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白蛋白结合肽-干扰素-γ融合蛋白的基因递送,具有改善的药代动力学性质和持续的生物学活性。

Gene delivery of albumin binding peptide-interferon-gamma fusion protein with improved pharmacokinetic properties and sustained biological activity.

机构信息

Department of Biopharmaceutics and Drug Metabolism, Graduate School of Pharmaceutical Science, Kyoto University, Kyoto 606-8501, Japan.

出版信息

J Pharm Sci. 2013 Sep;102(9):3110-8. doi: 10.1002/jps.23493. Epub 2013 Mar 5.

Abstract

We have demonstrated that gene delivery of a fusion protein of mouse interferon (IFN) γ with mouse serum albumin (IFNγ-MSA) was effective in prolonging the circulation half-life of IFNγ in mice. However, the fusion to MSA greatly reduced the biological activity of IFNγ to less than 1%. In this study, we designed IFNγ fusion proteins with a 20 amino-acid long albumin-binding peptide (ABP) to prolong the in vivo half-life of IFNγ without reducing its biological activity. IFNγ-ABP and ABP-IFNγ, two fusion proteins with the ABP being fused to the C- or N-terminal of IFNγ, retained 40%-50% biological activities determined using a gamma-activated sequence-dependent luciferase assay. These fusion proteins exhibited the ability to bind to MSA. Gene delivery of IFNγ-ABP or ABP-IFNγ to mice using the hydrodynamic injection method resulted in a sustained concentration of IFNγ in the serum compared with gene delivery of IFNγ. In addition, the growth of mouse colon carcinoma CT-26 cells in the lung was efficiently inhibited by gene delivery of the IFNγ fusion proteins. These results indicate that the fusion of ABP is a useful approach to achieving prolonged retention in the blood circulation through binding to serum albumin and retaining biological activity.

摘要

我们已经证明,将小鼠干扰素 (IFN) γ与小鼠血清白蛋白 (IFNγ-MSA) 的融合蛋白基因递送至小鼠中可有效延长 IFNγ的循环半衰期。然而,与 MSA 的融合大大降低了 IFNγ的生物活性,使其低于 1%。在这项研究中,我们设计了具有 20 个氨基酸长的白蛋白结合肽 (ABP) 的 IFNγ融合蛋白,以延长 IFNγ的体内半衰期而不降低其生物活性。IFNγ-ABP 和 ABP-IFNγ,这两种融合蛋白的 ABP 分别融合到 IFNγ的 C 端或 N 端,保留了使用γ-激活序列依赖性荧光素酶测定法测定的 40%-50%的生物活性。这些融合蛋白具有与 MSA 结合的能力。通过水动力注射方法将 IFNγ-ABP 或 ABP-IFNγ基因递送至小鼠中,与 IFNγ 的基因递送相比,可在血清中持续保持 IFNγ的浓度。此外,IFNγ融合蛋白的基因递送可有效抑制小鼠结肠癌细胞 CT-26 在肺部的生长。这些结果表明,融合 ABP 是一种通过与血清白蛋白结合并保持生物活性来实现延长在血液中保留时间的有效方法。

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