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精氨酸接枝的生物可还原聚合物对腺病毒表面修饰对癌症基因治疗中转导效率和免疫原性的影响。

The effect of surface modification of adenovirus with an arginine-grafted bioreducible polymer on transduction efficiency and immunogenicity in cancer gene therapy.

机构信息

Graduate Program for Nanomedical Science and Technology, Yonsei University, Seoul, Republic of Korea.

出版信息

Biomaterials. 2010 Mar;31(7):1865-74. doi: 10.1016/j.biomaterials.2009.11.043. Epub 2009 Dec 3.

DOI:10.1016/j.biomaterials.2009.11.043
PMID:19962189
Abstract

Adenoviral vectors offer many advantages for cancer gene therapy, including high transduction efficiency, but safety concerns related to severe immunogenicity and other side effects have led to careful reconsideration of their use in human clinical trials. To overcome these issues, a strategy of generating hybrid vectors that combine viral and non-viral elements as more intelligent gene carriers has been employed. Here, we coated adenovirus (Ad) with an arginine-grafted bioreducible polymer (ABP) via electrostatic interaction. We examined the effect of ABP-coated Ad complex at various ABP molecules/Ad particle ratios. Enhanced transduction efficiency was observed in cells treated with cationic ABP polymer-coated Ad complex compared to naked Ad. We also examined the coating of Ad with ABP polymers at the optimal polymer ratio using dynamic light scattering and transmission electron microscopy. In both high and low coxsackie virus and adenovirus receptor (CAR)-expressing cells, ABP-coated Ad complex produced higher levels of transgene expression than cationic polymer 25K PEI. Notably, high cytotoxicity was observed with 25K PEI-coated Ad complex treatment, but not with ABP-coated Ad complex treatment. In addition, ABP-coated Ad complex was not significantly inhibited by serum, in contrast to naked Ad. Moreover, ABP-coated Ad complex significantly reduced the innate immune response relative to naked Ad, as assessed by interleukin-6 (IL-6) cytokine release from macrophage cells. Overall, our studies demonstrate that Ad complex formed with ABP cationic polymer may improve the efficiency of Ad and be a promising tool for cancer gene therapy.

摘要

腺病毒载体在癌症基因治疗中具有许多优势,包括高效的转导效率,但由于其严重的免疫原性和其他副作用,人们对其在人类临床试验中的应用进行了重新考虑。为了克服这些问题,人们采用了一种策略,即生成结合了病毒和非病毒元件的杂交载体,作为更智能的基因载体。在这里,我们通过静电相互作用将腺病毒(Ad)与精氨酸接枝的生物还原聚合物(ABP)进行包裹。我们研究了在不同 ABP 分子/Ad 颗粒比下,ABP 包裹的 Ad 复合物的效果。与裸 Ad 相比,用阳离子 ABP 聚合物包裹的 Ad 复合物处理的细胞中转导效率得到了增强。我们还通过动态光散射和透射电子显微镜检查了 ABP 聚合物在最佳聚合物比下对 Ad 的包裹。在高和低柯萨奇病毒和腺病毒受体(CAR)表达细胞中,用 ABP 包裹的 Ad 复合物产生的转基因表达水平均高于阳离子聚合物 25K PEI。值得注意的是,用 25K PEI 包裹的 Ad 复合物处理会产生高细胞毒性,但用 ABP 包裹的 Ad 复合物处理不会。此外,与裸 Ad 相比,ABP 包裹的 Ad 复合物不受血清的显著抑制。此外,与裸 Ad 相比,ABP 包裹的 Ad 复合物可显著降低固有免疫反应,这可通过巨噬细胞细胞中白细胞介素 6(IL-6)细胞因子的释放来评估。总体而言,我们的研究表明,与裸 Ad 相比,与 ABP 阳离子聚合物形成的 Ad 复合物可提高 Ad 的效率,并成为癌症基因治疗的有前途的工具。

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