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患者来源白血病的即时转染:一种用于生产细胞疫苗的新来源。

Immediate transfection of patient-derived leukemia: a novel source for generating cell-based vaccines.

作者信息

Gershan Jill A, Johnson Bryon D, Weber James, Schauer Dennis W, Natalia Natalia, Behnke Stephanie, Burns Karen, Maloney Kelly W, Warwick Anne B, Orentas Rimas J

机构信息

Department of Pediatrics, Medical College of Wisconsin, The Children's Research Institute, Children's Hospital of Wisconsin, Milwaukee, WI 53226, USA.

出版信息

Genet Vaccines Ther. 2005 Jun 21;3(1):4. doi: 10.1186/1479-0556-3-4.

Abstract

BACKGROUND

The production of cell-based cancer vaccines by gene vectors encoding proteins that stimulate the immune system has advanced rapidly in model systems. We sought to develop non-viral transfection methods that could transform patient tumor cells into cancer vaccines, paving the way for rapid production of autologous cell-based vaccines.

METHODS

As the extended culture and expansion of most patient tumor cells is not possible, we sought to first evaluate a new technology that combines electroporation and chemical transfection in order to determine if plasmid-based gene vectors could be instantaneously delivered to the nucleus, and to determine if gene expression was possible in a cell-cycle independent manner. We tested cultured cell lines, a primary murine tumor, and primary human leukemia cells from diagnostic work-up for transgene expression, using both RFP and CD137L expression vectors.

RESULTS

Combined electroporation-transfection directly delivered plasmid DNA to the nucleus of transfected cells, as demonstrated by confocal microscopy and real-time PCR analysis of isolated nuclei. Expression of protein from plasmid vectors could be detected as early as two hours post transfection. However, the kinetics of gene expression from plasmid-based vectors in tumor cell lines indicated that optimal gene expression was still dependent on cell division. We then tested to see if pediatric acute lymphocytic leukemia (ALL) would also display the rapid gene expression kinetics of tumor cells lines, determining gene expression 24 hours after transfection. Six of 12 specimens showed greater than 17% transgene expression, and all samples showed at least some transgene expression.

CONCLUSION

Given that transgene expression could be detected in a majority of primary tumor samples analyzed within hours, direct electroporation-based transfection of primary leukemia holds the potential to generate patient-specific cancer vaccines. Plasmid-based gene therapy represents a simple means to generate cell-based cancer vaccines and does not require the extensive infrastructure of a virus-based vector system.

摘要

背景

通过编码刺激免疫系统的蛋白质的基因载体生产基于细胞的癌症疫苗在模型系统中发展迅速。我们试图开发非病毒转染方法,将患者肿瘤细胞转化为癌症疫苗,为快速生产自体细胞疫苗铺平道路。

方法

由于大多数患者肿瘤细胞无法进行长时间培养和扩增,我们首先评估一种将电穿孔和化学转染相结合的新技术,以确定基于质粒的基因载体是否能瞬间递送至细胞核,并确定基因表达是否能以细胞周期非依赖性方式实现。我们使用红色荧光蛋白(RFP)和CD137L表达载体,测试培养的细胞系、原发性小鼠肿瘤以及诊断检查中获取的原发性人类白血病细胞的转基因表达情况。

结果

共聚焦显微镜和分离细胞核的实时PCR分析表明,联合电穿孔-转染可将质粒DNA直接递送至转染细胞的细胞核。转染后两小时即可检测到质粒载体蛋白的表达。然而,基于质粒的载体在肿瘤细胞系中的基因表达动力学表明,最佳基因表达仍依赖于细胞分裂。然后我们测试小儿急性淋巴细胞白血病(ALL)是否也会呈现肿瘤细胞系快速的基因表达动力学,在转染后24小时测定基因表达情况。12个样本中有6个显示转基因表达超过17%,所有样本均显示至少有一些转基因表达。

结论

鉴于在数小时内分析的大多数原发性肿瘤样本中均可检测到转基因表达,原发性白血病基于直接电穿孔的转染有潜力生成患者特异性癌症疫苗。基于质粒的基因治疗是生成基于细胞的癌症疫苗的一种简单方法,且不需要基于病毒载体系统的广泛基础设施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed89/1182385/13b625e7da0e/1479-0556-3-4-1.jpg

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