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Native and Complexed IGF-1: Biodistribution and Pharmacokinetics in Infantile Neuronal Ceroid Lipofuscinosis

机译:天然和复杂的IGF-1:婴幼儿神经元性脂质脂肪增多症的生物分布和药代动力学。

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Infantile neuronal ceroid lipofuscinosis (INCL) is a severe neurodegenerative disorder of childhood characterized by selective death of cortical neurons. Insulin-like growth factor 1 (IGF-1) is important in embryonic development and is considered as a potential therapeutic agent for several disorders of peripheral and central nervous systems. In circulation IGF-1 is mainly bound to its carrier protein IGFBP-3. As a therapeutic agent IGF-1 has shown to be more active as free than complexed form. However, this may cause side effects during the prolonged treatment. In addition to IGFBP-3 the bioavailability of IGF-1 can be modulated by using mesoporous silicon nanoparticles (NPs) which are optimal carriers for sustained release of unstable peptide hormones like IGF-1. In this study we compared biodistribution, pharmacokinetics, and bioavailability of radiolabeled free IGF-1, IGF-1/IGFBP-3, and IGF-1/NP complexes in aCln1-/- knockout mouse model. IGF-1/NP was mainly accumulated in liver and spleen in all studied time points, whereas minor and more constant amounts were measured in other organs compared to free IGF-1 or IGF-1/IGFBP-3. Also concentration of IGF-1/NP in blood was relatively high and stable during studied time points suggesting continuous release of IGF-1 from the particles.
机译:婴儿神经元类脂褐藻病(INCL)是一种严重的儿童期神经退行性疾病,其特征在于皮质神经元选择性死亡。胰岛素样生长因子1(IGF-1)在胚胎发育中很重要,被认为是治疗周围和中枢神经系统疾病的一种潜在治疗剂。在循环中,IGF-1主要与其载体蛋白IGFBP-3结合。作为治疗剂,IGF-1已显示出比复合形式更自由的活性。但是,这可能会在长期治疗期间引起副作用。除了IGFBP-3,IGF-1的生物利用度可以通过使用介孔硅纳米颗粒(NPs)来调节,介孔硅纳米颗粒是持续释放不稳定肽激素(如IGF-1)的最佳载体。在这项研究中,我们比较了aCln1-/-基因敲除小鼠模型中放射性标记的游离IGF-1,IGF-1 / IGFBP-3和IGF-1 / NP复合物的生物分布,药代动力学和生物利用度。在所有研究的时间点,IGF-1 / NP主要积累在肝脏和脾脏中,而与游离IGF-1或IGF-1 / IGFBP-3相比,在其他器官中测得的微量和更恒定量。在研究的时间点内,血液中IGF-1 / NP的浓度也相对较高且稳定,这表明IGF-1从颗粒中持续释放。

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