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利用星爆聚酰胺-胺树枝状大分子将基因高效导入小鼠心脏移植物。

Efficient transfer of genes into murine cardiac grafts by Starburst polyamidoamine dendrimers.

作者信息

Qin L, Pahud D R, Ding Y, Bielinska A U, Kukowska-Latallo J F, Baker J R, Bromberg J S

机构信息

Department of Surgery and Microbiology and Immunology, University of Michigan, Ann Arbor 48109-0331, USA.

出版信息

Hum Gene Ther. 1998 Mar 1;9(4):553-60. doi: 10.1089/hum.1998.9.4-553.

DOI:10.1089/hum.1998.9.4-553
PMID:9525316
Abstract

Starburst dendrimer, a structurally defined, spherical macromolecule composed of repeating polyamidoamino subunits, was investigated to augment plasmid-mediated gene transfer efficiency in a murine cardiac transplantation model. The grafts were directly injected with naked pCH110, a plasmid encoding beta-galactosidase (beta-Gal), or pCH110-dendrimer complex, and reporter gene expression determined by X-Gal staining. The grafts injected with pCH110-dendrimer demonstrated widespread and extended beta-Gal expression in both myocytes and the graft infiltrating cells from 7 to 28 days, compared to the grafts injected with naked pCH110 that expressed beta-Gal only in myocytes for less than 14 days. p alphaMHC-vIL-10, as plasmid encoding viral interleukin-10 (vIL-10) under the control of alpha-myosin heavy chain promoter, was able to prolong allograft survival from 13.9 +/- 0.9 days to 21.4 +/- 2.3 days (p < 0.005). When dendrimer G5EDA was used with p alphaMHC-vIL-10, 60-fold less DNA resulted in significant prolongation of graft survival to 38.6 +/- 4.7 days (p < 0.0005). The dose of DNA, the charge ratio of DNA to dendrimer, and the size generation of the dendrimers were all determined to be critical variables for prolongation of allograft survival in this model system. Thus, the use of the Starburst dendrimer dramatically increased the efficiency of plasmid-mediated gene transfer and expression. Production of immunosuppressive cytokines at higher amounts for longer periods of time in a greater expanse of tissue enhanced the immunosuppressive effect and prolonged graft survival further.

摘要

星爆树枝状大分子是一种结构明确的球形大分子,由重复的聚酰胺基胺亚基组成。在小鼠心脏移植模型中,对其进行了研究,以提高质粒介导的基因转移效率。将裸pCH110(一种编码β-半乳糖苷酶(β-Gal)的质粒)或pCH110-树枝状大分子复合物直接注射到移植物中,并通过X-Gal染色确定报告基因的表达。与仅在心肌细胞中表达β-Gal不到14天的注射裸pCH110的移植物相比,注射pCH110-树枝状大分子的移植物在7至28天内,在心肌细胞和移植物浸润细胞中均表现出广泛且持续的β-Gal表达。pαMHC-vIL-10是一种在α-肌球蛋白重链启动子控制下编码病毒白细胞介素-10(vIL-10)的质粒,它能够将同种异体移植物的存活时间从13.9±0.9天延长至21.4±2.3天(p<0.005)。当树枝状大分子G5EDA与pαMHC-vIL-10一起使用时,DNA用量减少60倍仍能显著延长移植物存活时间至38.6±4.7天(p<0.0005)。在该模型系统中,DNA剂量、DNA与树枝状大分子的电荷比以及树枝状大分子的代数均被确定为延长同种异体移植物存活时间的关键变量。因此,星爆树枝状大分子的使用显著提高了质粒介导的基因转移和表达效率。在更大范围的组织中更长时间地产生更高量的免疫抑制细胞因子,增强了免疫抑制作用,并进一步延长了移植物存活时间。

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