解释并评估了每种方法背后的物理原理,以得出优点和局限性。该评论使读者能够选择,使用和修改现有方法来实施成像方案,以研究从特定药物输送中释放出的药物。专家意见:目前,无法验证通过各种成像方式获得的药效学差异,并阻碍了临床使用。为了将成像技术确立为科学工具,将其转化为临床用途至关重要。当前,没有适合于药物释放研究的单一成像方法。但是,混合成像具有提供所需成像系统的潜力。

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