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用于蛋白质递送的自组装纳米复合材料:PEG-胆烷和 rh-G-CSF 之间的超分子相互作用。

Self-assembling nanocomposites for protein delivery: supramolecular interactions between PEG-cholane and rh-G-CSF.

机构信息

Department of Pharmaceutical and Pharmacological Sciences, University of Padua, Via F. Marzolo, 5, 35131 Padova, Italy.

出版信息

J Control Release. 2012 Aug 20;162(1):176-84. doi: 10.1016/j.jconrel.2012.06.018. Epub 2012 Jun 19.

Abstract

PEG(5 kDa)-cholane, PEG(10 kDa)-cholane and PEG(20 kDa)-cholane self-assembling polymers have been synthesised by the end-functionalisation of 5, 10 and 20 kDa linear amino-terminating monomethoxy-poly(ethylene glycol) (PEG-NH(2)) with 5β-cholanic acid. Spectroscopic studies and isothermal titration calorimetry showed that the CMC of the PEG-cholane derivatives increased from 23.5 ± 1.8 to 60.2 ± 2.4 μM as the PEG molecular weight increased. Similarly, light scattering analysis showed that the micelle size increased from 15.8 ± 4.9 to 23.2 ± 11.1 nm with the PEG molecular weight. Gel permeation studies showed that the polymer bioconjugates associate with recombinant human granulocyte colony stimulating factor (rh-G-CSF) to form supramolecular nanocomposites according to multi-modal association profiles. The protein loadings obtained with PEG(5 kDa)-cholane, PEG(10 kDa)-cholane and PEG(20 kDa)-cholane were 7.4 ± 1.1, 2.7 ± 0.3 and 2.1 ± 0.4% (protein/polymer, w/w %), respectively. Scatchard and Klotz analyses showed that the protein/polymer affinity constant increased and that the number of PEG-cholane molecules associated to rh-G-CSF decreased as the PEG molecular weight increased. Isothermal titration calorimetry confirmed the protein/polymer multi-modal association. Circular dichroism analyses showed that the polymer association alters the secondary structure of the protein. Nevertheless, in vitro studies performed with NFS-60 cells showed that the polymer interaction does not impair the biological activity of the cytokine. In vivo studies performed by intravenous and subcutaneous administrations of rh-G-CSF to rats showed that the association with PEG(5 kDa)-cholane prolongs the body exposure of the protein. After subcutaneous administration, the protein t(max) values obtained with rh-G-CSF and 1:14 and 1:21 rh-G-CSF/PEG(5 kDa)-cholane (w/w ratio) nanocomplexes were 2, 8 and 24h, respectively. The 1:21 (w/w) rh-G-CSF/PEG(5kDa)-cholane formulation resulted in 149% relative bioavailability, and the pharmacokinetic behaviour was similar to that obtained with an equivalent protein dose of rh-G-CSF chemically conjugated with one linear 20-kDa PEG. A single administration of a 1.5mg/kg dose of a 1:21 (w/w) rh-G-CSF/PEG(5 kDa)-cholane formulation induced a high production of white blood cells for 96 h.

摘要

聚乙二醇(5 kDa)-胆酸、聚乙二醇(10 kDa)-胆酸和聚乙二醇(20 kDa)-胆酸自组装聚合物是通过 5β-胆酸与 5、10 和 20 kDa 线性氨基末端单甲氧基聚乙二醇(PEG-NH2)的末端官能化合成的。光谱研究和等温热滴定法表明,随着 PEG 分子量的增加,PEG-胆酸衍生物的 CMC 从 23.5 ± 1.8 增加到 60.2 ± 2.4 μM。同样,光散射分析表明,随着 PEG 分子量的增加,胶束尺寸从 15.8 ± 4.9 增加到 23.2 ± 11.1nm。凝胶渗透研究表明,聚合物生物缀合物与重组人粒细胞集落刺激因子(rh-G-CSF)结合,根据多模态结合谱形成超分子纳米复合材料。用 PEG(5 kDa)-胆酸、PEG(10 kDa)-胆酸和 PEG(20 kDa)-胆酸获得的蛋白质载量分别为 7.4 ± 1.1%、2.7 ± 0.3%和 2.1 ± 0.4%(蛋白质/聚合物,w/w%)。Scatchard 和 Klotz 分析表明,随着 PEG 分子量的增加,蛋白质/聚合物的亲和常数增加,与 rh-G-CSF 结合的 PEG-胆酸分子数量减少。等温热滴定法证实了蛋白质/聚合物的多模态结合。圆二色性分析表明,聚合物的缔合改变了蛋白质的二级结构。然而,用 NFS-60 细胞进行的体外研究表明,聚合物相互作用不会损害细胞因子的生物学活性。通过静脉和皮下给予大鼠 rh-G-CSF 进行的体内研究表明,与 PEG(5 kDa)-胆酸的结合延长了蛋白质的体内暴露。皮下给药后,rh-G-CSF 及其 1:14 和 1:21 rh-G-CSF/PEG(5 kDa)-胆酸(w/w 比)纳米复合物的 t(max)值分别为 2、8 和 24h。rh-G-CSF/PEG(5 kDa)-胆酸制剂的 1:21(w/w)制剂导致相对生物利用度为 149%,药代动力学行为与用线性 20 kDa PEG 化学偶联的等量蛋白质剂量的 rh-G-CSF 获得的相似。单次给予 1.5mg/kg 剂量的 1:21(w/w)rh-G-CSF/PEG(5 kDa)-胆酸制剂可诱导白细胞产生长达 96h 的高产量。

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