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高效生成临床级别的基因修饰树突状细胞,用于呈递多种肿瘤相关蛋白。

Efficient generation of clinical-grade genetically modified dendritic cells for presentation of multiple tumor-associated proteins.

机构信息

Institute for Clinical Transfusion Medicine, Braunschweig, Germany.

出版信息

Transfusion. 2010 Apr;50(4):831-42. doi: 10.1111/j.1537-2995.2009.02519.x. Epub 2009 Dec 10.

Abstract

BACKGROUND

Dendritic cells (DCs) play a central role in the initiation and regulation of immune responses. DCs for clinical applications can be generated with high yield from leukapheresis products. Using adenoviral transduction we genetically modified human DCs to produce and present melanoma-associated antigens. Coexpression of green fluorescent protein and epitope tags were used to monitor genetic modification. Generation, genetic modification, and cryoconservation of gene modified human DCs on a clinical scale in a closed system is feasible.

STUDY DESIGN AND METHODS

CD14-positive monomuclear cells were isolated from leukapheresis products of HLA-A* 0201 positive voluntary blood donors using immunomagnetic beads. Selected cells were cultivated for 7 days. Adenovirus transduction was optimal on Day 4. Maturation was induced on Day 5. Mature DC were aliquoted and cryoconserved on Day 7. Quality control was performed using flow cytometry, expression profiling, and functional assays (ELISPOT, CBA).

RESULTS

We were able to generate sufficient genetically modified mature DCs in serum-free cultures that could be stored by cryopreservation. The use of a closed system facilitated development of methods for standardized production of clinically applicable genetically modified DCs. The adenoviral transduction system allowed simultaneous and flexible expression of tumor-associated antigens for prolonged presentation of multiple epitopes.

CONCLUSION

The feasibility of a closed-bag system for the cultivation of genetically modified human DCs is shown. The immature DCs were genetically modified by recombinant replication-deficient adenoviruses to express multiple epitopes of tumor-associated proteins and then differentiated to mature antigen-presenting DCs.

摘要

背景

树突状细胞(DC)在免疫反应的启动和调节中发挥核心作用。从白细胞分离产物中可以高产率生成用于临床应用的 DC。我们通过腺病毒转导对人 DC 进行基因修饰以产生和呈递黑色素瘤相关抗原。通过共表达绿色荧光蛋白和表位标签来监测基因修饰。在封闭系统中以临床规模生成、基因修饰和冷冻保存基因修饰的人 DC 是可行的。

研究设计和方法

使用免疫磁珠从 HLA-A*0201 阳性自愿献血者的白细胞分离产物中分离 CD14 阳性单核细胞。选择的细胞在第 7 天培养。第 4 天是腺病毒转导的最佳时间。第 5 天诱导成熟。第 7 天对成熟的 DC 进行等分和冷冻保存。使用流式细胞术、表达谱分析和功能测定(ELISPOT、CBA)进行质量控制。

结果

我们能够在无血清培养中生成足够数量的基因修饰成熟 DC,这些 DC 可以通过冷冻保存进行存储。封闭系统的使用促进了标准化生产临床应用的基因修饰 DC 的方法的发展。腺病毒转导系统允许同时且灵活地表达肿瘤相关抗原,从而延长多个表位的呈递时间。

结论

展示了封闭袋系统培养基因修饰人 DC 的可行性。未成熟的 DC 被重组复制缺陷型腺病毒基因修饰以表达肿瘤相关蛋白的多个表位,然后分化为成熟的抗原呈递 DC。

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