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一种改进基于定量放射性示踪的药物载体体内生物分布分析的方法。

A method to improve quantitative radiotracing-based analysis of the in vivo biodistribution of drug carriers.

作者信息

Roki Nikša, Solomon Melani, Casta Lou, Bowers Jessica, Getts Robert C, Muro Silvia

机构信息

Fischell Department of Bioengineering University of Maryland College Park Maryland USA.

Institute for Bioscience and Biotechnology Research, University of Maryland College Park Maryland USA.

出版信息

Bioeng Transl Med. 2021 Feb 13;6(2):e10208. doi: 10.1002/btm2.10208. eCollection 2021 May.

Abstract

Biodistribution studies are essential in drug carrier design and translation, and radiotracing provides a sensitive quantitation for this purpose. Yet, for biodegradable formulations, small amounts of free-label signal may arise prior to or immediately after injection in animal models, causing potentially confounding biodistribution results. In this study, we refined a method to overcome this obstacle. First, we verified free signal generation in animal samples and then, mimicking it in a controllable setting, we injected mice intravenously with a radiolabeled drug carrier formulation (I-antibody/3DNA) containing a known amount of free radiolabel (I), or free I alone as a control. Corrected biodistribution data were obtained by separating the free radiolabel from blood and organs postmortem, using trichloroacetic acid precipitation, and subtracting the confounding signal from each tissue measurement. Control free I-radiolabel was detected at ≥85% accuracy in blood and tissues, validating the method. It biodistributed very heterogeneously among organs (0.6-39 %ID/g), indicating that any free I generated in the body or present in an injected formulation cannot be simply corrected to the free-label fraction in the original preparation, but the free label must be empirically measured in each organ. Application of this method to the biodistribution of I-antibody/3DNA, including formulations directed to endothelial target ICAM-1, showed accurate classification of free I species in blood and tissues. In addition, this technique rendered data on the in vivo degradation of the traced agents over time. Thus, this is a valuable technique to obtain accurate measurements of biodistribution using I and possibly other radiotracers.

摘要

生物分布研究在药物载体设计和转化中至关重要,放射性示踪为此提供了灵敏的定量方法。然而,对于可生物降解制剂,在动物模型注射前或注射后即刻可能会出现少量游离标记信号,从而导致潜在的生物分布结果混淆。在本研究中,我们改进了一种方法来克服这一障碍。首先,我们在动物样本中验证了游离信号的产生,然后在可控条件下进行模拟,给小鼠静脉注射含有已知量游离放射性标记物(I)的放射性标记药物载体制剂(I-抗体/3DNA),或单独注射游离I作为对照。通过在死后使用三氯乙酸沉淀从血液和器官中分离出游离放射性标记物,并从每个组织测量值中减去混淆信号,获得校正后的生物分布数据。在血液和组织中检测到对照游离I-放射性标记物的准确率≥85%,验证了该方法。其在各器官中的生物分布非常不均匀(0.6-39%ID/g),表明体内产生的或注射制剂中存在的任何游离I不能简单地校正为原始制剂中的游离标记物分数,而必须在每个器官中凭经验测量游离标记物。将该方法应用于I-抗体/3DNA的生物分布研究,包括针对内皮靶标ICAM-1的制剂,显示出血液和组织中游离I种类的准确分类。此外,该技术还提供了示踪剂随时间在体内降解的数据。因此,这是一种利用I以及可能的其他放射性示踪剂获得生物分布准确测量值的有价值技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0512/8126812/e858861fcdbe/BTM2-6-e10208-g007.jpg

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