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Physiologically Based Pharmacokinetics of Molecular Imaging Nanoparticles for mRNA Detection Determined in Tumor-Bearing Mice

机译:用于检测荷瘤小鼠中mRNA检测的分子成像纳米颗粒的基于生理的药代动力学。

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摘要

Disease detection and management might benefit from external imaging of disease gene mRNAs. Previously we designed molecular imaging nanoparticles (MINs) based on peptide nucleic acids complementary to cancer gene mRNAs. The MINs included contrast agents and analogs of insulin-like growth factor 1 (IGF-1). Analysis of MIN tumor uptake data showed stronger binding in tumors than in surrounding tissues. We hypothesized that MINs with an IGF-1 analog stay in circulation by binding to IGF-binding proteins. To test that hypothesis, we fit the tissue distribution results of several MINs in xenograft-bearing mice to a physiological pharmacokinetics model. Fitting experimental tissue distribution data to model-predicted mass transfer of MINs from blood into organs and tumors converged only when the parameter for MINs bound to circulating IGF-binding proteins was set to 10%–20% of the injected MIN dose. This result suggests that previous mouse imaging trials used more MINs than necessary. This prediction can be tested by a ramp of decreasing doses.
机译:疾病检测和管理可能会受益于疾病基因mRNA的外部成像。以前,我们基于与癌症基因mRNA互补的肽核酸设计分子成像纳米颗粒(MINs)。 MIN包括造影剂和胰岛素样生长因子1(IGF-1)的类似物。 MIN肿瘤摄取数据的分析显示,与周围组织相比,肿瘤中的结合更强。我们假设具有IGF-1类似物的MIN通过与IGF结合蛋白结合而保持循环。为了检验该假设,我们将带有异种移植的小鼠中几个MIN的组织分布结果拟合到生理药代动力学模型。仅当将与循环IGF结合蛋白结合的MINs的参数设置为注射的MIN剂量的10%至20%时,才能使实验组织分布数据适合模型预测的MINs从血液到器官和肿瘤的质量转移。该结果表明,先前的小鼠成像试验使用了比必要更多的MIN。可以通过减少剂量的斜率来检验该预测。

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